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2016-00237 - mechanical
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2016-00237 - mechanical
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Last modified
8/22/2023 3:54:37 PM
Creation date
7/5/2016 3:18:06 PM
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x Address Old
House Number
2750
Street Name
Casco Point
Street Type
Road
Address
2750 Casco Point Road
Document Type
Permits/Inspections
PIN
2011723240020
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Directions -The Minnesota Fuel Gas Code method to calculate to size of a required combustion air opening, is called the Known Air <br /> Infiltration Rate Method. For new construction,46 of sfep 4 is required to be filled out. <br /> IFGC A endix E,Worksheet E-1--Residential Combustion Air Calculation Method for Furnace,Boiler,and/or Water Heater in the Same S ace <br /> Step 1:Complete vented combustion appliance information. <br /> Furnace/Boiler: <br /> [�raft Hood OFan Assisted ODirect Vent Input: 80000 Btu/hr <br /> or Power Vent <br /> Water Heater: <br /> �raft Hood Q Fan Assisted �irect Vent Input: 55000 Btu/hr <br /> or Power Vent <br /> Step 2:Calculate the volume of the Combustion Appliance Space(CAS)containing combustion appliances.The CAS includes all <br /> spaces connected to one another by code compliant openings. <br /> CAS volume: �280 ft' L x W x H L W H <br /> Step 3: Determine Air Changes per Hour(ACH)1 <br /> Default ACH values have been incorporated into Table E-1 for use with Method 4b(KAIR Method). <br /> If the year of construction or ACH is not known,use method 4a(Standard Method). <br /> Step 4: Determine Required Volume for Combustion Air.(DO NOT COUNT DIRECT VENT APPLIANCES) <br /> 4a.Standard Method <br /> Total Btu/hr input of all combustion appliances Input: Btu/hr <br /> Use Standard Method column in Table E-1 to find Totai Required TRV: - ft' <br /> Volume(TR�If CAS Volume(from Step 2)is greater than TRV then no outdoor openings are needed.If CAS Volume(from Step 2)is less than <br /> TRV then go to STEP 5. <br /> 4b.Known Air Infiltration Rate(KAIR)Method(DO NOT COUNT DIRECT VENT APPLIANCES) <br /> Total Btu/hr input of all fan-assisted and power vent appliances Input: 55000 Btu/hr <br /> Use Fan-Assisted Appliances coiumn in Table E-1 to find RVFA: 4125 ft3 <br /> Required Volume Fan Assisted(RVFA) <br /> Total Btu/hr input of all Natural draft appliances Input: Btu/hr <br /> Use Natural draft Appliances column in Table E-1 to find RVNFA: ft' <br /> Required Volume Natural draft appliances(RVNDA) <br /> Total Required Volume(TR�=RVFA+RVNDA TRv= 4125 + ----------- = 4125 TRV ft3 <br /> If CAS Volume(from Step 2)is greater than TRV then no outdoor openings are needed.If CAS Volume(from Step 2)is/ess than TRV then go to STEP 5. <br /> Step 5:Calculate the ratio of available interior volume to the totai required volume. <br /> Ratio=CAS Volume(from Step 2)divided by TRV(from Step 4a or Step 4b) <br /> Ratio= 1280 �4125 _.31 <br /> Step 6:Calculate Reduction Factor(RF). RF= 1 minus Ratio <br /> RF=� - •31 _.69 <br /> Step 7:Calcuiate single outdoor opening as if all combustion air is from outside.Total Btu/hr input of all Combustion Appliances in the same CAS <br /> Input: 55000 Btu/hr(EXCEPT DIRECT VENT) <br /> Combustion Air Opening Area(CAOA):Total Btu/hr divided by 3000 Btu/hr per inZ <br /> ca,oa=55000 /300o Btu/hr per inz=�8•3 �n2 <br /> Step 8:Calculate Minimum CAOA: Minimum CAOA=CAOA multiplied by RF <br /> Minimum CAOA= �8.3 x.69 _ 12.6 �nz <br /> Step 9:Calculate Combustion Air Opening Diameter(CAOD): CAOD=1.13 multiplied by the square root of Minimum CAOA <br /> CAOD=1.13� Minimum CAOA= 4�0 in.diameter go up one inch in size if using flex duct <br /> 1 If desired,ACH can be determined using ASHRAE calculation or blower door test.Follow procedures in Section G304. <br /> 5 <br />
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