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Wetland investigation report-2017
..�s.: ��.r..�. ����.e W e t I a n d �---.�` ---�-_ . . � ��`��/`� ...��MCfHLOn � , � EM�,�FEa,�� I n vest� at i o n �� �_ �Y J �. �: . - �_ Re ort , ,_�..�-:-.�-� p E�.a. .,*: - . _,��_ _.,. ,, ;� - � � � �} � ��� .. , k� �. , a;.� ., r ���.,y�,� w , • �`� }`' �r � �.. " � � M � ',� .�` �� �" . s�� �.y� e"A�� � �- �•' �.. . � � �� Butler Property �� �t�� ���. `,�,�. ��� r �' �;' � ��^ �'� �_,� -� y y �; ,�,L t�� x' � . . ,/� � � . �,:. ;� °P+a,.� � 5 '' _ M V �` �-� �s, � �,.�: . . v. . .r �� � y z �r r�� '��'.�; `� � ���,�� 3410 Somerset Lane _ - . � ; � , . Orono, MN ��! � �' �" � � � ���:�. ;� ���� AE Comm. # 14671 ' _�. �g.:� ��; ; � � �+�r��+� �_'-'�'� ���": , �- � � �. �;� j ;,;. � - � . _ y . �� � ��-�. May 4, 2017 :� " � _�' :�. . � ,.♦ .v�"tt'."- . . � .r.'ncfi`'6'�p't*"-.. . 8$� +°�!� A . (�t' . ��Y ... y�,� �. ..�!�� ' .l�..n�.�'� :;��'"" . �`� � � k .,t }t +i ��ti'y:.,�� t Ai� .��.. ��.�°�� : . ��.t .,. . Ir-��.UZ -�'..:.�� � .. ..rj/��y'''������,}q `� @� 4 . 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BUTLER PROPERTY TABLE OF CONTENTS Table of Contents ContactInformation .......................................................................................................2 ExecutiveSummary .......................................................................................................3 Background.....................................................................................................................4 Methodology...................................................................................................................4 ResourceReview............................................................................................................5 FieldReview....................................................................................................................6 Conclusion......................................................................................................................7 List of Appendices Appendix A Figures Appendix B Routine On-site Determination Method Datasheets Appendix C Site Photographs Appendix D Antecedent Precipitation Record Appendix E Historic Aerials Appendix F Credentials WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo,MN MAY 2017 BUTLER PROPERTY CONTACT INFORMATION Contact Information Prepared For: Patrick Butler 3010 Somerset Lane Orono, MN 55356 Phone: 904-393-6695 Email: butierjillpat@aol.com Prepared By: Ben Hodapp Environmental Services Manager Tina Justen Environmental Associate Anderson Engineering of Minnesota, LLC 13605 1st Avenue North Suite 100 Plymouth, MN 55441 Phone: (763) 412-4000 Fax: (763) 412-4090 Website: www.ae-mn.com WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo,MN MAY 2017 BUTLER PROPERTY EXECUTIVE SUMMARY Executive Summarv Anderson Engineering of Minnesota, LLC was retained to provide professional wetland services to identify those areas meeting wetland criteria utilizing the 1987 United States Army Corps of Engineers (USACE) Wetland Delineation Manual (Technica/ Report Y-87-1; January 198� and all supplemental guidance documents within the residential properties located at 3010 Somerset Lane,City of Orono,Hennepin County, Minnesota. Geographically, the area is located within Section 4, Township 117 North, Range 23 West. One Type 5, PUBGx, open water wetland was identified and delineated within the project area. The on-site portions of Wetland 1 total approximately 0.43 acres in size. WETLAND ASSESSMENT 3010 SOMERSET LANE OrtoNo,MN M,4Y 2017 BUTLER PROPERTY BACKGROUND 8�METHODOLOGY Backs�round As requested by Patrick Butler,Anderson Engineering of MN, LLC completed a wetland investigation at the specified project area located at 3010 Somerset Lane in the City of Orono, Minnesota (PID: 0411723330029). Geographically,the area is located within Section 4,Township 117 North, Range 23 West. The wetland delineation was completed in accordance with the 1987 United States Army Corps of Engineers Wetland Delineation Manual and the published regional supplement to the Army Corps Wetland Delineation Manual, Midwest Region. The purpose of this study was to investigate the project area, identify areas meeting the technical criteria for wetlands, delineate the jurisdictional extent of the wetland, and classify the wetland habitat. Fieldwork for this site investigation was completed by Environmental Associates Ben Hodapp and Tina Justen on April 20 8 May 3, 2017. The weather was partly cloudy with a temperature of 45° F on April 2p'n and partly cloudy with a temperature of 63° F on May 3ro. Methodolos�v United States Geologic Service 7.5"Topographic Quadrangle maps, United States Fish and Wildlife Service National Wetland Inventory maps, United States Department of Agriculture Natural Resources Conservation Service Soil Survey and available aerial photographs were consulted to initially locate potential wetland habitats. Routine On-site Determination Method was used during this investigation. In this method, the following procedures were used: 1) The vegetative community was sampled in all present strata to determine whether it met hydrophytic vegetation criteria based on the indicators identified in the Midwest Regional Supplement. 2) Soil pits were dug using a Dutch auger to depths of at least 24". Soil profile was noted, in addition to any hydric soil characteristics. 3) Signs of wetland hydrology were noted and compared to field criteria such as depth to shallow water table and depth of soil saturation found in the soil pits. Data from sample points were recorded on Army Corps of Engineers Midwest Region Wetland Determination Data Forms (Appendix B). At least one sample point transect crosses the delineated wetland edge. This transect consist of an upland sample point and a wetland sample point. Other sample points may be located in areas which have one or more of the wetland vegetation, soils, or hydrologic characteristics present; where questionable conditions exist;or to verify the absence of wetland criteria. Photographs are also taken at each sample point, and of the wetland and upland buffer(Appendix C). Sample points were marked in the field with orange flags.The identified wetland boundary was marked with sequentially numbered pink flags. All sample points and the delineated wetland boundary were located utilizing a Trimble Geo XH sub-meter GPS unit. WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo,MN MAv 2017 BUTLER PROPERTY RESOURCE REVIEW Resource Review The following resources were reviewed to supplement the wetland field delineation: National Wetlands Inventory: The National Wetlands Inventory (Appendix A. Figure 2) identifies one PUBGx wetland within the project area. USDA- Natural Resources Conservation Service Soil Survey: Soil Survey data for Hennepin County, MN were obtained and reviewed prior to the delineation. Table 1 provides a list of the mapped soils within the investigation area. Figure 3 in Appendix A contains a map of the soil units with percent hydric components. Table 1 -Summary of Mapped Soil Units within the Project Area Map Unit Hydric Soil Hydric Drainage %of Project Symbol Map Unit Name Rating(%) Soil Classification Area L37B Angus loam,2 to 6 percent slopes 5 No Well Drained 0.9% L41C2 Lester-Kilkenny complex,6 to 12 percent 5 No Moderately Well Drained 13.1% slopes,eroded L132A Hamel-Glencoe complex,0 to 2 percent g0 Yes Poorly Drained 86.0% slopes Hydric soils are defined in the Field Indicators of Hydric Soils in the United States: Guide for ldentifying and Delineating Hydric Soils, version 7.0, 2010(NRCS, 2010), The 1987 Manual, and The Regiona/Supp/ement (USACE, August 2010). Minnesota Department of Natural Resources Public Water Inventory: The MN DNR PWI for Hennepin County, MN (Appendix A. Figure 4) does not identify public waters within the project area. Antecedent Precipitation Data: An analysis of the University of Minnesota Climatology Working Group's 30 day rolling precipitation data for the previous three months(Appendix D) indicate that precipitation totals for previous weeks were above the normal monthly range for this project area. Hydrologic conditions were suitable for completing an accurate wetland determination and boundary delineation. WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo, MN MAY 2017 BUTLER PROPERTY FIELD REVIEW Field Review Wetland 1: Wetland 1 is a Type 1/5, PUBGx/PEMA, open water/seasonally flooded wetland. Overall, the wetland is a slope wetland with micro topo rivulets/channels that leads into a sparsely vegetated excavated basin with minor growth of reed canarygrass (Pha/aris arundinacea). The underlying soils are mapped as Hamel-Glencoe complex(L132A)soils. The investigated soil profiles met the loamy gleyed matrix(F2)and thick dark surface (Al2) hydric soil indicators. Hydrology indicators observed include a highwater table at the surface(C2), saturation at the surface (A3), thin muck surface(C7), geomorphic position (D2)and the FAC-Neutral Test(D5). The upland buffer surrounding the slope wetland is primarily vegetated with reed canary grass (Phalaris arundinacea)and garlic mustard(Alliaria petiolata).The upland buffer surrounding the excavated open water wetland is a manicured lawn primarily vegetated with Kentucky bluegrass(Poa pratensis)and the transition between the upland and the wetland is composed of gentle to moderate slopes. Investigation Area A: This sample is located in an upland area that was shown under wetland easement in 1996. The area is a manicured lawn primarily vegetated with Kentucky bluegrass (Poa pratensis). The underlying soils are mapped as Hamel-Glencoe complex (L132A) soils. This area did not meet criteria for wetland hydrology. This area is not a wetland. Investigation Area B: This sample is located in an upland area that was shown under wetland easement in 1996. The area is a manicured lawn primarily vegetated with Kentucky bluegrass (Poa pratensis). The underlying soils are mapped as Hamel-Glencoe complex (L132A) soils. This area did not meet for hydric soils or wetland hydrology. This area is not a wetland. Historic Aerials have been included in Appendix E. WETLAND ASSESSMENT 3010$OMERSET LANE ORONo,MN MAY 2017 BUTLER PROPERTY CONCLUSION Conclusion Portions of one wetland were identified and delineated in accordance with the 1987 United States Army Corps of Engineers Wetland Delineation Manual within the project area located at 3010 Somerset Lane, Orono, Minnesota. The wetland in the project area may be regulated by several agencies at the local, State, and/or federal level. Activities which may potentially impact those wetlands identified within this report should be discussed in advance with the appropriate regulating agency in regards to potential permit requirements. The Local Government Unit (LGU) responsible for implementing the Minnesota Wetland Conservation Act at this project location is the Minnehaha Creek Watershed District(MCWD). The Minnehaha Creek Watershed District inventory classifies Wetland 1 as a Manage 2 wetland. The MCWD and the City of Orono have wetland buffer requirements. Please coordinate directly with the regulatory agencies regarding the requirements for this specific wetland and project. This wetland investigation meets the standards and criteria described in the 1987 United States Army Corps of Engineers Wetland Delineation Manual all applicable subsequent guidance for an on-site determination and the results reflect the conditions present at the time of the delineation. I certify that I performed the field ana/ysis and wrote the report for this wetland determination. �,t.��su:,,a �t�����t 05-04-2017 Tina Justen � Date Environmental Associate Anderson Engineering of Minnesota, LLC I certify that 1 performed the field ana/ysis and/or reviewed work comp/eted by above sfaff. /�" �G� 05-04-2017 ��s A�4 Benjamin J Hodapp, PWS Date Environmental Services Manager �fiENJAMINJ.N00APP� MN Certified Wetland Delineator#1016 a °°�e�a Anderson Engineering of Minnesota, LLC `�'�v,,��,,�,oy`' WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo, MN MAY 2017 APPENDIX A Figures . J.. . . . - -... j ... - , -, _'r,LFt_'`�a �r r ��i ..;; � t}j - - .., , . � -';iKi � -'-��-ti_S� uwrK1 . ._. rrrxa� � 'r,., �-.. .. ,',� . t' . y�'.; . . ' � "�.� � � `�� " � _ - . I- - -- :'r �(nnitTS�M,.��,�"�.,,-'�'"l - c � j` � �` . " ,� �. p . .. . . .,., _ .. ,u.: 1 �`:��: �N tYfitli. �a- . �,F�rftkR 1 �1Rf�lt�� I.. .. � `, �+ . 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" j • f�� , y.� � � ' . . , . } .` �{�.,, PR�.IECT LOCATION SOURCE: MN DNR, USDA,ESRI,TIGER,Bing,Hennepin Co.,Anderson Engineering _ - -�V, 1 in = 0.5 miles e `-� 0 0.25 0.5 1 9 � Miles j �_� : _,.__ i�_'-_. __:_ '� �rt� 3010 Somerset Lane Orono, Hennepin County, MN ►-lennepin County City of Orono PID: 053-0411723220029 State of Minnesota Henne in Count MN �' ANDERSON �dersonEngineeringofMinnesota,LLC LOCATION - FIGURE 1 136051stAvenueNorth BUTLER WETLAND DELINEATION ,� ENGINEERING Piymo m,MN55441 ENGINEERING • ARCHITECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(f) ENVIRONMENTALSERVICES • LANDSCAPEARCHITECTURE www.ae-mn.com AEComm.#14671 Date:5/3/2017 By:JLA � .r ��,� : �„e . � ���� � b, �• .� �� _ ��kl!� � �' a� � . �4 � �„� �. ,►a► ° " �,� yti ` ... . -",�+' � �4;, � � _ �e � .��'��•. � ��y P � - � .�.a,� . t.., , , �i'�� . w . , „ _ � , + � R , � '! s �. r+t''�- , . .�. a,.,� , �-�,• . . � g-�� .,l� . � � . . � r: �'�'f w � � +5 ��� �` � �r � '�. �,� � ,+��� . �. �r � _ �, � . �, x'y , �� �;�... � � ,-e +� � �. ..: - 'a.• � � ti: �i.�, �'�. 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Parcels ,k � �#; ,:�� °f " .� � {`F �, , �!#�.:,i-'�s.�-, �,.�_ s �� s 4 ��`�r. � ��_ � MN DNR Inventoried � ��_��� �;� � �,�h,. ,��. ���="�r�" � — Public Watercourse � �. �� �" �r,►�S�"', .+-��€'�, �`�, ' MN DNR Inventoried � 4`� � ���'+ ';,�'��; �;;���� '�,; f , � Public Waterbasin -`-� : � � '�-� '� :- � ��r, >a,� �� � � ��.��. ., c" 'i _ PROJECT LOCATION SOURCE: MN DNR, USDA, ESRI,TIGER, Bing, Hennepin Co.,Anderson Engineering � �� �� �� 1 in = 1,000 feet e 0 500 1,000 2,000 9 � Feet �� � 3010 Some�set Lane `"-`-` - 1 y ` ' `�V Orono, Hennepin County, MN Hennepin County City of Orono PID: 053-0411723220029 State of Minnesota Henne in Count ,MN .�,� A N D E R S O N Anderson Engineering of Minnesota,LLC PW I - F I G U R E 4 136051stAvenueNorth gUTLER WETLAND DELINEATION Suite 100 � ,� E N G I N E E R I N G p�ymouth,MN 55441 ENGINEERING • ARCHRECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(� ENVIRONMENTAL SERNCES • LANDSCAPE ARCHfTECTURE www.ae-mn.com AE Comm.# 14671 Date:5/3/2017 By:JLA .j . �.. . . 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Parcels ,,�� � �, , �, �:, ��°�` +�� Y LiDAR Derived Contours (2') �� � � �°�6 _ ' - ,� ,, ��s�,R � ;�, x - � ' � Index >> �.;�, -�,� fi , '��, Intermediate �� f`•'�r� __ + , _ ' t�.. . ` 'e^�d.�„c,�' ��. s, .�'`i- � r� �� . �� . .n� �� Y� ��� R r�i�.� `� � � ti. ' PROJECT LOCATION SOURCE: MN DNR, USDA, ESRI,TIGER,Bing, Hennepin Co.,Anderson Engineering , , -1 , `� � � 1 in = 100 feet e 0 50 100 200 9 �a Feet � r' 3010 Somerset Lane `- - �������- ��"'� Orono, Hennepin County, MN Hennepin Counry City of Orono PID: 053-0411723220029 State of Minnesota Henne in Count ,MN �' A N D E R S O N Anderson Engineering of Minnesota,LLC L i D A R TO P O G RA P H Y - F I G U R E 5 136051stAvenueNorth BUTLER WETLAND DELINEATION � ENGINEERING �,ym�°n,MN55441 ENGINEERING • ARCHfTECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(Q ENVIRONMENTAL SERVICES • LANDSCAPE ARCHfTECTURE www.ae-mn.com AE Comm.#14671 Date:5/3/2017 By:JLA u�' �� 1��t �^ y a —� .. :' r. 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Parcels g� � ' ,. y ��.. ' - '� �1f1 � ,� �` Field Delineated �` �. r� �.- ,�•. = » 0 Wetland Boundary(5/3/2017) "�,"'r '',�, ��1��-4 r����a O Sam le Point � Jf � � t �.r � � j r ,�� p � i/ r. ,�4.� ,�rr,:� � � PROJECT LOCATION SOURCE: MN DNR, USDA, ESRI,TIGER, Bing, Hennepin Co.,Anderson Engineering \ 1 in = 100 feet e 0 50 100 200 9 � Feet > , , � 3010 Some�set Lane �--� -`` "" Orono, Hennepin County, MN Nennepin County City of Orono PID: 053-0411723220029 State of Minnesota Henne in Count ,MN '� A N D E R S O N Anderson Engineering of Minnesota,LLC D E L I N EATI O N - F I G U R E 6 136051stAvenueNorth BUTLER WETLAND DELINEATION � ENGINEERING �,ym�00,MN55441 ENGINEERING • ARCHITECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(� ENVIRONMENTALSERNCES • LAPDSCAPEARCHRECTURE www.ae-mn.com AEComm.#14671 Date:5/3/2017 By:JLA APPENDIX B Routine On-site Determination Method Datasheets WETLAND DETERMINATION DATA FORM—Midwest Region ProjecUSite: 3010 Somerset Lane City/County: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: A Investigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp. 117N,R.23W Landform(hillside,terrace,etc.): toeslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'30.82"N Long: 93°36'1.09"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe complex,0-2 percent slope NWI classification: PUBGx Are climatic/hydrologic conditions on the site typical for this time of year? Yes X No (If no,explain in Remarks.) Are Vegetation ,Soil ,or Hydrology significantly disturbed? Are"Normal Circumstances"present? Yes No X Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features,etc. Hydrophytic Vegetation Present? Yes X No Is the Sampled Area Hydric Soil Present? Yes X No within a Wetland? Yes X No Wetland Hydrology Present? Yes X No Remarks: Wetland managed for vegetation.Aeration fountain present.All three criteria were met.Area is a wetland. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) %Cover Species? Status Dominance Test worksheet: �• Number of Dominant Speaes That 2. Are OBL,FACW,or FAC: 1 (A) 3• Total Number of Dominant Species 4. Across All Strata: 1 (B) 5• Percent of Dominant Species That =Total Cover Are OBL,FACW,or FAC: 100.0°/a (A/B) Saolina/Shrub Stratum (Plot size: 15 feet ) 1. Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species 0 x 1 = 0 4. FACW species 100 x 2= 200 5. FAC species 0 x 3= 0 =Total Cover FACU species 0 x 4= 0 Herb Stratum (Plot size: 5 feet ) UPL species 0 x 5= 0 1. Phalaris arundinacea 100 Yes FACW Column Totals: 100 (A) 200 (B) 2. Prevalence Index =B/A= 2.00 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic Vegetation 6. X 2-Dominance Test is>50% 7. X 3-Prevalence Index is 53.0' 8. 4-Morphological Adaptations�(Provide supportin g. data in Remarks or on a separate sheet) 10. Problematic Hydrophytic Vegetation�(Explain) 100 =Total Cover �Indicators of hydric soil and wetland hydrology must Woodv�ne Stratum (Plot size: 30 feet ) be present,unless distuh�ed or problematic. �' Hydrophytic 2• Vegetation =Total Cover Present? Yes X No Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SOIL Sampling Point: A Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type Loc Texture Remarks 0-1 10YR 5/2 100 Muck 1-10 5GY 5/1 100 Loamy/Ciayey 'T pe: C=Concentration,D=Depletion,RM=Reduced Matrix,MS=Masked Sand Grains. 2Location: PL=Pore Linin ,M=Matrix. Hydric Soil Indicators: Indicatora for Problematic Hydric Soils3: Histosol(A1) Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(A2) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) Stripped Matrix(S6) Red Parent Material(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) SVatified Layers(A5) Loamy Mucky Mineral(F1) Other(Explain in Remarks) 2 cm Mudc(A10) X Loamy Gleyed Matrix(F2) Depieted Below Dark Surface(A11) Depleted Matrix(F3) Thick Dark Surface(Al2) Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) Depleted Dark Surface(F7) weUand hydro�ogy must be present, 5 cm Mucky Peat or Peat(S3) Redox Depressions(F8) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes X No Remarks: HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that anolvl Secondarv Indicators(minimum of two reauiredl Surface Water(A1) Water-Stained Leaves(B9) Surface Soil Cracks(B6) X High Water Table(A2) Aquatic Fauna(613) Drainage Pattems(610) X Saturation(A3) True Aquatic Plants(B14) Dry-Season Water Table(C2) Water Marks(B1) Hydrogen Sulfide Odor(C1) Cra�sh Burrows(C8) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(63) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(B4) Recent Iron Reduction in Tilled Soils(C6) X Geomorphic Position(D2) Iron Deposits(65) X Thin Muck Surface(C7) X FAC-Neutral Test(D5) Inundation Visible on Aerial Imagery(67) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(68) Other(Explain in Remarks) Field Observations: SurFace Water Present? Yes No X Depth(inches): Water Table Present? Yes X No Depth(inches): 2 Saturation Present? Yes X No Depth(inches): 0 Wetland Hydrology Present? Yes X No (includes capillary finge) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspections),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 WETLAND DETERMINATION DATA FORM—Midwest Region ProjecUSite: 3010 Somerset Lane City/County: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: B Investigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp. 117N,R.23W Landform(hillside,terrace,etc.): toeslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'30.62"N Long: 93°36'1.09"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe compiex,0-2 percent slope NWI classification: Are Gimatic/hydrologic conditions on the site typical for this time of year? Yes X No (If no,explain in Remarks.) Are Vegetation ,Soil ,or Hydrology significantly disturbed? Are"Normal Circumstances"present? Yes No X Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features,etc. Hydrophytic Vegetation Present? Yes No X Is the Sampled Area Hydric Soil Present? Yes No X within a Wetland? Yes No X WeUand Hydrology Present? Yes No X Remarks: Area located in manicured turf lawn.Area does not meet wetland criteria.Area is not a weUand. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) %Cover Species? Status Dominance Test worksheet: �• Number of Dominant Species That 2. Are OBL,FACW,or FAC: (A) 3• Total Number of Dominant Species 4. Across All Strata: (B) 5• Percent of Dominant Species That =Total Cover Are OBL,FACW,or FAC: (A/B) Sa�lina/Shrub SVatum (Plot size: 15 feet ) 1. Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species x 1 = 4. FACW species x 2= 5. FAC speaes x 3= =Total Cover FACU species x 4= Herb Stratum (Plot size: 5 feet ) UPL species x 5= 1. Poa pratensis FAC Column Totals: (A) (B) 2. Prevalence Index =B/A= 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic Vegetation 6. 2-Dominance Test is>50% 7. 3-Prevalence Index is 53.0� 8. 4-Morphological Adaptations�(Provide supportin g, data in Remarks or on a separate sheet) 10. _Problematic Hydrophytic Vegetation�(Explain) =Total Cover �Indicators of hydric soil and wetland hydrology must Woodv Vine Stratum (Plot size: 30 feet ) be present,unless disturbed or problematic. �' Hydrophytic 2• Vegetation =Total Cover Present? Yes No X Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SOIL Sampling Point: B Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type Loc Texture Remarks 0-12 10YR 2/1 100 Loamy/Clayey 12-22 10YR 2/1 97 10YR 4/2 3 C M Loamy/Clayey Faint redox concentrations 22-26 10YR 5/3 100 Loamy/Clayey 'T pe: C=Concentration,D=Depietion,RM=Reduced Matrix,MS=Masked Sand Grains. 2Location: PL=Pore Linin ,M=Matrix. Hydric Soil Indicators: Indicators for Problematic Hydric Soils3: Histosol(A1) Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(AZ) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) Stripped Matrix(S6) Red Parent Material(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) Stratified Layers(A5) Loamy Mucky Mineral(F1) Other(Explain in Remarks) 2 cm Muck(A10) Loamy Gleyed Matrix(F2) Depleted Below Dark Surface(A11) Depleted Matrix(F3) Thick Dark Surface(Al2) Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) Depleted Dark Surface(F7) weUand hydrology must be present, 5 cm Mucky Peat or Peat(S3) Redox Depressions(FS) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes No X Remarks: HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that ao�lv) Secondarv Indicators(minimum of two reauiredl Surface Water(A1) Water-Stained Leaves(B9) Surface Soil Cracks(B6) High Water Table(A2) Aquatic Fauna(B13) Drainage Pattems(610) Saturation(A3) True Aquatic Plants(B14) Dry-Season Water Table(C2) Water Marks(61) Hydrogen Sulfide Odor(C1) Crayfish Burrows(C8) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(B3) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(B4) Recent Iron Reduction in Tilled Soils(C6) Geomorphic Position(D2) Iron Deposits(65) Thin Muck Surface(C7) FAC-Neutral Test(D5) Inundation Visible on Aeriai Imagery(B7) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(68) Other(Explain in Remarks) Field Observations: Surface Water Present? Yes No X Depth(inches): Water Table Present? Yes No X Depth(inches): Saturation Present? Yes No X Depth(inches): Wetland Hydrology Present? Yes No X (inGudes capilla frin e) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspectlons),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 WETLAND DETERMINATION DATA FORM—Midwest Region Project/Site: 3010 Somerset Lane City/Counry: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: C Investigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp.117N,R.23W Landform(hillside,terrace,etc.): toeslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'30.82"N Long: 93°36'1.09"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe complex,0-2 percent slope NWI classification: PEM1A Are Gimatic/hydrologic conditions on the site rypical for this time of year? Yes X No (If no,explain in Remarics.) Are Vegetation ,Soil ,or Hydrology significantly disturbed? Are"Normal Circumstances"present? Yes X No Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features, etc. Hydrophytic Vegetation Present? Yes X No Is the Sampled Area Hydric Soil Present? Yes X No within a Wetland? Yes X No Wetland Hydrology Present? Yes X No Remarks: Slope wetland with micro topo rivulets/channels present.All three criteria were met.Area is a wetland. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) %Cover Species? Status Dominance Test worksheet: 1. Acer negundo 20 Yes FAC Number of Dominant Speaes That 2. Are OBL,FACW,or FAC: 2 (A) 3• Total Number of Dominant Species 4. Acxoss All Strata: 2 (B) 5• Percent of Dominant Species That 20 =Total Cover Are OBL,FACW,or FAC: 100.0% (A/B) Saolina/Shrub Stratum (Plot size: 15 feet ) 1. Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species 0 x 1 = 0 4. FACW species 100 x 2= 200 5. FAC species 20 x 3= 60 =Total Cover FACU species 0 x 4= 0 Herb SVatum (Plot size: 5 feet ) UPL species 0 x 5= 0 1. Phalaris arundinacea 100 Yes FACW Column Totals: 120 (A) 260 (B) 2. Prevalence Index =B/A= 2.17 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic Vegetation 6. X 2-Dominance Test is>50% 7. X 3-Prevalence Index is 53.0� g. 4-Morphological Adaptations�(Provide supportin g. data in Remarks or on a separate sheet) 10. Problematic Hydrophytic Vegetation�(Explain) 100 =Total Cover �Indicators of hydric soil and wetland hydrology must Woodv�ne Stratum (Plot size: 30 feet ) be present,unless disturbed or problematic. �' Hydrophytic 2• Vegetation =Total Cover Present? Yes X No Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SOIL Sampling Point: C Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type� Loc Texture Remarks 0-14 10YR 2/1 100 Loamy/Clayey 14-20 70YR 5/1 98 10YR 4/4 2 C M Loamy/Clayey �T pe: C=Concentration,D=Depletion,RM=Reduced Matrix,MS=Masked Sand Grains. ZLocation: PL=Pore Linin ,M=Matrix. Hydric Soil Indicators: Indicators for Problematic Hydric Soils3: Histosol(A1) _Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(A2) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) _Stripped Matrix(S6) _Red Parent Material(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) Stratified Layers(A5) _Loamy Mucky Mineral(F1) _Other(Explain in Remarks) 2 cm Muck(A10) Loamy Gleyed Matrix(F2) Depleted Below Dark Surface(A11) Depleted Matrix(F3) X Thick Dark Surface(Al2) _Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) _Depleted Dark Surface(F7) wetland hydrology must be present, 5 cm Mudcy Peat or Peat(S3) Redox Depressions(F8) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes X No Remarks: HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that aonlvl $econdarv Indicators(minimum of two reauiredl Surface Water(A1) Water-Stained Leaves(B9) Surface Soil Cracks(B6) X High Water Table(A2) Aquatic Fauna(613) Drainage Pattems(B10) X Saturation(A3) True Aquatic Plants(B14) Dry-Season Water Table(C2) Water Marks(61) Hydrogen Sulfide Odor(C1) Crayfish Burrows(C8) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(63) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(B4) Recent Iron Reduction in Tilled Soils(C6) X Geomorphic Position(D2) Iron Deposits(B5) Thin Muck Surface(C7) X FAC-Neutral Test(D5) Inundation Visible on Aerial Imagery(B7) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(BS) Other(Explain in Remarks) Field Observations: Surface Water Present? Yes No X Depth(inches): Water Table Present? Yes X No Depth(inches): 3 Saturation Present? Yes X No Depth(inches): 0 Wetland Hydrology Present? Yes X No (includes capilla frin e) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspections),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 WETLAND DETERMINATION DATA FORM—Midwest Region ProjecUSite: 3010 Somerset Lane City/County: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: D Investigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp.117N,R.23W Landform(hillside,terrace,etc.): footslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'30.62"N Long: 93°36'1.09"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe complex,0-2 percent slope NWI classificaGon: Are dimatic/hydrologic conditions on the site typical for this time of year? Yes X No (If no,explain in Remarks.) Are Vegetation ,Soil ,or Hydrology significantly disturbed? Are"Normal Circumstances"present? Yes X No Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features,etc. Hydrophytic Vegetation Present? Yes X No Is the Sampled Area Hydric Soil Present? Yes No X within a Wetland? Yes No X WeUand Hydrology Present? Yes No X Remarks: Area does not meet criteria for hydric soils and wetland hydrology.Area is not a weUand. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) %Cover Species? Status Dominance Test worksheet: 1. Acer negundo 20 Yes FAC Number of Dominant Species That 2. Are OBL,FACW,or FAC: 3 (A) 3• Total Number of Dominant Species 4. Across All Strata: 4 (B) 5• Percent of Dominant Species That 20 =Total Cover Are OBL,FACW,or FAC: 75.0% (A/B) Saolina/Shrub Stratum (Plot size: 15 feet ) 1. Ribes uva-crispa 5 Yes UPL Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species 0 x 1 = 0 4. FACW speaes 60 x 2= 120 5. FAC species 50 x 3= 150 5 =Total Cover FACU species 0 x 4= 0 Herb SVatum (Plot size: 5 feet ) UPL species 5 x 5= 25 1. Phalaris arundinacea 60 Yes FACW Column Totals: 115 (A) 295 (B) 2. Alliaria petiolata 30 Yes FAC Prevalence Index =B/A= 2.57 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic Vegetation 6. X 2-Dominance Test is>50°/a 7. 3-Prevalence Index is 53.0' 8. 4-Morphological Adaptations�(Provide supportin g, data in Remarks or on a separate sheet) 10. Problematic Hydrophytic Vegetation�(Expiain) 90 =Total Cover �Indicators of hydric soil and wetland hydrology must Woodv Vine Stratum (Plot size: 30 feet ) be present,unless disturbed or problematic. �' Hydrophytic 2• Vegetation =Total Cover Present? Yes X No Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SOIL Sampling Point: D Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type Loc Texture Remarks 0-14 10YR 3/2 100 Loamy/Clayey 14-22 10YR 4/2 97 10YR 4/6 2 C M Loamy/Clayey Prominent redox concentrations 'Type: C=Concentration,D=Depletion,RM=Reduced Matrix,MS=Masked Sand Grains. ZLocation: PL=Pore Lining,M=Matrix. Hydric Soil Indicators: Indicators for Problematic Hydric Soils3: Histosol(A1) Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(A2) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) Stripped Matrix(S6) Red Parent Materiai(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) Stratified Layers(A5) Loamy Mucky Mineral(F1) Other(Explain in Remarks) 2 cm Muck(A10) Loamy Gleyed Matrix(F2) Depleted Below Dark Surface(A11) Depleted Matrix(F3) Thick Dark Surface(Al2) Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) Depleted Dark Surface(F7) wetland hydrology must be present, 5 cm Mucky Peat or Peat(S3) Redox Depressions(F8) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes No X Remarks: HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that ao�lv) Secondarv Indicators(minimum of two reauiredl Surface Water(A1) Water-Stained Leaves(69) Surface Soil Cracks(B6) High Water Table(A2) Aquatic Fauna(B13) Drainage Pattems(B10) Saturation(A3) True Aquatic Plants(B14) Dry-Season Water Table(C2) Water Marks(61) Hydrogen Sulfide Odor(C1) Crayfish Burrows(CS) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(63) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(64) Recent Iron Reduction in Tiiled Soils(C6) Geomorphic Position(D2) Iron Deposits(65) Thin Muck Surface(C7) FAC-Neutral Test(D5) Inundation Visible on Aerial Imagery(B7) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(68) Other(Explain in Remarks) Field Observations: Surface Water Present? Yes No X Depth(inches): Water Table Present? Yes No X Depth(inches): Saturation Present? Yes No X Depth(inches): Wetland Hydrology Present? Yes No X (includes capilla fringe) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspections),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 WETLAND DETERMINATION DATA FORM—Midwest Region ProjecUSite: 3010 Somerset Lane City/County: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: IA-A tnvestigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp.117N,R.23W Landform(hillside,terrace,etc.): backslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'29.99"N Long: 93°35'56.55"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe complex,0-2 percent slope NWI Gassification: Are climatic/hydrologic conditions on the site typical for this time of year? Yes X No (If no,explain in Remarks.) Are Vegetation X ,Soil ,or Hydrology significantly disturbed? Are"Normal Circumstances"present? Yes No X Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features,etc. Hydrophytic Vegetation Present? Yes X No Is the Sampled Area Hydric Soil Present? Yes X No within a Wetland? Yes No X WeUand Hydrology Present? Yes No X Remarks: Area is located high in the landscape in manicured turf grass.Area did not meet criteria for weUand hydrology.Area is not a wetland. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) °/a Cover Species? Status Dominance Test worksheet: �• Number of Dominant Species That 2. Are OBL,FACW,or FAC: 1 (A) 3• Total Number of Dominant Species 4. Across All Strata: 1 (B) 5• Percent of Dominant Species That =Total Cover Are OBL,FACW,or FAC: 100.0% (A/B) Saolina/Shrub Stratum (Plot size: 15 feet ) 1. Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species 0 x 1 = 0 4. FACW species 0 x 2= 0 5. FAC species 100 x 3= 300 =Total Cover FACU species 0 x 4= 0 Herb Stratum (Plot size: 5 feet ) UPL species 0 x 5= 0 1. Poa pratensis 100 Yes FAC Column Totals: 100 (A) 300 (B) 2. Prevalence Index =B/A= 3.00 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic VegetaUon 6. X 2-Dominance Test is>50% 7. 3-Prevalence Index is 53.0� 8. 4-Morphological Adaptations�(Provide supportin g, data in Remarks or on a separate sheet) 10. Problematic Hydrophytic Vegetation�(Explain) 100 =Total Cover �Indicators of hydric soil and wetland hydrology must Woodv Vine Stratum (Plot size: 30 feet ) be present,unless disturbed or problematic. �' Hydrophytic 2• Vegetation =Total Cover Present? Yes X No Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SOIL Sampling Point: IA-A Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type Loc Texture Remarks 0-6 10YR 3/1 100 Loamy/Clayey 6-9 10YR 3/1 95 10YR 4/4 5 C M Loamy/Clayey 9-25 10YR 2/1 98 7.5YR 4/4 2 C M Loamy/Clayey Prominent redox concentrations �T pe: C=Concentration,D=De letion,RM=Reduced Matrix,MS=Masked Sand Grains. zLocation: PL=Pore Linin ,M=Matrix. Hydric Soil Indicators: Indicators for Problematic Hydric Soils3: Histosol(A1) Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(A2) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) Stripped Matrix(S6) Red Parent Material(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) Stratified Layers(A5) Loamy Mucky Mineral(F1) Other(Explain in Remarks) 2 cm Muck(A10) Loamy Gleyed MaVix(F2) Depleted Below Dark Surface(A11) Depleted Matrix(F3) Thick Dark SurFace(Al2) X Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) Depleted Dark Surface(F7) weUand hydrology must be present, 5 cm Mucky Peat or Peat(S3) Redox Depressions(F8) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes X No Remarks: Mixing present in top 9 inches of soil profile. HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that aoolvl Secondarv Indicators(minimum of two reauiredl Surface Water(A1) Water-Stained Leaves(B9) Surface Soil Cracks(66) High Water Table(A2) Aquatic Fauna(B13) Drainage Patterns(B10) Saturation(A3) True Aquatic Plants(614) Dry-Season Water Table(C2) Water Marks(61) Hydrogen Sulfide Odor(C1) Cra�sh Burrows(C8) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(63) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(B4) Recent Iron Reduction in Tilled Soils(C6) Geomorphic Position(D2) Iron Deposits(65) Thin Muck Surface(C7) FAC-Neutral Test(D5) Inundation Visible on Aerial Imagery(67) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(B8) Other(Explain in Remarks) Field Observations: Surface Water Present? Yes No X Depth(inches): Water Table Present? Yes No X Depth(inches): Saturation Present? Yes X No Depth(inches): 22 Wetland Hydrology Present? Yes No X (includes capilla frin e) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspections),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 WETLAND DETERMINATION DATA FORM—Midwest Region ProjecUSite: 3010 Somerset Lane City/County: Orono/Hennepin Sampling Date: 05/03/2017 ApplicanUOwner: Patrick Butler State: MN Sampling Point: IA-B Investigator(s):Ben Hodapp,Tina Justen Section,Township,Range: S.4,Twp. 117N,R.23W Landform(hillside,terrace,etc.): footslope Local relief(concave,convex,none):concave Slope(%): 0-2 Lat: 44°58'30.94"N Long: 93°35'59.47"W Datum: Soil Map Unit Name: L132A-Hamel-Glencoe complex,0-2 percent slope NWI Gassification: Are climatic/hydrologic conditions on the site rypical for this time of year? Yes X No (If no,explain in Remarks.) Are Vegetation X ,Soil ,or Hydrology significanUy disturbed? Are"Normal Circumstances"present? Yes No X Are Vegetation ,Soil ,or Hydrology naturally problematic? (If needed,explain any answers in Remarks.) SUMMARY OF FINDINGS—Attach site map showing sampling point locations,transects, important features,etc. Hydrophytic Vegetation Present? Yes X No Is the Sampled Area Hydric Soil Present? Yes No X within a Wetland? Yes No X Wetland Hydrology Present? Yes No X Remarks: Area is located high in the landscape in manicured turf grass.Area did not meet criteria for weUand hydrology.Area is not a wetland. VEGETATION—Use scientific names of plants. Absolute Dominant Indicator Tree Stratum (Plot size: 30 feet ) %Cover Species? Status Dominance Test worksheet: �• Number of Dominant Species That 2. Are OBL,FACW,or FAC: 1 (A) 3• Total Number of Dominant Species 4. Across All Strata: 1 (B) 5• Percent of Dominant Species That =Total Cover Are OBL,FACW,or FAC: 100.0% (A/B) Sanlina/Shrub Stratum (Plot size: 15 feet ) 1. Prevalence Index worksheet: 2. Total%Cover of: Multiply by: 3. OBL species 0 x 1 = 0 4. FACW species 0 x 2= 0 5. FAC species 100 x 3= 300 =Total Cover FACU species 0 x 4= 0 Herb Stratum (Plot size: 5 feet ) UPL species 0 x 5= 0 1. Poa pratensis 100 Yes FAC Column Totals: 100 (A) 300 (B) 2. Prevalence Index =B/A= 3.00 3. 4. Hydrophytic Vegetation Indicators: 5. 1 -Rapid Test for Hydrophytic Vegetation 6. X 2-Dominance Test is>50°/a 7. 3-Prevalence Index is 53.0' 8. 4-Morphological Adaptations�(Provide supportin g. data in Remarks or on a separate sheet) 10. Problematic Hydrophytic Vegetation'(Explain) 100 =Total Cover �Indicators of hydric soil and weUand hydrology must Woodv�ne SVatum (Plot size: 30 feet ) be present,unless disturbed or problematic. �' Hydrophytic 2• Vegetation =Totai Cover Present? Yes X No Remarks: (Include photo numbers here or on a separate sheet.) US Army Corps of Engineers Midwest Region—Version 2.0 SDIL Sampling Point: IA-B Profile Description: (Describe to the depth needed to document the indicator or confirm the absence of indicators.) Depth Matrix Redox Features (inches) Color(moist) % Color(moist) % Type Loc Texture Remarks 0-18 10YR 2/1 100 Loamy/Clayey 18-22 10YR 2/1 97 10YR 4/2 3 C M Loamy/Clayey 22-28 10YR 5/2 100 Loamy/Clayey �T pe: C=Concentration,D=Depletion,RM=Reduced Matrix,MS=Masked Sand Grains. ZLocation: PL=Pore Linin ,M=Matrix. Hydric Soil Indicatora: Indicators for Problematic Hydric Soils3: Histosol(A1) Sandy Gleyed Matrix(S4) Coast Prairie Redox(A16) Histic Epipedon(A2) Sandy Redox(S5) Iron-Manganese Masses(F12) Black Histic(A3) Stripped Matrix(S6) Red Parent Material(F21) Hydrogen Sulfide(A4) Dark Surface(S7) Very Shallow Dark Surface(F22) Stratified Layers(A5) Loamy Mucky Mineral(F1) Other(Explain in Remarks) 2 cm Muck(A10) Loamy Gleyed Matrix(F2) Depleted Below Dark Surface(A11) Depleted Matrix(F3) Thick Dark Surface(Al2) Redox Dark Surface(F6) 3lndicators of hydrophytic vegetation and Sandy Mucky Mineral(S1) Depleted Dark Surface(F7) wetland hydrology must be present, 5 cm Mucky Peat or Peat(S3) Redox Depressions(F8) unless disturbed or problematic. Restrictive Layer(if observed): Type: Depth(inches): Hydric Soil Present? Yes No X Remarks: Mixing present in top 9 inches of soil profile. HYDROLOGY Wetland Hydrology Indicators: Primarv Indicators(minimum of one is reauired:check all that a�olv) Se�ndarv Indicators(minimum of two reauired) SurFace Water(A1) Water-Stained Leaves(69) Surface Soil Cracks(B6) High Water Table(A2) Aquatic Fauna(B13) Drainage Pattems(610) Saturation(A3) True Aquatic Plants(B14) Dry-Season Water Table(C2) Water Marks(61) Hydrogen Sulfide Odor(C1) Crayfish Burrows(C8) Sediment Deposits(62) Oxidized Rhizospheres on Living Roots(C3) Saturation Visible on Aerial Imagery(C9) Drift Deposits(B3) Presence of Reduced Iron(C4) Stunted or Stressed Plants(D1) Algal Mat or Crust(64) Recent Iron ReducGon in Tilled Soils(C6) Geomorphic Position(D2) Iron Deposits(B5) Thin Muck Surface(C7) FAC-Neutral Test(D5) Inundation Visible on Aerial Imagery(B7) Gauge or Well Data(D9) Sparsely Vegetated Concave Surface(B8) Other(Explain in Remarks) Field Observations: Surface Water Present? Yes No X Depth(inches): Water Table Present? Yes No X Depth(inches): Saturation Present? Yes No X Depth(inches): Wetland Hydrology Present7 Yes No X (includes capillary frin e) Describe Recorded Data(stream gauge,monitoring well,aerial photos,previous inspections),if available: Remarks: US Army Corps of Engineers Midwest Region—Version 2.0 APPENDIX C Site Photographs BUTLER PROPERTY APPENDIX C: SITE PHOTOGRAPHS � 3 „� �, � �'� � R �r . 'l M '�_ +� ,�.v �_,.�,�f, .,�.� , �;� ,y � i . �, � i+ 'S '�j �' �M1'�+i ♦IYP. . F 5�,:t�,N�� . . ��..�:"���� .'��f,.�� ;/. v a' �, *�y. t�� 1 � �" t a��M.f , t...�R:� .. ' ';�� ��! .� �` � t�..�j, .� �.� V � �*Y9� 1` -� s 4T Z +� ��i '�° : 1 "4. 4 a'."" 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S s�''�t,,-w ��d q'' �„� �; . . �:*�.���.:.. . 4 ,..^�A".'�_.ar�aarc :•�� . .,�.s;. .,.z�X�..:;r..._:. . .,... .,_„��r ..,v:!3,.'� .. ,. a :. . c..,�l:'. ... . . . � Investigation Area-A, Viewing West Investigation Area-B, Viewing West WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo, MN MAY 2017 APPENDIX D 30 Day Rolling Total Precipitation Record BUTLER PROPERTY APPENDIX D: PRECIPITATION RECORD 30 Day Rolling Total Precipitation Analysis 3010 Somerset Lane, Orono, MN - May 3, 2017 4.� � � d t � 3'' �Daily Precipitation � 3 ,�/� � ( ♦ Sitc Visit � 2.5 ��1 �o y Q � "��� 30 Day Rolling Total u N a` 1•5 Normal Monihly Range 7 y 0.� � ,�/`—\ . ��`` p ...AI. , , , � I I� , I I II I�_l 3]-Dec-]6 30-Jan-1J 1-Mar-17 3]-Mar-17 30-Apr-17 30-May-17 Source: http://climate.umn.edu/ WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo, MN MAY 2017 BUTLER PROPERTY APPENDIX D: PRECIPITATION RECORD Precipitation � Apr 26-May 02. 2017 � � �. �' -.- � •,'� `' h � 5 1.5 �'- 1 � 0.65 �l C-a � , ���, S � os Precipitation % Normai - a Apr 01-May 02. 2417 ��_�.�: � �� - -_r � .� `� � — _ _ . . �:- .,- - _ - _ _ . ; . _ - :- .. .: :. % _�_ ��..- �'^ ' /"/ i � .� ^ Preap�tation Rank�ng � Apr 01-May 02. 2017 � � soo s�s � FJw 175 125 � � 100 �� .�— a o 60 t0 �. �i _*cent � �f Y � 99 � � ' 9-`� - - - - - - J �� . __. �,� _ . - � - - - -" -c-i�17 r" a s i ;o S� �' � 3 O �. : ..�_�� 2O �i. �� >, 1 O 'h.l _.}— � �:.tiest-104 hqhcst t �, GNP, _.:CYYdI •S(3Ic .. ^3IC.•C.yj: �. __ :Z-��57 WETLAND ASSESSMENT 3010 SOMERSET LANE ORONo, MN MAY 2017 APPENDIX E Historic Aerials \ K �}�� � �y � ; �` , . * �y':.. . , y �+YI'"� �� y " '�,:. g''ayk—1°p�., _ � ip� �e`.:� � � « ���'� ��, . �_#�*m � �-� ..rs, �' �s� ,� �. . � ' .,. � '. �t � `y, �! ,`i t�}�}�7 _ � ... , .. � �� �1k- ��# _.L kA" w � �.� � � ,t. 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Parcels � � ��"�„',��" ,�� " ��� � ��� - fi ;,�° ��, � _ _. _ . c. �w, s prr,� -- PROJECT LOCATION SOURCE: MN DNR, USDA, ESRI,TIGER, Bing, Hennepin Co.,Anderson Engineering .� .,r� �`� ,� � 1 in = 200 feet e 0 100 200 400 9 � I Feet � , 3010 Somerset Lane Orono, Hennepin County, MN Hennepin County City of Orono PID: 053-0411723220029 State of Minnesota Henne in Count ,MN =i Anderson Engineering of Minnesota,LLC 19 71 A E R I A L ANDERSON 136051stAvenueNonh BUTLER WETLAND DELINEATION � ENGINEERING P;yma00,MN55441 ENGINEERING • ARCHITECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(� ENVIRONMENTALSERNCES • LANDSCAPEARCHfTECTURE www.ae-mn.com AEComm.#14671 Date:5/3/2017 By:JLA I � � �� � "� �, w �" #� "�M � �x ;� * ; � a � �.. � t �. .. +�+ , . '� � � �i ��t'- � . � ��_ ��. , , � . , � � � �� � ,�>„`,` - 1.a � � �� �- A� ��.. �m * � � � :.� � �� �'�` .� �����: � �y � �� �'` . ,,�,. � #� �. � . t, :� ' � ,�,. ar. , � { 7�,� �h � . 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Parcels �, -��M �;� � �� _" �° , ; �� - �- - � » �______j?��� PROJECT LOCATION souRCE: Mrv �rvR, USDA, ESRI,TIGER,Bing, Hennepin Co.,Anderson Engineering �� � l 1 in = 200 feet e 0 100 200 400 9 � � Feet � 3010 Somerset Lane J-� Orono, Hennepin County, MN Hennepin County City of Orono PID: 053-0411723220029 Siate of Minnesota Henne in Count ,MN " A N D E R S O N �derson Engineering of Minnesota,LLC 1991 A E R I A L 136051stAvenueNorth gUTLER WETLAND DELINEATION v ,.. ENGINEERING �,y;;��°,MN55441 ENGINEERING • ARCHRECTURE • LAND SURVEYING 763-412-4000(o) 763-412-4090(� ENVIRONMENTAL SERNCES • LANDSCAPE ARCHRECTURE www.ae-mn.com AE Comm.#14671 Date:5/3/2017 By:JLA � F F � i ' � ���x � � �� * x"!� .. t s. � �� i. , ���`�`¢�'� � A r� ' ,� - J�y � ♦ . 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DlD CqYStrtl sFx k6AC� ,i�(�4i� �D.�S'1�'.".- f� � :��osei7 �� ' ., .a /r. .� r4:vii,o..� , � . .� i , . . ... � ��-... , .. „ , . .. . . , . . , )'e!�• ..i . .� �� �'.,�. , , ', ' I � ����\ � � \l��_�. _�i_ ,.:. .. . . , _ ,... _ .... . --- �� � "'�' s-z,•x „ � - - .,,.�,, _ �vsoro APPENDIX F Credentials .�„ ANDERSON � :�. ENGINEERING Summary of Experience: Benjamin Hodapp, a Project Manager and Water Resource Scientist, brings a broad background of knowledge and experience in the environmental field to the BENJAMIN J. HODAPP, PWS Anderson Engineering team. Benjamin has a unique combination ofenvironmental Environmental Services Manager training and field skills in addition to working experience at various levels of government(USADA NRCS, USDA FSA, University of MN Extension,Watonwan County Soil and Water Conservation District and Watonwan County Environmental Services). Education: MS Water Resources Management Benjamin's project experience includes environmental review document University of Wisconsin-Madison preparation,Environmental Compliance Audits and program development,natural BS Biology;Ecology resource inventory, watershed assessments, biologic assessments, BMP Minnesota State University-Mankato implementation, Threatened and Endangered Species analysis, wetland determinations, delineations, mitigation design and monitoring, regulatory permit applications, wetland functions and values assessments, flood plain analysis, Specialized Training: ordinary high water determinations and aerial photo interpretation. Environmental Awareness Bootcamp EPA Alliance Representative Projects: Wetland Delineation&Management Training . South Shore Lake Bemidji Remediation 8 Restoration —City of Bemidji - Richard Chinn Environmental Training, Inc. Bemidji, MN: Watershed Academy Web Certificate Lead Natural Resource Scientist involved in the concept planning, design, United States Environmental Protection Agency construction and monitoring of the City's south shoreline of Lake Bemidji. Project tasks included field investigation, existing vegetative condition mapping and report, wetland avoidance measures, native planting plans, stakeholder Professional Associations: meetings, permit applications, post-construction monitoring and concept development of public outreach educational kiosks. Society of Wetland Scientists MN Wetland Professionals Association . Olympic Hills Golf Course Renovation&Stormwater BMPs—Olympic Hills MN WPA President 2010 Golf Club- Eden Prairie, M N: Wetland permitting lead for temporary and Wisconsin Wetlands Association Minnesota Native Plant Society permanent impacts associated with sediment cleanout, vegetative Ecological Society of America management, shoreline stabilization, cart path rehabilitation/realignment and pedestrian bridge construction. Project tasks included field investigation, resource mapping, coordinating regulatory meetings, preparing permit Total Experience: applications, developing mitigation and monitoring plans and coordinating 17 years purchase of wetland bank credits. • Harriet Island to South St. Paul Regional Trail — City of St Paul, City of Years with Current Firm: South St. Pa ul and Dakota County — St Pa ul, MN: Project manager for 2004 to Present wetland delineation, mapping and assessment efforts in support of multi- disciplinary consultant team responsible for preliminary engineering and final design of trail improvements, realignment and new alignments. Project tasks Publications 8 Presentations: included project management oversight and coordination, supervising field staff The Future of Rowan Creek watershed: in completion of both off-site and on-site wetland determinations, boundary Connecting Land Use and Management with Water delineations, GPS mapping and functional assessments. Oversaw preparation Quality. 2003. water resources Management of and responsible for quality assurance and quality control of all deliverable Workshop 2002 Gaylord Nelson Institute for products including wetland summary reports and GIS shapefiles. Environmental Studies, University of Wisconsin, Madison. . Southwest Light Rail Transit- Metropolitan Council — Minneapolis, MN: The Tumultuous World of Drainage Districts: An Project manager for wetland delineation and water resource permitting in Analysis of Existing Management Arrangements, support of multi-disciplinary consultant team for preparation of Final with Recommendations. Working Paper Series Environmental Impact Statement for proposed 16 mile light rail alignment. 2002-1. Water Resources Institutions and Policies, Project tasks included completion of wetland delineations, regulatory agency Department of Urban and Regional Planning, coordination, negotiations and preparation of all federal, state and local permit University of Wisconsin,Madison. applications and mitigation plans. South Shore Lake Bemidji Remediation& Restoration,Society of American Military Engineers meeting June 22,2016,St Paul, MN. �� ANDERSON Summary of Experience: � ,�. E N G I N E E R I N G Kristina Justen, an Environmental Associate, brings a range of knowledge and KRISTINA A. JUSTEN experience in the environmental field to the Anderson Engineering team. Prior to her employment with Anderson Engineering of MN, LLC, Kristina worked as a Environmental AssoCiate technician for the Minnesota Pollution Control Agency. The skills Kristina has developed through her educational background and experience as a technician make her proficient in assessing and addressing a range of environmental Education: issues, and clearly communicating solutions to clients and various regulatory BS Biology(2010) agencies. University of Wisconsin-River Falls Kristina's project experience includes natural resource inventory, watershed assessments, biologic assessments, Threatened and Endangered Species Specialized Training: analysis, NEPA project management and environmental review document Certified in Stream Electrofishing preparation, wetland determinations, delineations, mitigation design and WI DNR,April 2010 monitoring, regulatory permit applications, wetland functions and values assessments, flood plain analysis, ordinary high water determinations, Environmental Compliance Audit activities,wetland macroinvertebrate sampling, Professional Associations: Floristic Quality Assessments, Total Maximum Daily Load (TMDL)investigation, MN Wetland Professionals Association and aerial photo interpretation. Kristina has experience with Global Positioning Systems(GPS), remote sensing, and Geographic Information Systems(GIS). Total Experience: Representative Projects: 6 years • Southwest Light Rail Transit- Metropolitan Council — Minneapolis, MN: Services for wetland delineation and permitting efforts in support of multi- Years with Current Firm: disciplinary consultant team for preparation of Final Environmental Impact 2010 to Present Statement for proposed 16 mile light rail alignment. Project tasks included completion of a wetland field investigations, boundary delineations,functional assessments, GPS mapping and preparation of federal, state and local wetland permits. • Wetland Delineation/Assessment — Fort Mc Coy Alderwood Dam Removal—Fort McCoy,WI: Services included a wetland determination and delineation of wetland associated with a proposed dam removal project at the Fort McCoy U.S. Army installation. Project tasks included completion of a wetland delineation following the 1987 USACE Wetland Manual and the Midwest Regional Supplement and preparation of the wetland delineation report to document findings and help assess potential wetland impacts for Section 401/404 permitting. • NEPA Documentation/Wetland Permitting—Omaha National Cemetery— Omaha, NE: Services included preparation of an Environmental Assessment (EA)and Finding of No Significant Impact(FONSI), and supplemental permit coordination with the Omaha District U.S.Army Corps of Engineers(USACE) for proposed wetland impacts. Wetland permitting activities included completion of a wetland boundary delineation in compliance with the 1987 USACE Wetland Manual and Midwest Regional Supplement,and preparation of a USACE permit application package that included a design for an on-site compensatory wetland mitigation area. • Wetland Delineation, Permitting, and Compliance Activities — Various Locations: Services include completing the following general tasks in compliance with federal, state, and local regulations: performing routine wetland determination and delineations to identify regulated aquatic resources; preparing wetland permit applications that outline impact sequencing and replacemenUmitigation requirements; providing technical assistance to clients to develop and implement corrective actions to address compliance violations. � � �.j f:; � � }•.. _ a' ,�;; � ' _I 1 ��" � e�-�_, � -- � (J , .t 4��� � ...�. 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