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HomeMy WebLinkAboutEngery Calc 1tlt rho Ba tdi cons 9 Co don 4 O at�7�utg ThermaWl Er:v clifirAe zone 2 FORM R402-MI4. ��;,sl�be � useoi lcxmR442sr e zse*ar+R4W-IJ t1eeF a EMW �,altdb $ �oF aegis a�iess ,a csio i � onTsbfeR402A syin exf �� Tate,a4c�rev�da�e�ibeer�g�' � ssze�s asui an able��Y�g��►Tab3eRr�128 oY�is �fa��rmtf�itus attemad.su by the tlRAi�t�try,�'�Y��A#Y�dgsSec�cx►R�orate F€�a S�ti9 G� �. PrcosEtr NaxnE: ' '7�1 1 ( I!!Bf IIl� •BU#Lt3E1�: G E3FF3t�: s "f efc� AND AD'DRWs: - :itt�lsfllc�la#+1�t#t� �i Ali"#OBeinsffilf i 1+3fU 2_ftii�a�the Zpp�cab�spaces cjriisQ"'To ge cx�ss�t1 at!i"8�e R�?.A�3ilte utTatcctt2d. must t��sa orrtioo�eff�tttt�rttl;eregtraecl'Ee�s- _ I Complete page 1 on the"I-o Be ftMtall�d" t tefortc M 3.Read the[egciir meras of Table R4MB slat clMdk each bwtn iteMRte Vc- f'v'cMT p;yvMit aSzpp9=sbL-KWM 23s4 sign arnl cue the focrri 4.Read.sign and date the"Fmpamd if cerhT=ZffM st*wo tat fhe befnm of 1-The or ov�r►ei's agent. • [:heck 1. Now cons€wagon,add't€' n,or a t$blA tig "{. ,•/' 2. Vhgle-femW detached Or;tt0pie-faNdY erred 2- 3. tf muiipte-fir,nurnberof wv bylibst�n 3_ ' 4. Is Ofta wramt case?(yeslria) 4. � b. Conditioned floor area(sq.ft) 6. Windows type and area: U � a)U-factor: 6a. ------ ----;��•� .b) Solar'1-leat Gain C.oefficlent(SHGC): 6b. .2� c) Area: 6Q 7. SicyTrgYrls,type and area a)U-€ac#.or. 7a- b) Solar'lieat£rain CaetwevA(S"C-C)c G) SkSr 9Mal'ea. Tc. 8. Floor type,area or perifnaW,and iiisulatioir_ / a) Slab-on-grade(R-value) $a. r j a V-- b) Wood,rased(11 value) Sb. a);Woods common(1-value) Be. d) ,Concrete,raised(i-uaiue) e) Concrete,ca MvR(R-value) se 9. Wal{type,area and knscft#on: a) Bdedor. 1.itWmd f me OmWation l-value) ' 9a'il- �L I M sortiy(#rsuWdtt R value] • b) Acrpoent~ 1. Woad frame( a5on Ravalue) 9 , 2. Mas'W"%Mftfiofi ft- M) 10. Ceiling We,area and irwae an a) Mr.(lwWaffon R-VaWe) spa. b) S'Incgie awembty OnWaram.R-tom) l of y i 1. Air cusbribubn sysferit: y. a) Ductinsulatlon b) AHUtocation c) Tonal Duct Leakaga,Tesf repW attached 12. Cooring system: a)type: b)elfit y 12b. �? 13. Heating system: A)toe: 138. b)effirtency3b, 14. KVAC sWng calculaiion= atfached 14_ 15. Water heaiartg a era: a)fype 6)effic�ency 15b- s {hereby rr1Sy►thatflt2 stated&Jthiseorasnbysrorminciicate to[st4 ale it's, _ • . = ; $ vt t :Aottda:8t dn�9 rtergy�Gensenra�ifo -�� ecl#nr PREPARED 9*- FherabpC27tF_ tt.gd�tg.isurssvt 'tt p { �� _ ". (f . CODE OFFtGtAf' Sf3i20i5 9'L419 _-- l t►�e f USRCSi3 v C Seth{R40&41 COWMt Page 1 of 3 FILE TABLE R402A BuILDiNG COMPONENT' PRESCRIPTIVE REGU1.REfii}e_NTS' INSTALLED VALUES Cruroe Zane 1 Climate Zone 2 Windows: U-Factor=0.W U•Facfor-0.40' U-Factor=D.*U SHGC=0.25 SHGC=025 SHGC= .t7•.?-�. Skylights U•'dctor=0.75 tLfactor=0.65 U-tacxr= SHGC=0.30 SHGC=0.30 ,SHGC= Doors:Exterior door U izcto =(Y.65' (Ltactor=O.d()' U forlorn Floors: Slab-o r de NR NR Over t>nconditfarrd spaces' IR-13 R-13 R-Value= -� Walfs':E)trand Adl. Frame R-13 R-13 FFVahn= . mass Insulation on wall interior. R-4 R-6 R-Value= -7, I Insulation on v2fl exterior R3 R-4- R-Velus CeTiny R=30 R-38 R-Va ue Air iribRration: Blamer door test is required on the buildirig envelope to verify leakage 5 5 ACH; Total leakage=ACH. rest report provided to cod°official- Test report Attached? Yes ` N Air allMbuUon systems: ` Air handling unit Not allowed at attic Locaborr Duct R-value R vaiue>_R-8(supply in arics)or>_R-6(a9 other duct locations)- R-Value= Zp Air leakage: Duct test Postconstrsction test: Total!eakage<4 dm/100 s.t. Total feaEPse= t c,4rJ100s.f. Rough-in test Total leakage,<_3 Um/100 s.t. Test report Attache f? Yes C)No0 Ducts in conditioned space Test not required if all ducts andAHU are In cordoned space Location: Air Conditioning system: NrInimurn federal standard required by NAEC9. CEntrig system:9 65.01)0 Biufn SEER 13.0 SEER-- Room unit or PTAC EER[from Table C403.2.3(3)] EER= Other. See Tablas C4032-341)-(11) Heating system; Minimum federal-standard required by NAEC9 Heat pump:5 65.0^W ShA HSPF 7.7(before 1f1/f5);HSPF 8.2(as of 1/1115) HSPF= 8 Z Gas furnace,non-weatherized AFUE 80% AFUE= Oa furnace.non-weatherized AFUE 83 w AFUE= Other. Water heating system(storage type): Minimum federal standard required by NAECA' Electric' 40 gal:EF=092 Gallons 00 gal:EF=0l Gas fired' 40 gat EF=•0S9 Gallons Ga4ans 50 gal:EF=0.68 EF= Other(dercr�e}: - NR=No requuemeot. (1)Each component present in the As Proposed home must meet or exceed each of the applicable iormance edreha in order to comply with thus code thing this method. (2)For impact rated iezestrarion complying with Section R30L2.1.2 of the Florida Building Code,Residential or Section 1609.1•2 of the Florida Building Code. Building the maximum U-factor stall be 0.75 in CHmae Zone-1 and 0.65 in Clima:a Zane 2 An area-weighted average of U-factor and SHGC shall be accepted to,meet the requirements,or up to 15.square feet of Blazed fenestration area are exempted from the(I factor arc SHGC requiremeat based on Sections R4023.1.R4(M32 and R40233. (3)One side-hinged opaque door assembly up to 24 square feet is exempted from this U`actor requirement: (4)R-values are for insulapoa matei=al only as applied in actorriznce with manufacturers' irsiaIIauoa itutrltcHotu.For mass was,the`4nteti:ot of wall"requirement must be met except if at least.50 percent of the insulation required for the"exterior of wall-is installed exterior of,or integral to.the wall. (5)Ducts&f.HC1 installed"substandany leak a-ea^.pet'Section t2-4032-2.test rewired by an energy rater certified in accordance with Section 553.99.Florida Srarkzes.or as authorized by Florida Statures.The tor2l leakage lest is not required for ducts and air handlers located entirely Within the bmUng thermal envelope. (6)Minimum efficiencies are those set by the National Appliance Energy Conservation Act of 1987 for typical residential.equipment and are subject toNASCA riles and reparation.For other types of equipment,see Tables C403 2XI-11)of the Commercial provirions of the f7orida&ufldhng Cod4 Energy Conser+xioa. (7)Rioter electric storage volumes,min EF=0.97-(0.00132 x volurbc). (8)For other natural gat storage volumes,min.EF=0.67-(0.0019=volume). TABLE R4028 MANDATORY REQUIREMENTS Cempor"d won I Summary of Requhement(s} Cheek Air leakage R402.4 To be ca Xned,gasreted,weathemtipped o7 otherwise waled per 7�ab!e R4024.1.i.Recessed lighting:IC-rated as having:5 2.0 din tested to ASTM E 283. Windffxs and doors:0.3 cW--q.ft(swinging doors:OS cimlef)when tested to NFRC400 or AAMMAAANDDMA/CSA 101f CI I.S.2iA440. IFlrep�ces-Tight-fitter flue darnpsrs&outdoor combustion air. PnspanT,able R403.12 Whore forced air furnace is primary system.a programmable fh rnostat is required. thermostat Au distribution system R40322 Ducts shalt be tested to Sectiori F.03 of the RESNET standards by an energy rates cemed in accordance with R40324 Sector 553.59.Florida Statutes,or as authorized by Radda Statutes.Air handling units are not abused in artigs.. Water heaters R40'd.4 Comply with efficiencies.in Table C404.2 Hot.water pipes kwiatcw to Z R-3to k tGten outlet,,other cases. / Circulating systems to have an automatic or accessible manual OFF switch.Heat trap required for vertittJ pipe {{ d risers• i Swimming pools&spas PAW.9 Spas and tteaLd pools must have vapor-retardant covers or a lqul ruler or other issza(s prdven to reduce heat loss except it 70%of heat from ea-recovered energy.Of ffirmr mMtch required.Gas heaters minimum thermal efficiency is 82%.Heat purr p Pool heaters minimum COP is 4.a Coolknip.eaFmg R403.6 Sizing calculation performed&attached.Special occasion cooling or h--a&Q:rapacity requires separate system or Ll equipment variable capacity system: Lighting equipment R404.1 At least 75 b of penTamenlly installed lighting frxtures shall be hlgh-efficacy lamps. Y SYSTEM SIZING SUMMARY System:1216 s indian river dr Block Load 3.05 Location:Fort Pierce, Florida June 06,2017 Prepared by:Marcos Misrahi PE Page:1 • Zone Name: addition TABLE 1.SIZING DATA(COOLING) Total Coil Load 20,420 BTU/hr Load Occurs June 16:00 Sensible Coil Load 15,825 BTU/hr Outdoor Db/Wb 91.5r17.9 F Total Zone Sensible 15,267 BTU/hr Coil Conditions: Supply Temperature 57.0 F Entering Db/Wb 75.3/64.9 F Supply Air(Actual) 786 CFM Leaving DbRVb 56.7/56.2 F Supply Air(Standard) 785 CFM Apparatus Dewpoint. 55.7 F Ventilation Air 15 CFM Bypass Factor 0.050 Direct Exhaust Air 0 CFM Resulting Zone RH 57.2 % Reheat Required 0 BTU/hr Total Coil Load 1.70 Ton Floor Area 397 sgft Sensible Coil Load 1.32 Ton Overall U-Value 0.2.45 BTU/hr/sgft/F SQFT/Ton 233.30 Vent Air 0.04 CFM/sgft Cooling 51.44 BTU/hr/sqft V,,.t Ai, 7-0 VFMIFersim _Cpnlinn L9R (`FM/ctift� TABLE 2.SIZING DATA(HEATING) Heating Coil Load 8,184 BTU/hr Heating 20.62 BTU/hr/sqft Ventilation Load 470 BTU/hr Heating 1.98 CFM/sgft Total Zone Load 7,715 BTU/hr Floor Area 397 sgft Ventilation Airflow 15 CFM Overall U-Value 0.245 Supply Airflow 786 CFM Vent Air 0.04 CFM/sgft Vent Air 7.50 CFM/Person TABLE 3.INPUT DATA WEATHER Location Fort Pierce,Florida Data Source User Defined Summer Dry-Bulb 93.0 F Latitude 26.6 Degree Coincident Wet-Bulb 78.0 F Elevation 15.0 ft Daily Range 18.0 F TABLE 4. INPUT(HVAC SYSTEM) System Name 1216 s indian river dr THERMOSTAT SETPOINTS ' System Type Clg and Warm Air Ht Cooling(Occ.) 75.0 F System Start 6:00 Cooling(Unocc.) 75.0 F Duration 24 hrs Heating 70.0 F SIZING SPECIFICATIONS RETURN AIR PLENUM No Supply 57.0 F FAN Ventilation 15 CFM Configuration Draw-Thru Exhaust 0.00 CFM Static Pressure 0.50 in.wg. FACTORS Coil Bypass 0.050 Safety(Sens) 0 % Safety(Latent) 0 % Heating Safety 0 % TABLE 5. TOP TEN COOLING COIL LOADS Time Sensible Ton Total Ton Time Sensible Ton Total Ton 1) June 16:00 1.32 1.70 6) July 14:00 1.31 1.69 2) June 15:00 1.32 1.70 7) June 14:00 1.30 1.68 3) July 15:00 1.33 1.70 8) July 17:00 1.30 1.68 4) July 16:00 1.32 1.69 9) July 13:00 1.28 1.65 5) June 17:00 1.31 1.69 10) June 13:00 1.27 1.65 - , SYSTEM SIZING SUMMARY System:1216 s indian river dr Block Load 3.05 Location:Fort Pierce, Florida June 06,2017 Prepared by:Marcos Misrabi PE Page:2 • Zone Name:addition TABLE 6. ZONE SIZING DATA Max.Cooling Design Airflow Max.Heating Design Flow Sensible Rate Load Rate Zone Name (BTU/hr) (CFM) Design Time (BTU/hr) (CFM) addition 15,333 789 July 15:00 7,715 -