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HomeMy WebLinkAboutLA220767 - 17740 Ellsworth Dr - Permit PackRESIDENTIAL BUILDING PERMIT APPLICATION CITY OF LAKEVILLE BUILDING INSPECTIONS DEPARTMENT 20195 HOLYOKE AVENUE LAKEVILLE, MN 55044 952-985-4440 Office Use Only __________________ Permit Number ___________________ Received By ___________________ Date Received ___________________ Fee Total SITE ADDRESS: MAILING ADDRESS: CITY: STATE: ZIP: JOB DESCRIPTION:__________________________________ MASTER PLAN: (Number or Address)____________________ LIST OTHER STRUCTURES ON PROPERTY:_______________________________________________________________ ESTIMATED VALUATION: PROPOSED START DATE: END DATE: (New Residential Only): LEGAL DESCRIPTION: LOT: _____ BLOCK: _____ SUBDIVISION: APPLICANT IS: RESIDENT OWNER CONTRACTOR EMAIL NEW MODEL HOME: YES NO (IF YES – ADMINISTRATIVE PERMIT REQUIRED) PLEASE FILL OUT THE FOLLOWING COMPLETELY (All Contractor information must be as listed on State License) RESIDENT OWNER NAME:_______________________________________________________________________________ HOME PHONE #:_____________________________ CELL PHONE:___________________________ GENERAL CONTRACTOR Homeowner Contractor CONTRACTOR:_______________________________________________________________________ LICENSE #:BC______________ LEAD CERTIFICATE#_______________ (PRE 1978 STRUCTURE) OFFICE PHONE #:_____________________________ CELL PHONE:___________________________ ADDRESS:____________________________ CITY:________________ ST:______ ZIP:____________ PLUMBING WORK Homeowner Contractor CONTRACTOR:__________________________________________LICENSE #: PM______________ OFFICE PHONE #:_____________________________ CELL PHONE:___________________________ ADDRESS:____________________________ CITY:________________ ST:______ ZIP:____________ MECHANICAL WORK Homeowner Contractor CONTRACTOR:________________________________________ _______________________________ _____________________________ CELL PHONE:___________________________ ADDRESS:____________________________ CITY:________________ ST:______ ZIP:____________ BOND #:_______________________________________ EXPIRATION DATE____________________ SEWER/WATER CONTRACTOR New Construction Only NAME:________________________________________________ ______________________________ _____________________________ CELL PHONE:______________________________ BOND #:_______________________________________ EXPIRATION DATE____________________ NAME OF APPLICANT (Please Print)DATE I HEREBY APPLY FOR PERMIT AND ACKNOWLEDGE THAT ALL INFORMATION ON THIS APPLICATION IS COMPLETE AND ACCURATE. THIS IS NOT A PERMIT AND WORK IS NOT TO COMMENCE UNTIL SUCH TIME A PERMIT IS ISSUED. ALL WORK WILL COMPLY WITH LAKEVILLE CITY CODE, THE MINNESOTA STATE BUILDING CODE, AND THE APPROVED PLANS. INTEREST EARNINGS ON ESCROW ACCOUNTS, IF ANY, WILL BE RETAINED BY THE CITY TO OFFSET THE ADMINISTRATIVE COSTS ASSOCIATED WITH PROCESSING THE ESCROW APPLICATION AND REFUND. OFFICE PHONE #:_ OFFICE PHONE #:_ *Entering your name affirms your intent to comply with the statement above. * Submit Application To: permits@lakevillemn.gov RESIDENTIAL BUILDING PERMIT APPLICATION PAGE 2 OFFICE USE ONLY BUILDING PERMIT TYPE REQUIRED INSPECTIONS SINGLE FAMILY DWELLING BUILDING DUPLEX AS BUILT TOWNHOUSE UNITS BUILDING FINAL DETACHED TOWN HOUSE UNIT CONDO REROOF RESIDE RES ADDN/REPAIR/RMDL DECK PORCH GARAGES LOWER LEVEL FINISH ADDITION FOUNDATION ONLY MISCELLANEOUS DEMO APPROVED BY: BUILDING INSPECTOR: Date: PLUMBING/MECHANICAL INSPECTOR: Date: COMMENTS: CITY BUILDING VALUATION: $ BUILDING PERMIT FEES $PERMIT FEE $PLAN CHECK $SURCHARGE $METRO SAC $CITY WATER HOOKUP UNIT $CITY SEWER HOOKUP UNIT $LANDSCAPE ESCROW $TREE ESCROW $MISC ESCROW $PLUMBING $MECHANICAL $SEWER WATER WATER METER PRESSURE REDUCING VALVE $OTHER $TOTAL METER SIZE PRESSURE REDUCING VALVE SEWER/WATER SEWER/WATER FINAL STREET DRAINTILE BUILDING INFORMATION TYPE OF CONSTRUCTION ZONING CODE EDITION FIRE SUPPRESSION SYSTEM OCCUPANCY GROUP MECHANICAL AIR TEST FINAL ROUGH-IN PLUMBING FINAL ROUGH-IN INSULATION LATH DECK FOOTING FIREPLACE FOOTING FOUNDATION FRAMING PORCH FRAMING PORCH FOOTING POURED WALL SITE LOWER LEVEL FINAL OTHER DECK FRAMING LOWER LEVEL FRAMING LANDSCAPING DECK FINAL $ $ ACCESSORY BUILDING EGRESS WINDOW UNDERGROUND Concept Approval ONLYSubject to Field InspectionInspectorDate2015MN BldgCode12/21/2023jnuetzman Top & BottomConnectionsBWPsAboveUFER Ground-Provide 20' Rebar in footing and stubup near electrical service panel.8 -Min. 15" clearance to anyobstruction from center ofW.C., 24" in front(typ).Top & BottomConnections555PFHPFH56855 ‹&GUETKRVKQP&CVG4GXKUKQP&GEGODGT2TQLGEV0WODGT&CVG55JGGVUQH2TKPV0COG5KIPGF.KEGPUG0WODGTÄÄ&CVG+JGTGD[EGTVKH[VJCVVJKURNCPURGEKHKECVKQPQTTGRQTVYCURTGRCTGFD[OGQTWPFGTO[FKTGEVUWRGTXKUKQPCPFVJCV+COCFWN[.KEGPUGF2TQHGUUKQPCN'PIKPGGTWPFGTVJGNCYUQHVJG5VCVGQH/KPPGUQVC-G[.CPF*QOGU(KUJ2QKPV4F5'2TKQT.CMG/0%GFCT.CMG4QCF5WKVG5V.QWKU2CTM/06GNÄÄYYYJCPUQPITQWROPEQO2.#055*190.+)*6+0$#%-)4170&#4'(14.1%#6+104'('4'0%'10.;2.#0016'5#0&'.'/'0655*190.+)*6/#;0160'%'55#4+.;57221466*'*#0510)4172ž5&'5+)0%12;4+)*6*#0510)4172..%6*+55*''654'24'5'065#%1/2.'6'&'5+)01(6*'/#+09+0&(14%'4'5+56+0)5;56'/(146*''06+4'4'5+&'06+#.5647%674'6*'.1%#6+10#0&.'0)6*1('#%*$4#%'&9#..2#0'.#0&'0)+0''4'&9+0&4'5+56+0)'.'/'066*#6+54'37+4'&(146*'*#0510)4172ž5&'5+)0+55*190106*'5647%674#.&4#9+0)59#..501652'%+(+%#..;.#$'.'&106*'2.#05/#;$'56#0&#4&(4#/+0)5'%6+1055*190&'2+%6%100'%6+1051($4#%'&9#..2#0'.561411(64755'5#$18'61,1+56564755'5$.1%-+0)#$18'#0&61,1+56564755'5$.1%-+0)$'.196*'5'2#0'.5#4'0160'%'55#4+.;4'37+4'&61#.+)0$76/#;&'2'0&+0)102.#0.#;176411(64755'5$4#%'&9#..2#0'.(.#6Z"1% /+0  2'4$4#%'&9#..2#0'. 5+/2510#(4#/+0)#0).''#%*'0&  ŒZ0#+.52418+&'9+&6*9'$56+(('0'4(14#66#%*/'061((4#/+0)#0).'$4#%'&9#..2#0'.  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For total inputs falling between listed capacities, use next largest listed input. 2. If flexible duct is used, increase the duct diameter by one inch. * *Flexible duct shall be stretched with minimal sags. TABLE 304.1 COMBUSTION AIR REQUIREMENTS FOR GAS-FIRED APPLIANCES WHEN THE COMBINED INPUT IS UP TO AND INCLUDING 400,000 Btu/hr BTU Amount for Non-direct vent appliances_____________________ 1 2 3 4 5 6 2 Conditioned space1 (in sq. ft.) Total/ Continuous Total/ Continuous Total/ Continuous Total/ Continuous Total/ Continuous Total/ Continuous 1000-1500 60/40 75/40 90/45 105/53 120/60 135/68 1501-2000 70/40 85/43 100/50 115/58 130/65 145/73 2001-2500 80/40 95/48 110/55 125/63 140/70 155/78 2501-3000 90/45 105/53 120/60 135/68 150/75 165/83 3001-3500 100/50 115/58 130/65 145/73 160/80 175/88 3501-4000 110/55 125/63 140/70 155/78 170/85 185/93 4001-4500 120/60 135/68 150/75 165/83 180/90 195/98 4501-5000 130-65 145/73 160/80 175/88 190/95 205/103 5001-5500 140/70 155/78 170/85 185/93 200/100 215/108 5501-6000 2 150/75 165/83 180/90 195/98 210/105 225/113 1. Conditioned space includes the basement and conditioned crawl spaces. 2. If conditioned space exceeds 6000 sq. ft. or there are more than 6 bedrooms, use Equation R403.5.2 R403.5.2 Total Ventilation rate. The mechanical ventilation system shall rovide sufficient outdoor air to equal the total ventilation rate average for each 1- hour period in accordance with Table R403.5.2, or Equation 403.5.2, based on the number of bedrooms and square footage of conditioned space, including the basement and conditioned crawl spaces. For the purposes of Table R403.5.2 and Section R403.5.3, the following applies: a. Equation R403.5.2 Total ventilation rate: Total ventilation rate (cfm) = (0.02 x square feet of conditioned space) + (15 x (number of bedrooms +1)) b. Equation R403.5.2.1 Continuous ventilation rate: Continuous ventilation rate (cfm) = Total ventiation rate/2 Amount Total _________________________ Amount Continuous____________________ TABLE R403.5.2 NUMBER OF BEDROOMS VENTILATION REQUIREMENTS ONE OR MULTIPLE POWER VENT OR DIRECT VENT APPLIANCES OR NO COMBUSTION APPLIANCESA ONE OR MULTIPLE FAN- ASSISTED APPLIANCES AND POWER VENT OR DIRECT VENT APPLIANCESB ONE ATMOSPHERICALLY VENTED GAS OR OIL APPLIANE OR ONE SOLID FUEL APPLIANCEC MULTIPLE APPLIANCES THAT ARE ATMOSPHERICALLY VENTED GAS OR OIL APPLIANCES OR SOLID FUEL APPLIANCESD 1. Use the Appropriate Column to Estimate House Infiltration a) pressure factor (cfm/sf) b) conditioned floor area (sf) (including unfinished basements) Estimated House Infiltration (cfm): [1a x 1b] 2. Exhaust Capacity a) clothes dryer b) 80% of largest exhaust rating (cfm): (not applicable if recirculating system or if powered makeup air is electrically interlocked and matched to exhaust) c) 80% of next largest exhaust rating (cfm):not applicable (not applicable if recirculating system or if powered makeup air is electrically interlocked and matched to exhaust) Total Exhaust Capacity (cfm): [2a+2b+2c] 3. Makeup Air Requirement a) Total Exhaust Capacity (from above) b) Estimated House Infiltration (from above) Makeup Air Quality (cfm): [3a - 3b] (if value is negative, no makeup air is needed 4. For Makeup Air Opening Sizing, refer to Table 501.4.2. A. Use this column if there are other than fan-assisted or atmospherically vented gas or oil appliances or if there are no combustion appliances. B. Use this column if there is one fan-assisted appliance per venting system. Other than atmospherically vented appliances may also be included. C. Use this column if there is one atmospherically vented (other than fan-assisted) gas or oil appliance per venting system or one solid fuel appliance. D. Use this column if there are multiple atmospherically vented gas or oil appliances using a common vent or if there are atmospherically vented gas or oil appliances and solid fuel appliances. Table 501.4.1 Procedure to Determine Makeup Air Quantity for Exhaust Appliances in Dwelling Units Choose Which Applies TYPE OF OPENING ONE OR MULTIPLE POWER VENT OR DIRECT VENT APPLIANCES OR NO COMBUSTION APPLIANCESA ONE OR MULTIPLE FAN- ASSISTED APPLIANCES AND POWER VENT OR DIRECT VENT APPLIANCESB ONE ATMOSPHERICALLY VENTED GAS OR OIL APPLIANCE OR ONE SOLID FUEL APPLIANCEC MULTIPLE APPLIANCES THAT ARE ATMOSPHERICALLY VENTED GAS OR OIL APPLIANCES OR SOLID FUEL APPLIANCESD PASSIVE MAKEUP AIR OPENING DUCT DIAMETERE,F,G OR SYSTEM (cfm)(cfm)(cfm)(cfm)(inches) Passive opening 1-36 1-22 1-15 1-9 3 Passive opening 37-66 23-41 16-28 10-17 4 Passive opening 67-109 42-66 29-46 18-28 5 Passive opening 110-163 67-100 47-69 29-42 6 Passive opening 164-232 101-143 70-99 43-61 7 Passive opening 233-317 144-195 100-135 62-83 8 Passive opening with motorized damper 318-419 196-258 136-179 84-110 9 Passive opening with motorized damper 420-539 259-332 180-230 111-142 10 Passive opening with motorized damper 540-679 333-419 231-290 143-179 11 Powered makeup airH >679 >419 >290 >179 Not applicable A. Use this column if there are other than fan-assisted or atmospherically vented gas or oil appliances or if there are no combustion appliances. B. Use this column if there is one fan-assisted appliance per venting system. Other than atmospherically vented appliances may also be included. C. Use this column if there is one atmospherically vented (ther than fan-assisted) gas or oil appliance per venting system or one solid fuel appliance. D. Use this column if there are multiple atmospherically vented gas or oil appliances using a common vent or if there are atmospherically vented gas or oil appliances and solid fuel appliances. E. An equivalent length of 100 feet of round smooth metal duct is assumed. Subtract 40 feet for the exterior hood and ten feet for each 90-degree elbow to determine the remaining length of straight duct allowable. F. If flexible duct is used, increase the duct diameter by one inch. Flexible duct shall be stretched with minimal sags. G. Barometric dampers are prohibited in passive makeup air openings when any atmospherically vented appliance is installed. H. Powered makeup air shall be electrically interlocked with the largest exhaust system. Table 501.4.2 Makeup Air Opening Sizing Table for New and Existing Dwelling Units IFGC Appendix E, Worksheet E-1 Residential Combustion Air Calculation Method (for Furnace, Boiler, and/or Water Heater in the Same Space) Step 1: Complete vented combution appliace information: Furnace/Boiler: Draft Hood Fan Assisted Direct Vent Input: Btu/hr (Not fan Assisted) & Power Vent Water Heater: Draft Hood Fan Assisted Direct Vent Input: Btu/hr ( Not fan Assisted) & Power Vent Step 2: Calculate the volume of the Combustion Appliance Space (CAS) containing combustion appliances. The CAS includes all spaces connected to one another by code compliant openings. CAS volume: ft3 Step 3: Determine air Changes per Hour (ACH)1 Default ACH values have been incorporated into Table E-1 for use with Method 4b (KAIR Method). If the year of construction or ACH is not known, use method 4a (Standard Method). Step 4: Determine Required Volume for Combustion Air. 4a. Standard Method Total Btu/hr input of all combustion appliances (DO NOT COUNT DIRECT VENT APPLIANCES) Input: Btu/hr Use Standard Method column in Table E-1 to find Total Required Volume (TRV) TRV: ft3 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 TRV then go to STEP 5. 4b. Known Air Infiltration Rate (KAIR) Method Total Btu/hr input of all fan-assisted and power vent appliances (DO NOT COUNT DIRECT VENT APPLIANCES) Input: Btu/hr Use Fan-Assisted Appliances column in Table E-1 to find Required Volume Fan Assisted (RVFA) RVFA: ft3 Total Btu/hr input of all non-fan-assisted appliances Input: Btu/hr Use Non-Fan-Assisted Appliances column in Table E-1 to find Required Volume Non-Fan-Assisted (RVNFA) RVNFA: ft3 Total Required Volume (TRV) = RVFA + RVNFA TRV = + = ft3 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 TRV then go to STEP 5. Step 5: Calculate the ratio of available interior volume to the total required volume. Ratio = CAS Volume (from Step 2) divided by TRV (from Step 4a or Step 4b) Ratio = Step 6: Calculate Reduction Factor (RF). RF = 1 minus Ratio RF = - = Step 7: Calculate single outdoor opening as if all combustion air is from outside. Total Btu/hr input of all Combustion Appliances in the same CAS (EXCEPT DIRECT VENT) Input: Btu/hr Combustion Air Opening Area (CAOA): Total Btu/hr divided by 3000 Btu/hr per in2 / Btu/hr per in 2 = in2 Step 8: Calculate Minimum CAOA. Minimum CAOA = CAOA multiplied by RF Minimum CAOA = x = in2 Step 9: Calculate Combustion Air Opening Diameter (CAOD) CAOD = 1.13 multiplied by the square root of Minimum CAOA CAOD = 1.13 x Minimum CAOA = in 1If desired, ACH can be determined using ASHRAE calculation or blower door test. Follow procedures in Section 304. CAOA = IFGC Appendix E, Table E-1 Residential Combustion Air Required Volume (Required Interior Volume Based on Input Rating of Appliances) Known Air Infiltration Rate (KAIR) Method (ft3) Input Rating Standard Method Fan Assisted Non-Fan-Assisted (Btu/hr) (ft3) 19941 to Present Pre 19942 19941 to Present Pre 19942 5,000 250 375 188 525 263 10,000 500 750 375 1,050 525 15,000 750 1,125 563 1,575 788 20,000 1,000 1,500 750 2,100 1,050 25,000 1,250 1,875 938 2,625 1,313 30,000 1,500 2,250 1,125 3,150 1,575 35,000 1,750 2,625 1,313 3,675 1,838 40,000 2,000 3,000 1,500 4,200 2,100 45,000 2,250 3,375 1,688 4,725 2,363 50,000 2,500 3,750 1,875 5,250 2,625 55,000 2,750 4,125 2,063 5,775 2,888 60,000 3,000 4,500 2,250 6,300 3,150 65,000 3,250 4,875 2,438 6,825 3,413 70,000 3,500 5,250 2,625 7,350 3,675 75,000 3,750 5,625 2,813 7,875 3,938 80,000 4,000 6,000 3,000 8,400 4,200 85,000 4,250 6,375 3,188 8,925 4,463 90,000 4,500 6,750 3,375 9,450 4,725 95,000 4,750 7,125 3,563 9,975 4,988 100,000 5,000 7,500 3,750 10,500 5,250 105,000 5,250 7,875 3,938 11,025 5,513 110,000 5,500 8,250 4,125 11,550 5,775 115,000 5,750 8,625 4,313 12,075 6,038 120,000 6,000 9,000 4,500 12,600 6,300 125,000 6,250 9,375 4,688 13,125 6,563 130,000 6,500 9,750 4,875 13,650 6,825 135,000 6,750 10,125 5,063 14,175 7,088 140,000 7,000 10,500 5,250 14,700 7,350 145,000 7,250 10,875 5,438 15,225 7,613 150,000 7,500 11,250 5,625 15,750 7,875 155,000 7,750 11,625 5,813 16,275 8,138 160,000 8,000 12,000 6,000 16,800 8,400 165,000 8,250 12,375 6,188 17,325 8,663 170,000 8,500 12,750 6,375 17,850 8,925 175,000 8,750 13,125 6,563 18,375 9,188 180,000 9,000 13,500 6,750 18,900 9,450 185,000 9,250 13,875 6,938 19,425 9,713 190,000 9,500 14,250 7,125 19,950 9,975 195,000 9,750 14,625 7,313 20,475 10,238 200,000 10,000 15,000 7,500 21,000 10,500 205,000 10,250 15,375 7,688 21,525 10,763 210,000 10,500 15,750 7,875 22,050 11,025 215,000 10,750 16,125 8,063 22,575 11,288 220,000 11,000 16,500 8,250 23,100 11,550 225,000 11,250 16,857 8,438 23,625 11,813 230,000 11,500 17,250 8,625 24,150 12,075 1The 1994 date refers to dwellings constructed under the 1994 Minnesota Energy Code. The default KAIR used in this section of the table is 0.20 ACH. 2This section of the table is to be used for dwellings constructed prior to 1994. The default KAIR used in this section of the table is 0.40 ACH. Passive (No Fan) Active (With fan and monitoring device ) Location (or future location) of Fan: Other Please Describe Here Not applicable, all ducts located in conditioned space Not required per mech. code Passive Powered Interlocked with exhaust device. Describe: Input in BTUS: Capacity in Gallons: Other, describe: AFUE or HSPF% Cfm's " round duct OR " metal duct Not required per mech. code Passive Low: Other, describe: Low: Location of fan(s), describe: Cfm's " round duct OR " metal duct Per R401.3 Certificate. A building certificate shall be posted on or in the electrical distribution panel. New Construction Energy Code Compliance Certificate Name of Residential Contractor MN License Number City Mailing Address of the Dwelling or Dwelling Unit Rigid, Extruded PolystyreneHeat Recover Ventilator (HRV) Capacity in cfms: Energy Recover Ventilator (ERV) Capacity in cfms: Combustion Air Select a Type Location of duct or system: Rim Joist (2nd Floor+) Building envelope air tightness: Below Entire Slab Fuel Type Solar Heat Gain Coefficient (SHGC): Windows & Doors Ceiling, vaulted Bay Windows or cantilevered areas Floors over unconditioned area THERMAL ENVELOPE Foam Open Cell Wall Rigid, Isocynurate Perimeter of Slab on Grade RADON CONTROL SYSTEM Total R-Value of all Types of InsulationType: Check All That Apply Mineral FiberboardInsulation Location Foam, Closed Cell Describe other insulated areas Ceiling, flat Non or Not ApplicableFiberglass, BlownFiberglass, Batts Foundation Wall Output in Tons: Appliances Cooling System Location of duct or system: Heating or Cooling Ducts Outside Conditioned Spaces Make-up Air Select a Type Domestic Water Heater Model Heating System Rim Joist (1st Floor) Average U-Factor (excludes skylights and one door ) U: Duct system air tightness: Rating or Size Efficiency Heating Gain Cooling Load Select Type Describe any additional or combined heating or cooling systems if installed: (e.g. two furnaces or air source heat pump with gas back-up furnace): Residential Load Calculation SEER /EER Capacity continuous ventilation rate in cfms: Heating Loss Manufacturer Total ventilation (intermittent + continuous) rate in cfms: Balanced Ventilation capacity in cfms: High: High: MECHANICAL VENTILATION SYSTEM Date Cert. Posted R-value MECHANICAL SYSTEMS Builders Associaton of Minnesota version 101014 Keyland Plan #5672 17740 Ellsworth Dr., Lakeville HVAC Load Calculations for Prepared By: Friday, December 1, 2023 Rhvac is an ACCA approved Manual J, D and S computer program. Calculations are performed per ACCA Manual J 8th Edition, Version 2.50, and ACCA Manual D. Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 2 Project Report General Project Information Project Title:Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Project Date:Friday, December 1, 2023 Design Data Reference City:Minneapolis, Minnesota Building Orientation:Front door faces North Daily Temperature Range:Medium Latitude:44 Degrees Elevation:834 ft. Altitude Factor:0.970 Outdoor Outdoor Outdoor Indoor Indoor Grains Dry Bulb Wet Bulb Rel.Hum Rel.Hum Dry Bulb Difference Winter:-15 -12.38 n/a n/a 72 n/a Summer:89 73 47%50%75 34 Check Figures Total Building Supply CFM:827 CFM Per Square ft.:0.227 Square ft. of Room Area:3,637 Square ft. Per Ton:1,639 Volume (ft³):20,585 Building Loads Total Heating Required Including Ventilation Air:71,113 Btuh 71.113 MBH Total Sensible Gain:20,488 Btuh 77 % Total Latent Gain:6,144 Btuh 23 % Total Cooling Required Including Ventilation Air:26,632 Btuh 2.22 Tons (Based On Sensible + Latent) Notes Rhvac is an ACCA approved Manual J, D and S computer program. Calculations are performed per ACCA Manual J 8th Edition, Version 2.50, and ACCA Manual D. All computed results are estimates as building use and weather may vary. Be sure to select a unit that meets both sensible and latent loads according to the manufacturer's performance data at your design conditions. C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 3 Miscellaneous Report System 1 Input Data Outdoor Dry Bulb Outdoor Wet Bulb Outdoor Rel.Hum Indoor Rel.Hum Indoor Dry Bulb Grains Difference Winter:-15 -12.38 100%n/a 72 n/a Summer:89 73 47%50%75 33.54 Duct Sizing Inputs Main Trunk Runouts Calculate:Yes Yes Use Schedule:Yes Yes Roughness Factor:0.00300 0.01000 Pressure Drop:0.1000 in.wg./100 ft.0.1000 in.wg./100 ft. Minimum Velocity:0 ft./min 0 ft./min Maximum Velocity:900 ft./min 750 ft./min Minimum Height:0 in.0 in. Maximum Height:0 in.0 in. Outside Air Data Winter Summer Infiltration Specified:0.280 AC/hr 0.150 AC/hr 96 CFM 51 CFM Infiltration Actual:0.280 AC/hr 0.150 AC/hr Above Grade Volume:Cu.ft.Cu.ft.X 20,585 X 20,585 5,764 Cu.ft./hr 3,088 Cu.ft./hr X 0.0167 X 0.0167 Total Building Infiltration:96 CFM 51 CFM Total Building Ventilation:190 CFM 190 CFM ---System 1--- Infiltration & Ventilation Sensible Gain Multiplier: 14.94 = (1.10 X 0.970 X 14.00 Summer Temp. Difference) Infiltration & Ventilation Latent Gain Multiplier: 22.13 = (0.68 X 0.970 X 33.54 Grains Difference) Infiltration & Ventilation Sensible Loss Multiplier: 92.85 = (1.10 X 0.970 X 87.00 Winter Temp. Difference) Winter Infiltration Specified:0.280 AC/hr (96 CFM), Construction: Average Summer Infiltration Specified:0.150 AC/hr (51 CFM), Construction: Average C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 4 Load Preview Report Scope Net Ton ft.² /Ton Area Sen Gain Lat Gain Net Gain Sen Loss Sys Htg CFM Sys Clg CFM Sys Act CFM Duct Size Building 2.22 1,639 3,637 20,488 6,144 26,632 71,113 716 827 827 System 1 2.22 1,639 3,637 20,488 6,144 26,632 71,113 716 827 827 10x16 Ventilation 2,839 4,205 7,044 17,642 190 190 190 Zone 1 3,637 17,649 1,939 19,588 53,471 716 827 827 10x16 1-Main Level 1,819 15,356 1,314 16,670 29,579 396 719 719 7--7 2-Basement 1,819 2,293 625 2,918 23,892 320 107 107 1--7 C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 5 Duct Size Preview Room or Duct Name Source Minimum Velocity Maximum Velocity Rough. Factor Design L/100 SP Loss Duct Velocity Duct Length Htg Flow Clg Flow Act. Flow Duct Size Reg Size System 1 Supply Runouts Zone 1 1-Main Level Built-In 0 750 0.01 0.1 384.6 396 719 719 7--7 2-Basement Built-In 0 750 0.01 0.1 402 320 107 107 1--7 Other Ducts in System 1 Supply Main Trunk Built-In 0 900 0.003 0.1 744.2 716 827 827 10x16 SummarySummarySummarySummarySummarySummarySummarySummary System 1 Heating Flow:716 Cooling Flow:827 C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 6 Total Building Summary Loads Component Description Area Quan Sen Loss Lat Gain Sen Gain Total Gain Gls-Marvin: Glazing-Window, U-value 0.3, SHGC 0.34 272.1 7,104 0 5,278 5,278 11D: Door-Wood - Solid Core, U-value 0.39 22.8 772 0 222 222 12B-0sw: Wall-Frame, R-11 insulation in 2 x 4 stud cavity, no board insulation, siding finish, wood studs, U-value 0.097 1957.6 16,521 0 4,386 4,386 15B0-10sf-8: Wall-Basement, , R-10 board insulation to floor, no interior finish, 8' floor depth, U-value 0.05, above grade U-value 0.083 1178.7 5,160 0 10 10 16B-50: Roof/Ceiling-Under Attic with Insulation on Attic Floor (also use for Knee Walls and Partition Ceilings), Vented Attic, No Radiant Barrier, Dark Asphalt Shingles or Dark Metal, Tar and Gravel or Membrane, R-50 insulation, U-value 0.02 1818.6 3,164 0 1,782 1,782 21A-20: Floor-Basement, Concrete slab, any thickness, 2 or more feet below grade, no insulation below floor, any floor cover, shortest side of floor slab is 20' wide, U-value 0.027 1515.5 3,560 0 0 0 22A-ph: Floor-Slab on grade, No edge insulation, no insulation below floor, any floor cover, passive, heavy moist soil, U-value 1.358 70 8,270 0 0 0 Subtotals for structure:44,551 0 11,678 11,678 People:4 800 920 1,720 Equipment:0 3,600 3,600 Lighting:200 682 682 Ductwork:0 0 0 0 Infiltration: Winter CFM: 96, Summer CFM: 51 8,920 1,139 769 1,908 Ventilation: Winter CFM: 190, Summer CFM: 190 17,642 4,205 2,839 7,044 Exhaust: Winter CFM: 190, Summer CFM: 190 Total Building Load Totals:71,113 6,144 20,488 26,632 Check Figures Total Building Supply CFM:827 CFM Per Square ft.:0.227 Square ft. of Room Area:3,637 Square ft. Per Ton:1,639 Volume (ft³):20,585 Building Loads Total Heating Required Including Ventilation Air:71,113 Btuh 71.113 MBH Total Sensible Gain:20,488 Btuh 77 % Total Latent Gain:6,144 Btuh 23 % Total Cooling Required Including Ventilation Air:26,632 Btuh 2.22 Tons (Based On Sensible + Latent) Notes Rhvac is an ACCA approved Manual J, D and S computer program. Calculations are performed per ACCA Manual J 8th Edition, Version 2.50, and ACCA Manual D. All computed results are estimates as building use and weather may vary. Be sure to select a unit that meets both sensible and latent loads according to the manufacturer's performance data at your design conditions. C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 7 Building Pie Chart Building Loss 71,113 Btuh Floor 17% Roof 4% Wall 30% Glass 10% Door 1% Infiltration 13% Ventilation 25% Building Gain 26,632 Btuh Roof 7% Wall 17% Glass 20% Door 1%People 6% Equipment 14% Lighting 3% Infiltration 7% Ventilation 26% C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 8 Detailed Room Loads - Room 1 - Main Level (Average Load Procedure) General Calculation Mode:Htg. & clg.Occurrences:1 Room Length:30.3 ft.System Number:1 Room Width:60.0 ft.Zone Number:1 Area:1,818.6 sq.ft.Supply Air:719 CFM Ceiling Height:9.1 ft.Supply Air Changes:2.6 AC/hr Volume:16,518 cu.ft.Req. Vent. Clg:0 CFM Number of Registers:7 Actual Winter Vent.:105 CFM Runout Air:103 CFM Percent of Supply.:15 % Runout Duct Size:7 in.Actual Summer Vent.:165 CFM Runout Air Velocity:385 ft./min.Percent of Supply:23 % Runout Air Velocity:385 ft./min.Actual Winter Infil.:77 CFM Actual Loss:0.075 in.wg./100 ft.Actual Summer Infil.:41 CFM Item Description Area Quantity -U- Value Htg HTM Sen Loss Clg HTM Lat Gain Sen Gain N -Wall-12B-0sw 40 X 9.1 278.3 0.097 8.4 2,349 2.2 0 624 E -Wall-12B-0sw 60 X 9.1 490 0.097 8.4 4,135 2.2 0 1,098 S -Wall-12B-0sw 40 X 9.1 324.6 0.097 8.4 2,739 2.2 0 727 W -Wall-12B-0sw 60 X 9.1 511.6 0.097 8.4 4,318 2.2 0 1,146 S -Door-11D 3.5 X 6.5 22.8 0.390 33.9 772 9.8 0 222 N -Gls-Gls-Marvin shgc-0.34 100%S (2) 20 0.300 26.1 522 10.6 0 212 N -Gls-Gls-Marvin shgc-0.34 100%S 6 0.300 26.1 157 10.7 0 64 N -Gls-Gls-Marvin shgc-0.34 100%S 4 0.300 26.1 104 10.8 0 43 N -Gls-Gls-Marvin shgc-0.34 100%S 16 0.300 26.1 418 10.6 0 170 N -Gls-Gls-Marvin shgc-0.34 100%S 39 0.300 26.1 1,018 10.6 0 415 E -Gls-Gls-Marvin shgc-0.34 0%S 39 0.300 26.1 1,018 36.0 0 1,403 E -Gls-Gls-Marvin shgc-0.34 0%S 6 0.300 26.1 157 36.0 0 216 E -Gls-Gls-Marvin shgc-0.34 0%S 10 0.300 26.1 261 36.0 0 360 S -Gls-Gls-Marvin shgc-0.34 0%S 12.5 0.300 26.1 326 19.7 0 246 W -Gls-Gls-Marvin shgc-0.34 0%S 7.2 0.300 26.1 189 36.0 0 260 W -Gls-Gls-Marvin shgc-0.34 0%S (2) 15 0.300 26.1 392 36.0 0 540 W -Gls-Gls-Marvin shgc-0.34 0%S 11.1 0.300 26.1 290 36.0 0 400 S -Gls-Gls-Marvin shgc-0.34 0%S 3.5 0.300 26.1 91 19.7 0 69 UP-Ceil-16B-50 30.3 X 60 1818.6 0.020 1.7 3,164 1.0 0 1,782 Subtotals for Structure:22,420 0 9,997 Infil.: Win.: 77.1, Sum.: 41.3 1,817 3.941 7,159 0.340 914 617 People: 200 lat/per, 230 sen/per:2 400 460 Equipment:0 3,600 Lighting:200 682 Room Totals:29,579 1,314 15,356 Equipment Cooling Loads Item Name Cont. Output Sens. Btuh Cont. Output Lat. Btuh Avg. In-Use Output Pct Used /Hour Sens. Load Btuh Lat. Load Btuh 3600 0 100 100 3600 0 Total 3600 0 C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 9 Detailed Room Loads - Room 2 - Basement (Average Load Procedure) General Calculation Mode:Htg. & clg.Occurrences:1 Room Length:30.3 ft.System Number:1 Room Width:60.0 ft.Zone Number:1 Area:1,818.6 sq.ft.Supply Air:107 CFM Ceiling Height:8.1 ft.Supply Air Changes:0.4 AC/hr Volume:14,700 cu.ft.Req. Vent. Clg:0 CFM Number of Registers:1 Actual Winter Vent.:85 CFM Runout Air:107 CFM Percent of Supply.:79 % Runout Duct Size:7 in.Actual Summer Vent.:25 CFM Runout Air Velocity:402 ft./min.Percent of Supply:23 % Runout Air Velocity:402 ft./min.Actual Winter Infil.:19 CFM Actual Loss:0.082 in.wg./100 ft.Actual Summer Infil.:10 CFM Item Description Area Quantity -U- Value Htg HTM Sen Loss Clg HTM Lat Gain Sen Gain N -Wall-12B-0sw 40 X 8.1 240.6 0.097 8.4 2,030 2.2 0 539 E -Wall-12B-0sw 7 X 4.5 31.5 0.097 8.4 266 2.2 0 71 E -Wall-15B0-10sf-8 7 X 3.5 - Abv. grade U-value 0.083 24.5 0.050 4.4 107 0.0 0 0 E -Wall-15B0-10sf-8 53 X 8.1 - Abv. grade U-value 0.083 428.4 0.050 4.4 1,876 0.0 0 4 W -Wall-12B-0sw 18 X 4.5 81 0.097 8.4 684 2.2 0 181 W -Wall-15B0-10sf-8 18 X 3.5 - Abv. grade U-value 0.083 63 0.050 4.4 274 0.0 0 0 W -Wall-15B0-10sf-8 42 X 8.1 - Abv. grade U-value 0.083 339.5 0.050 4.4 1,487 0.0 0 3 S -Wall-15B0-10sf-8 40 X 8.1 - Abv. grade U-value 0.083 323.3 0.050 4.4 1,416 0.0 0 3 N -Gls-Gls-Marvin shgc-0.34 100%S (3) 43.7 0.300 26.1 1,143 10.6 0 465 N -Gls-Gls-Marvin shgc-0.34 100%S 39 0.300 26.1 1,018 10.6 0 415 Floor-21A-20 50 X 30.3 1515.5 0.027 2.3 3,560 0.0 0 0 Floor-22A-ph 70 ft..Per. 70 1.358 118.1 8,270 0.0 0 0 Subtotals for Structure:22,131 0 1,681 Infil.: Win.: 19.0, Sum.: 10.2 447 3.942 1,761 0.340 225 152 People: 200 lat/per, 230 sen/per:2 400 460 Room Totals:23,892 625 2,293 C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM Rhvac - Residential & Light Commercial HVAC Loads Elite Software Development, Inc. West Metro Mechanical Inc.Keyland Plan #5672 17740 Ellsworth Dr., Lakeville Green Isle, MN 55338-2007 Page 10 System 1 Room Load Summary No Room Name Area SF Htg Sens Btuh Min Htg CFM Run Duct Size Run Duct Vel Clg Sens Btuh Clg Lat Btuh Min Clg CFM Act Sys CFM ---Zone 1--- 1 Main Level 1,819 29,579 396 7-7 385 15,356 1,314 719 719 2 Basement 1,819 23,892 320 1-7 402 2,293 625 107 107 Ventilation 17,642 2,839 4,205 System 1 total 3,637 71,113 716 20,488 6,144 827 827 System 1 Main Trunk Size:10x16 in. Velocity:744 ft./min Loss per 100 ft.:0.093 in.wg Cooling System Summary Cooling Tons Sensible/Latent Split Sensible Btuh Latent Btuh Total Btuh Net Required:2.22 77% / 23%20,488 6,144 26,632 Equipment Data Heating System Cooling System Type:Natural Gas Furnace Standard Air Conditioner Model: Indoor Model: Brand: Efficiency:0 AFUE 0 SEER Sound:0 0 Capacity:0 Btuh 0 Btuh Sensible Capacity:n/a 0 Btuh Latent Capacity:n/a 0 Btuh C:\Users\seski\OneDrive\Documents\Elite Software\Rhvac 10 Projects\~UNTTL0.r10 Friday, December 1, 2023, 5:11 AM