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HomeMy WebLinkAboutPermit File BLD-2021-0279 4510 San Juan Avenue (3)VICINITY MAP --•-•`-D ADM • • : e. 5 71 S• TOTAL PROPOS® NEW= 253 SCO, Fr. IMPBaAOLSAF€A T REPOSEDADDMON/ OVER-MIGS 5 71 SO. FF.. 2. PFDPOSED OOVBFED BZW 0\0W 1C't3° 90 SO, Fr 3. FFOPOSED DECK 413 SO, Fr. 4. EMSTING DBXTO BE FLOWED 824 SQ Fr. 5. EMSTING SF R OVA B 79 SCE. Fr. 6. D4STING GWGd- OVB+PNGS 515 SCO, Fr. 7. EMSTING S -BY OVA 96 SCE, Fr. 8. EMSTING OONC FE E DRVE/ PAF;NNG 6 'Q SO. Fr. LOTSM T928 SCE. Fr. + - T FOSION OONTFOL: OOVBRALL DCAVATED SOIL MHTAFP VVFHN 24 FFS 2. ALL DOWASPOUf 5 TO SPLASH BLOCF6 TO S-EEr FLOW ONTO PFOPERY FOLLOWNG BISTING DRNNACE PATFS 3. ADDFESR 45'D SQN JLANAVEANA0DFaES, WA98221 4. PAF CE # P81771 _ TOTAL LOTODVB?M 34% 24, E I L of NOTE 0 I cV p 2' 1 LOT 0FLAT NO& O I N I JI I I W =E/ L w/ E/ L I I I I O I Scope of work. I I r 0 © DISIDE SION_ �I ® 0 ROW PATH Q N 2I / E DISF�ON � I O5 I FLOW PATH Ii / I I JI _ I I 48' 30, I 20. i I 7' S, t I J � I 51t / PFAINA6F PI,AN 1'=20'-0" 0 P-TAP, PFP,,5PFCTIVF Project only includes vestibule and front porch, items 5 and 6 in keyed notes. rr"'ONT' rFr\\'5rFCfIVF CITY OF ANACORTES PLANNING AND BUILDING DEPT: APPROVED PLANS REVIEWED FOR CODE COMPLIANCE PERMIT #: BLD-2021-0279 ADDRESS: 4510 San Juan Ave APPROVED BY: SUBJECT TO FIELD INSPECTION. APPROVED PLyfS SHALL NOT BE ALTERED WITHOUT AUTHORIZA ON. N N N s GFNFPAL N0TF5 INSTALLAWN PERMANI.F. DOLBLEJSTS LNDERINTERORBRXM PF;DMDESOLID .. , •:. VA-LS TFATAFE .:,- TO . 4. •• • - • DIMENSIONS AN. SrTE 00NDFnONS -- • - • CONST 5. ALL GLASS : OF - .•• : •- a 'ti IN .•• : TO BE SAFE1Y GLASS • STAFS TO RSE AND A MIN. 13 `.AND 1 7. ALL C'0.ti .• • • FAVEA MIN. OPENING OF S• 1 CLEARV\ADTHANDFBGHF 8. VYINDOWSILL TO BE MAX44" OFF OF FLOOR • D R•- ` • • • • • • • • It ATnC\/ENT TO BEOONTRDGE\/ENTANDSQ;EENBDGNBLEME�nS 12. ALL `.:: PER DErAL BOLDING DESIGED TO OOMR-YU H 2O Z IFS PULPING FFQUIFFMFNf5 1. fOfA� 1%ILPIN6 5Q, Ff.: 1832 5Q, Ff. 2, fOfA� 6APA6F 5Q. Ff.: 415 5Q. Ff. 3, fOfA� COVFpFb POFCH 5Q. Ff.: -48 50. Ff, IN51AVON FFQUIFTMFNf5 Poor: p-49 �XTPIOp WAL�5; p-21 MIN, `�OOP5; p-38 Project to comply with 2018 codes. 5HFFT INPFX Al PFP?5PFCTIVF5, 51T� PLAN, VICINITY MAP A2 6FNFP?& NOTE5, 5CHFPULF5, FNFI?6Y COPS A� FLOOP PLAN A4 FOUNPAT10N PLAN, PFTAIL5 A5 �XffIOP, UVATION5 A6 FOOF FPAMIN6 PLAN, PFTAIL5 Al CF055 5FCTION VIEW, 17FMO PLAN AB LATEPAL 17F516N PLAN A9 M�CHANICAL NOT�5 © ii- ••- �i- iri ��•�1:11101 NO � • �� ©NO : • •• :- re701M • F.M. •- ••Tmm:97� R=19"me-vul• SEEM, ro �$ vivo � I a re 1= -MO re 1= ro 1� of ref• -••� �•• -�� �•: MIM EXT HNGED VMNDEMEF;E DOOR ro�*_ = • • • 1;_'Q M : KIN 43 93 9M, i TOM Window, Skylight and Door Schedule Project Information Richardson Addition t510 San Juan Ave \nacortes, WA 98221 Ref. U-factor Exempt Swinging Door (24 sq. ft. max.) Exempt Glazed Fenestration (15 sq. ft. max.) Vertical Fenestration (Windows and doors) Component Description Ref. U-factor l Robert and Ruth Richardson MASTER BATH 0.28 MASTER BEDROOM 0.28 MASTER BEDROOM 0.28 MASTER BEDROOM 0.28 MASTER BEDROOM SGD 10.30 KITCHEN 10.28 Overhead Glazing (Skylights) Component Width Height Qt. Feet Inch Feet Inch Width Height Qt. Feet Inch Feet Inch MMEME MMEME MMEME MMEME MMEME MMEME Sum of Vertical Fenestration Area and UA Vertical Fenestration Area Weighted U = UA/Area Description Ref. U-factor Width Height Qt. Feet Inch Feet Inch Sum of Overhead Glazing Area and UA Overhead Glazing Area Weighted U = UA/Area Total Sum of Fenestration Area and UA (for heating system sizing calculations) Area UA 11 111 11 111 Area UA 7.5 2.10 12.0 3.36 30.0 8.40 20.0 5.60 40.01 12.00 12.01 3.36 121.5 34.82 0.29 Area UA 11 111 11 111 11 111 11 111 11 111 11 111 0.01 0.00 0.00 121.51 34.82 Simple Heating System Size: wasnington State This heating system sizing calculator is based on the Prescriptive Requirements of the 2018 Washington State Energy Code (WSEC) and ACCA Manuals J and S. This tool will calculate heating loads only. ACCA procedures for sizing cooling systems should be used to determine cooling loads. Please complete the green drop -downs and boxes that are applicable to your project. As you make selections in the drop -downs for each section, some values will be calculated for you. If you do not see the selection you need in the drop -down options, please contact the WSU Energy Program at energycode@energy.wsu.edu or (360) 956-2042 for assistance. Project Information Contact Information Richardson Addition Robert and Ruth Richardson 4510 San Juan Ave (360)770-6638 Anacortes, WA 98221 Heating System Type: O• All other Systems Q Heat Pump To see detailed instructions for each section, place your cursor on the word "Instructions" Design Temperature Instructions Design Temperature Difference (AT) 46 Anacortes 4T =Indoor (70 degrees) -Outdoor Design Temp Area of Building Conditioned Floor Area instructions Conditioned Floor Area (sq ft) Average Ceiling Height Instructions Average Ceiling Height (ft) Glazing and Doors Instructions u-o.za Skylights Instructions Insulation Attic ,tions R-49 � Single Rafter or Joist Vaulted Ceilings Select R-Value Above Grade Walls (see Figure 1) Instructions R-21Intermediate Floors R-38 Below Grade Walls (see Figure 1) S "i; iOiiS CSeletR-value Slab Below Grade see Figure 1 Instructions Select conditioning � Slab on Grade (see Figure 1) Instructions Select R-Value Location of Ducts Instructions rM Unconditioned Space Figure 1. Above Grade 387 Conditioned Volume 8.0 3,096 U-Factor X Area = UA 0.280 122 34.16 U-Factor X Area = UA 0.50 --- U-Factor X Area = UA 0.026 387 10.06 U-Factor X Area UA No selection --- U-Factor X Area UA 0.056 393 22.01 U-Factor X Area UA 0.025 387 9.68 U-Factor X Area UA No selection 0 --- F-Factor X Length UA No selection 0 --- F-Factor X Length UA No selection Duct Leakage Coefficient 1.10 Sum of UA 75.91 Envelope Heat Load 3,492 Btu / Hour Sum of UA x AT Air Leakage Heat Load 1,538 Btu / Hour Volume x 0.6 x AT x 0.018 Building Design Heat Load 5,030 Btu / Hour Air leakage + envelope heat loss Building and Duct Heat Load 5,533 Btu / Hour Ducts in unconditioned space: sum of building heat loss x 1.10 Ducts in conditioned space: sum of building heat loss x 1 Maximum Heat Equipment Output 7,746 Btu / Hour Building and duct heat loss x 1.40 for forced air furnace Building and duct heat loss x 1.25 for heat pump 2018 Washington State Energy Code - Residential Prescriptive Energy Code Compliance for All Climate Zones in Washington Single Family - New & Additions (effective February 1, 2021) Version 1.0 These requirements apply to all IRC building types, including detached one- and two-family dwellings and multiple single-family dwellings (townhouses). Project Information Contact Information RICHARDSON ADDITION ROBERT AND RUTH RICHARDSON 4510 SAN JUAN AVE ANACORTES, WA 98221 360 770-6638 Instructions: This single-family project will use the requirements of the Prescriptive Path below and incorporate the minimum values listed. Based on the size of the structure, the appropriate number of additional credits are checked as chosen by the permit applicant. Provide all information from the following tables as building permit drawings: Table R402.1- Insulation and Fenestration Requirements by Component, Table R406.2 - Fuel Normalization Credits and 406.3 - Energy Credits. Authorized Representative I C_`a� I Date II02/25/2021 All Climate Zones (Table R402.1.1) R-Value a U-Factor a Fenestration U-Factor b n/a 0.30 Skylight U-Factor b n/a 0.50 Glazed Fenestration SHGC bje n/a n/a Ceiling a 49 0.026 Wood Frame Wall 8,h 21 int 0.056 Floor 30 0.029 Below Grade Wall c•h 10/15/21 int +TB 0.042 Slab d,fR-Value & Depth 10, 2 ft n/a R-values are minimums. U-factors and SHGC are maximums. When insulation is installed in a cavity that is less a than the label or design thickness of the insulation, the compressed R-value of the insulation from Appendix Table A101.4 shall not be less than the R-value specified in the table. The fenestration U-factor column excludes skylights. "10/15/21 +5TB" means R-10 continuous insulation on the exterior of the wall, or R-15 continuous insulation on b the interior of the wall, or R-21 cavity insulation plus a thermal break between the slab and the basement wall at c the interior of the basement wall. "10/15/21 +5TB" shall be permitted to be met with R-13 cavity insulation on the interior of the basement wall plus R-5 continuous insulation on the interior or exterior of the wall. "5TB" means R-5 thermal break between floor slab and basement wall. R-10 continuous insulation is required under heated slab on grade floors. See Section R402.2.9.1. d For single rafter- or joist -vaulted ceilings, the insulation may be reduced to R-38 if the full insulation depth e extends over the top plate of the exterior wall. R-7.5 continuous insulation installed over an existing slab is deemed to be equivalent to the required perimeter f slab insulation when applied to existing slabs complying with Section R503.1.1. If foam plastic is used, it shall meet the requirements for thermal barriers protecting foam plastics. For log structures developed in compliance with Standard ICC 400, log walls shall meet the requirements for g climate zone 5 of [CC 400. Int. (intermediate framing) denotes framing and insulation as described in Section A103.2.2 including standard h framing 16 inches on center, 78% of the wall cavity insulated and headers insulated with a minimum of R-10 insulation. Each dwelling unit in a residential building shall comply with sufficient options from Table R406.2 (fuel normalization credits) and Table 406.3 (energy credits) to achieve the following minimum number of credits. To claim this credit, the building permit drawings shall specify the option selected and the maximum tested building air leakage, and show the qualifying ventilation system and its control sequence of operation. 1. Small Dwelling Unit: credits Dwelling units less than 1,500 sf in conditioned floor area with less than 300 sf of fenestration area. Additions to existing building that are greater than 500 sf of heated floor area but less than 1,500 sf. 2. Medium Dwelling Unit: 6 credits All dwelling units that are not included in #1 or #3 3. Large Dwelling Unit: 7 credits Dwelling units exceeding 5,000 sf of conditioned floor area 4. Additions less than 500 square feet: 1.5 credits All other additions shall meet 1-3 above Before selecting your credits on this Summary table, review the details in Table 406.3 (Single Family), on page 4. Summary of Table R406.2 Heating Credits - select ONE Options Fuel Normalization Descriptions heating option User Notes 1 Combustion heating minimum NAECAb 0.0 0 2 Heat pump` 1.0 ❑ 3 Electric resistance heat only - furnace or zonal -1.0 ❑ 4 DHP with zonal electric resistance per option 3.4 0.5 ❑ 5 All other heating systems -1.0 ❑ Energy Credits - select ONE Options Energy Credit Option Descriptions energy option from each p cator 1.1 ff d 0.5 e❑ 1.2 Efficient Building Envelope 1.0 ❑ 3 Efficient Buildins Envelope 0.5 1.4 Efficient Building Envelope 1.0 IJ 1.5 Efficient Building Envelope 2.0 ❑ 1.6 Efficient Building Envelope 3.0 ❑ 1.7 Efficient Building Envelope 0.5 ❑ 2.1 Air Leakage Control and Efficient Ventilation 0.5 ❑ 2.2 Air Leakage Control and Efficient Ventilation 1.0 ❑ 2.3 Air Leakage Control and Efficient Ventilation 1.5 ❑ 2.4 Air Leakage Control and Efficient Ventilation 2.0 ❑ .1a High Efficiency HVAC 1.0 • 3.2 High Efficiency HVAC High Efficiency HVAC High Efficiency HVAC High Efficiency HVAC 1.0 ❑ ❑ 3.3' 1.5 3.4 1.5 ❑ 3.5 1.5 ❑ 3.61 High Efficiency HVAC L High Efficiency HVAC Distribution System 2.0 ❑ 4.1 0.5 ❑ 4.2 High Efficiency HVAC Distribution System 1.0 ❑ Summary of Table R406.2 (cont.) C d't 1 t ONE ' Energy Options Energy Credit Option Descriptions (cont.) Efficient Water Heating Efficient Water Heating Efficient Water Heating re l s - se ec energy option from each category d 5. Id 0.5 ❑ 5.2 0.5 ❑ 5.3 1.0 ❑ 5.4 Efficient Water Heating 1.5 ❑ 5.5 Efficient Water Heating 2.0 ❑ 5.6 Efficient Water Heating 2.5 ❑ 6.1e Renewable Electric Energy (3 credits max) 1.0 ❑ 7.1 Appliance Package 0.5 User Notes Total Credits 1 1.5 IlCalculateTotallI Clear Form a. An alternative heating source sized at a maximum of 0.5 W/sf (equivalent) of heated floor area or 500 W, whichever is bigger, may be installed in the dwelling unit. b. Equipment listed in Table C403.3.2(4) or C403.3.2(5) c. Equipment listed in Table C403.3.2(1) or C403.3.2(2) d. You cannot select more than one option from any category EXCEPT in category 5. Option 5.1 may be combined with options 5.2 through 5.6. See Table 406.3. e. 1.0 credit for each 1,200 kWh of electrical generation provided annually, up to 3 credits max. See the complete Table R406.2 for all requirements and option descriptions. f. Use the single radiobutton in the upper right of the second column to deselect radiobuttons in that group. N � N N � N S CG1-6 00 -7p ,,` PLANNING, COMMUNITY, & ECONOMIC DI l C O g DEPARTMENT Mailing Address: P.O. Box 547, Anacortes, WA 98, Office Location: 904 6th Street, Anacortes WA 988 Phone: (360) 293-1901 Instructions for Printing Digital Plan Review l This City of Anacortes Planning, Community, and Economic Development has adopted ar process, in response to C0VID-19, for those who wish to reduce contact or reduce natura any questions please contact the The Permit Coordinator at 360-293-1901. We are also you have to improve this system. It is the applicant's responsibility to provide approved submittal documents for use on • Documents with color or with approval stamps are to color, or black and red. • Documents shall be provided in full size, and to scale. • It is advisable to protect the documents from inclemei sleeves are available upon request. • All drawings, engineering, surveys, and supporting do required to be on the job site at the time of inspection are not available, the inspection will be cancelled. Aft( cancelled inspection, a re -inspection fee will be charge Be sure your packet includes: • Permit • Permit Inspection Card, print on heavy stock if possible. This i duration of your project. • Site Plan • All Drawings • Stormwater Plan or SWPPP • Engineering, if included in submittal • Landscape Plan • Any other supporting reports or documents Being properly prepared with the necessary plans on site wi inspectors to complete your inspections. 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WIND D4a0SlF NO�IZON1'AL nIA�N�AGM SCN�nUK� C f?00� ) SN�ArNING 11�ICKN�55 �AN�� NAILING �nG�S & 130UNbAt?Y �I��� 111611 8d L' 6"o�c� 8d L' 12"o�c� N � N N s z i 1 S� 1 z °o � N z , Wood structural panels nailed 6" oc at � � _ + perimeter and 12" oc in the field at the new vestibule are adequate for lateral design. �3 N sSz 2 c�v�P �3 STDHD w B M W6P A z I I I I I I I z O � O s O U �77V z V O 1 4 =1-0 W M z o �zo av 0 LAI�L FOF�E INFOF�/IAIION: (I.6E ONLY NOTES CO E FI 1 I.11 INSTALLATION TABLETI-E COMPONENTS OF THE BULDING THERMAL BWELOPE AS LISTED IN TABLE P40 2.4. 11 WILL BE •, 1 2.4. 11 AS APPLICABLE TO THE IMETHDID OF CONSTRUCTION.- • -:. BY THE T I V 7&11: A\ I oil I --- kvA Ill a7.11: 1: WALLS RIM JOISTS CIPAML SPADEVVALLS BFEAIG ORJOINTTS IN THE AIRBARRIERSI-ALL BE SEALED. INSU.-ATION AND ANY CA:S IN THE AR RAMER SEALED '••ate OPENINGI F;OP DCl SFAROR MEE WALL DOOM TO LNCONDITIONED ATTIC SPACES SIl BE SEALBID CORNEMAND A.:F;S SI-ALL BE INSILLATED AND THE J LNC-TION OF • .A • SILL PLATE. . :. TI-E J LNCTON OF TFE TOP PLATE AND TOP OF E)MRORWALLS SI-PLL BE SEALED. : SEAM. THE SPACE BET"EEN WINDOW/ DOORJAMBS, AND BRWING AND SK!"LIG-iTS; AND FRWINI.L BE SEALED. RIM J • . AND • • A- RAMER : `SUBFLOORDECNNG ATFACHEID TO THE •RIML`•A• B4`OSIED EARTH IN LNVENTED CF;AV\L SPACES -S-ALL BE COVERED VVI A CLASS I VAPO LNOCINDITIONED SPAM SHN-L BE SEALED SPACE TlGi� IC R�JBD, AND SEALED TO THE DIRMALL. BATT INSULATION SFPU.L BE CUF NEATLY TO FITAFUWD WRING AND PLUMBING IN PLLMBING AND VURNG EXTMORWALLS, ORINSLLATION TATON INSTALLATION FFADILYCONF ORMS TO AVAILABLE SPACE SFPLL EXTEND BEHIND PIPING AND WRING SFDVI TUB ON EX IER1ORVV4LL DCEROR WALLS ADJACENT TO SFDVHS AND TUBS SHALL BE INSLLAlED AND THE AIR RAMER INSTALLED SEPAF;Al1NG THEM FRDIM TFE SHOVHB AND TLBS ELEI✓`fRCAL / PFDI�E BOX ON EXTEFdORVVPJIS TFEAJRBARRIERSFPLL BE INSTALLED BEI-IND ELECTRCA- ORCOMMLNICATION BOSS OR AIRSEALED BOA SFPILL BE INSTALLED. FVAG FMSTER BOOTS FVAC FEGISfERBOOTS TI AT PENETRATE BOLDING THERMAL ENVELOPE SHALL BE SEALED TO TFE SUBFI_OORORDRVUALL. RR31ACE AN AIR BAMERSI-ALL BE INSTALLED ON FIR13LACEV1T4LLS. FIREPLACES SHALL HOVE G4SIETED DOORS, F40 2.4.12 TESIINO PRESSLFF- OF 0.2 INCHES W.G. ( 5 0 PASCALS) . w-ERE- FuQuRED Byi�-E CODE OFFICIAL, =NG SI-PLL BE 00NDUCTED BY AN ... REPORTSI-ALL BE SIGNED BYTI-E PARTY 00NDI-CEING THE TIESTAND PRDVIDE) 70 11-E CODE OFFICIAL. TEB11NG SI-PLL - •• DLRNG TESTING CLOSED, BLJF NOT SEALED BEYOND INTENDED INRLTF;AflON CONI MEASI 3. INTEROR DOOI IF INSTALLED AT THE TIME OF THE TE-7), SI--ALL BE OPEN; BE CLOSED AND SEALED 5. HEATING AND COOLING SYSTEMS, IF INSTALLED AT TI-E TIME OF THE =, SI-ALL BE TLFNED OFF, AND 6. aPPLY AND RETLFN FEGSU;S� IF INSTALLED AT TI-E TIME OF THE TEBT, S--ALL BE FLLLY OPEN. =ON M 15 0 7 - MECHANICAL VEN11LA110N. M150 7.3.1 SYSTEM DESIGN. EACH DVELLING LNITORGUESTRDOM SFP,LL BE EQUPPED VUTHA VENTILATION SYSTEM COMPLYING VUTH SECTION M 5 0 7.3.4, MT 0 7.3.5, M'5 0 7.3.6 OR M16 0 7.3.7. COMPLIANCE IS ALSO PERMITTED TO BE DEMONSTF;AIID TH:OIGH COMPLIANCE VUTH THE INTE:NATIONAL MECH4NICAL CODE OOCLRANT 4. •• • • - HDLSE VWTILAflON: 0ONTINI • - HDLSE VE3[\MLAflON VENTILATION SYSTEM V\ATF-DUF EN8;GZING OTHER ENB:;GY - CONaMING APPLI*,Il= A LABEL SI-PLL SYSTBMS ` CIDMFLY VMTH THE FOLLOV\ANG 5.1 THEY SI-PLL BE CAPABLEOF OFEF;AJING INT8WITTEI. CONTINUIDLELY 5.2. TFEY SI-ALL HnIVE CONTROLS CAPABLE OF OPERNTING TFE Dl-� FANS, FORCED - PJRSYSTB\A FXI 5.4. THE SYST8M SI-PLL BE DESIGNED SO TFAT IT CAN OPERATE AL)TOMATICA-LY BASED ON THE TYPE OF CONTML TIMERINSIALLED. _. INTERMITTENT THE • : • : • •: • • - • OF • _ TIMER HDLSE FAN ACCORDING TO THE SCHHUE LSED TO CALCLLATE THE VV-DLE• SIZING •--INI]IONI •1 -• : • -A • • : • • • : • • : ` IN A000 \/ III -I TABLE M'5 0 7.3.3 ( � . D(CIPTION: -n-E w-DIE- FIXES mEa-PNICPL VB mLA-noN semEmS B F97 MFD TO OF9i1lE IMBWiTIBayw4ff€ T1 E s67F 1 FASCON1 S7EATE\M�OLFF4\lIONFORNOTLESSTFPN25 PHCEZOFEPf.7-14-FOLRSPGMB\RANDTI-E \EOLNION ROTE PFMDiB®IN TABLE M'50 7.3.3(I IS MLLTIRIEDBYTI-E FPCTORDEIBTAIN®IN P YVCE WTHTPBLE M50 7.3.3(2) . TABLE M'6 0 7.3.3 ( 1 NLMBEROF BEDFOOMS DOLING INIT 0- 1 2-3 4-5 6-7 > 7 FLOORAFEA ( S1QLVF- FEET) AIFFLOW IN CFM <1500 1500 -3,000 3,0 01- 4,50 0 4,501- 6,000 6,001- 7,500 45 60 60 75 75 90 1) 5 75 90 90 V 5 1) 5 120 V 5 110 135 120 135 0 >7,501 'D 5 120 135 150 135 FORS: 1SQUAFEFOOT= 0.0929 W, 1 CUBIC FOOT PERMINJE = 0.000471) W/ S TABLE M-5 0 7.3.3( 2 ) INTEFdMFFTEVF V\HXE - HJLBE MELD-PNICAL VENTILATION WE EACTOFZSa. b RN - TIME RUCENWE IN 15" 4 - FDIRSB3VENT 2 5 % 33 % 5 0 % 6 6 % 75 % 130 FAG"TORa 4 3 2 15 13 10 INTB420l ..... . ... . . . . . . . . . - - . - 4 . - M15 0 7.3.4.1 VU-DLE HJLSE - VENTILATION FANS. E*AUST FANS PIODVIDING VU-DLE - HDLSE VENTILATION SHALL HAVE A FLOW R4 ING AT 0 .25 INCHB WAIFG-kE AS SPEGRED IN TABLE M'60 7.3.3(1 . MANLFACTLJ;EF;S FAN FLOW F;4TINGS STALL BE DETERMINED ACCD DING TO FM 9 B ORAMCA 21J . M'6 0 7.3.4.3 FAN CONTROLS THE W-DLE - FDLSE VENTILATION FAN SHALL MEET THE FEQUFEVIENTS OF SECTION MT 0 7.3.2 AND MT 0 7.3.2.1 DOORSPFOVIDIONS SI-ALL BE MADE TO BI AR FLOW BY INSTALLATION OF DISTRLBLJTION DI LNDB;OJFflNG DOOMINSTALLATION OF GRLLES� TWWI ORSIMILAR MEANS. DOOM SI BE LNDEFOX TO 3. PFOVIDE NOT LESS TFAN 4 SQLARE INI OF NEF FREE AREA OF OPENING FOR EACH H8BITABLE I CLOSERTHON 1D FEET RZOM AN APFLIXI VENT OLJTLEF, LNLIESS aJ--H VENT OIJTLEF IS 3 FEET ABOVE TF-EOUrDOORARINLEF. : OPENING :• - REIDUREMENTS FORA•LE - HDLGE VENTILATION FABITABLE SPACE SLFR-Y FANS SI-PLL FAVE TFE CAPACITY TO PROVIDE TFE AMOLNT OF OUTDOORAIR MLSF BE FILTERED BEFORE IT IS DR-I\/EF;E) TO HIINBITABLE SPACES THE FILTER MAYBE LOCATED AT THE INI: _ . . LOCATED DOVT4STF;EAM OF THE POKED - ARSYSTBM BLOV\ER AN OLJTDOORAR INLEF DUCT CONNECTION TO THE FILTER N8THRT`YFE OF DUCT SI-ALL BE CONNIECTED DIRECTLY INTO A FU`NACE CABINEF TO PREVENT THERMAL A•••R.A•E \NTH TABLE Mf5 1 • R-EMENT ON OUTSIDE OF : DING ` TABLEBE SIZED 2 INCHES IN DIAMETIERLARTERTH0IN THE OUTDOORAIR INLEF DUCT. • 1 • RIPME SUPPLY FAN DUC17 SIZING SL PPLY FAN 1ES'T® CFM AT 0.40 " V11G SPECIFIED VOLUME FRIDM MINIMUM MINIMUM TABLE B 0 7.3.3 ( 1) SMOOTH FLEMBLE DIGT DUCT DIAMETER DIAMETER 50 - 90 CFM 4 INCH 5 INCH 90 - 150 CFM 5 INCH 6 INCH '6 0 - 250 CFM 6 INCH 7 INCH 250 - 40 0 CFM 7 INCH 8 INCH M'6 0 7.3.6.3 DAIMPI TFE SYS fEM SHALL BE MUFFED VUTHA BACK- DR*T DAMPERAND ONE OF TFE FOLLOWNG 1A CALIBF;4TED MANUAL VOLUME DAMPERINSTALLED AND SETTO MEET THE MFASUf;ED FLOW F�ATEB SPECIRED IN TABLE MT 0 7.3.3(' BY FIELD TESTING VUTHA PFESSLFE GAL 1 E AND / ORFOLLOVUNG MANLFACTLJTR S INSTALLATION INSTRL'TIONS OR 2.A MANUAL VOLUME DAMPER INSTALLED AND SETZO MEETII-E MEASLF ED FLOW FLIES SPECIFIED IN TABLE M-6 0 7.3.3( � BY FIELD TEMNG VUTHA FLOW HDOD ORA FLOW MEA PING STATION; OR 3. AN AUTOMATIC FLOW - REGLLAIING DEVICE SIZED TO THE SPECIFIED FLOW RATES IN TABLE M-5 0 7.3.3 (� VV-ICH PRDMDES OONSFANT FLOW OVERA PF;ESS J:E RNNCE OF 0 .20 TO 0.6 0 INCH=S VVAIER GALXE. FORCED - ARSYSTEM DUI INI­ED FOFCED - ARA3IIITTILATION SYSTEMS SI-PLL FAVEAN OUTDOORARINLET M'607.3.6.5 OUTDOORAJR INLETS INLETS SHOLL BE SCREENED OROTH3:1/i PRDTE= FFOM ENTRI DUCT CONNECTING A TIERMINAL R-EMBI ON THE OMIDE OF THE BULDING TO THE RERYN AR FLENLM OF THE LEAVES OROT-ER MA73qAL. OUTDOORAR INLETS SI-ALL BE LOCATED SC) AS NOT TO TAIIE AIR FRDM THE FORCED - ARSYSTEM, AT A POINT \NTHN 4 FEET UDSTREPM OF THE AR WNDLER THE OLJrDOORAJR INLEF DUCT FOLLOWNG AREAS CONIIN TO CLOSERTFAN 1D FEET MOM APPLIANCE : OUTLEF, LNLESS ` • VWT OUTLEF IS 3 FEET:• AND SI-PLL NOT BE CONNECTED DIRECTLY INTO A FUq\1ACE CABINEF TO FFEVENT THERMAL SHDG< TO THE FEAT TF-EOUTDOORARINLEF. DO*NGER THE SYSTEM \NLL BE MUFFED \NTH A MOTORIZED DAMPER CONNIECTED TO THE A30MATIC 2. V+EFF- IT \NLL PICK LP OBJ 137ONABLE ODOMFLMEB OR FLAIVIABLE VAPOFS. VENTILATION CONTRIDL AS -cfEaRBD IN SECTION M5 0 7.3.2. THE FEDURED FLOW RATE SI-PLL BE VERFIED BY 3. A HV-ARDOU3 OR LNSANITAW LOCATION. FIELD TEMNG WTH A FLOW HDOD ORA FLOW ME]ASLRNG STATION. 4. A RMIM ORSRACE HMANG ANY FLEL - BLFNING APFLPNCES TH3:43N. 5. CLOSERTH4N 1D FEET FRDMI A VENT OPENING OF A PLLMBING DFAINAGE SYSTBM LNLESS THE VENT M'15 0 7.3.5.2 VENTILATION DUCT INSILLAMON. ALL SLPI:`LY DUCTS IN THE CONDITIONED SPKE SI BE OPENING ISATLEOST3 FEEFABOVETFEAIRINI LEAVES OROTHERMATEFPL. OUTDOORAR INLETS SI--PLL BE LOCATED SO AS NOT TO TAPE AR FRDM THE FOLLOVMNG AREAS • •`:- 1 FEEF FRDM-- • : OLJrLEF, LNLESSSUCH VENT•LJR-EF IS 3 FEEFABOVE TFEOUrDOORPJRINLEF. 3. 1 . AFD• ► • - LNSANITAR(LOCATION. 5. CLOSERTHAN V FEEF FRDM A VENT OPENING OF A FLUVIBING DIFANAGE SYSTEM LNLESS THE VENT •.E .B• .. 6. ATTIC, CF;AVV- SPACES ORGAI:;A� • 1 • • .` \/EVnLA-nON UE9NGREMVER(VENTILA-11ON SYSTEM.SECTION RECICIVERYVENTILATION SYSTBM. MT 0 7.3.7.1 FEAT FIE13OVER(VENTILATION SYSTEMS. ALL DU,T V\I IN FEAT F€OOVERY SYS BMS SHALL BE SIZED AND INSTALLED PERTI-E MANIFACTLFU:;S INSTFLL70NS. SYS'TBM MINIMUM FLOW RI5 ING SHALL BE NOT LESS THAN TFAT SPEaR D IN TABLE M 5 0 7.3.3 ( � . FEAT F€OOVERY VENTILATION SYSTEMS SFPLL HAVE A F ILTERON THE L,PSTFEAM SIDE OF THE I -FAT D6HANCER IN BOTHT-E INI: AND E)0-�AIFSTFEAMS VUTHA MINIMUM EFFICIENCY RING VALLE ( MW OF 6 . M15 0 7.3.7.2 VENTILATION DUCT INSULATION. ALL SUPPLY D= IN 71-E CONDITIONED SPACE INSTALLED UPSTFEAM OF TI-E FEAT DCC) *K3ERSFALL BE INSULATED TO A MINIMUM ORR4 M'b 0 7.3.7.3 OUTDOORAR INLETS INLETS SI-PLL BE SCREENED OROTI-131/i MOTE= FROM ENTRY BY FOLLOVMNG A` • •`:- 1 FEET MOM AN APPLIANCE: OLJTLEF, LNLESS• • VENT OLJTLEF IS 3 FEETAB0\/E TI-EOUT5. CLOSERTH4N 1D FEET FRDMI A VENT OPENING OF A PLLMBING DRNNAGE SYSTBM LNLESS THE VENT 6. ATTIC, CRNAL SPACES, ORGAI:4� DOORARINLEF. AREA TO BE DWSM EXH4 -6T F;4TES KTCHN 1) 0 CFM INTBdvIf ENTOR25 CFM CDNTINLOl6 6AT-Fi- TOILETRDOMS MM-PNICALBIMYSTIONDAG YOF50 CBAINTERAMENTOR LgbDWRDOMS; 20 CFM CONTINLDI,B INDOORSIMMMING POOLS, AND SPAS FOR 1 CUBIC FOOT PER MINLAE = 0.000471) W/ S M15 0 7.4.1 LOCAL EXH4 Hr FANS. EXH4 T FANS PIRDVIDING LOCAL EXH41 E7 SHALL FAVE A MINIMUM FAN FLOW Fd4l1NG NOT LESS THAN 50 CFM AT0 .25 INCH VVATERGkCE FORBATHIDOMS, LAL.NDRES. ORSIMILAR ROOMS AND 1) 0 CFM AT 0.25 INI WATERGgJ E FORNTa-ENS. MANLFACTIfU;S FAN FLOW F?4TlNGS SFPLL BE DETDdMIN® AS PERFM 9'S (Al 1995) ORAMCA 21D . B<013�II0N. VIES€ A R*JCE FDOD 01 DF T BG-PLST FAN IS LIB TO S4TIS[=YTFE LOCAL B4FPL T F€OL1R3V15VI5 KTQ- J TFE RAKE FOOD ORDOV\N DRAFT Do-- B 9-pLL NOT BE LESS TFPN 'D 0 CFM AT 0 .1) INOl CiPL£ M15 0 7.3.2 LOCAILD4*1Hr CONTROLS. LOCAL DH4.ST SYSTEMS SFPLL BE CONTROLLED BY MANUAL S NTC-ES DEHJMIDISFATS, TIMERS, OROTHERAPPROVED MEANS. LOCAL DH bTSYSTELM CONTRDLS SFPLL BE FFADILYACCESSIBLE N � N N S �