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BRES2017-0115 Title 24 Main HouseI BUILDING ENERGY ANALYSIS REPORT I PROJECT: THE DALHBERG RESIDENCE 53810 Del Gato Dr - Main House La Quinta, Ca 92253 Project Designer: Ochoa Design Associa 73626 Highway 111 La Quinta, Ca 9225: (760) 773-6605 Report Prepared by: SLO I Santiago Lopez-Ocampo P.O. Box 1018 La Quinta, Ca 92247 760.485.8927 Job Number: LQ051617 Date: 8/15/2017 BQC5 ZP) '?-colt 5 MA-►nl HDUS.E CITY OF LA QUINTA BUILDING & SAFETY DEPT. APPROVED FOR CONSTRUCTION ]ATE 417 sy7F _ o_rvie'c RECEIVE, AUG 16 2017 CIT`( OF LA QUINTA COMMUNITY r.EVELOPMENT The EnergyPro computer program has been used to perform the calculations summarized in this compliance report. This program has approval and is authorized by the California Energy Commission for use with both the Residential and Nonresidential 2016 Building Energy Efficiency Standards. This program developed by EnergySoft Software — www.energysoft.com. 3 I TABLE OF CONTENTS I Cover Page 1 Table of Contents 2 Form CF-1 R-PRF-01-E Certificate of Compliance 3 Form RMS-1 Residential Measures Summary 15 Form MF-1 R Mandatory Measures Summary 17 HVAC System Heating and Cooling Loads Summary 21 r N O r W O W d r � d _ 01 LL N v a ui rn m N t9 n Q O N N N n � � U 0 T o1 0 o U w m w O N > a `m = = O > m m as 2 10 C O > in la `a _ 0 a) s0+ r = 3 ❑ o E d o O -0 E Z' 0) o N — 0 m E = d R > Q o O Z o a) C d a m c N (, 0. o 0 z c U 0 Li l0 I- Cl r M Y9 h O) r O O O r r r r r N aD m 0 2 C C fa O C O a N 01 Z 0 N 7+ Q N N H Q O % _ N p O pp L'n fa 7 C 3 M N m U T M LL N C U) O O C [0 C .O 'O Q N c(o N tooa lA Lo-� t0 Lo-� U a) O a` 0 a N d p c o 7 0 m J v y 'o a W v a o U C o N E v a p m a ao� a) O a y m O o ° C U v ns Q M U) ` LL c o U C = N�a v m A m o = Z Z 0 U Q Q Q' O LL Z_ QJ W Z W r O N O M O a O f0 O 00 O O r N r d' r fD r Oa r O N c� c N E O o M o 0 0 0 0o r o o m CDE E ti o o ri � ui C N a) a C a) m O O CD r h o C) o v CDm LO o C) o v m a E 0 U a) U) 0 Q M 10 0 Q O t` O C co 0 0. 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N Q Z O CO I` L7 U a w O ca Q ❑ J a Q co O E o U O T C c O CL U m rn U) w m 1E C f9 Q a) c E ` 8 0 m N E w 0 �O w !E C U c m a3 0.LO.. a� m U d O U) w (n c a 0 00 m ycn w _m ' � E Z w 0 o a 0 W co H 3 a w U)a m W m Z W m a w — c c� N c Q c m w c ,0 E W a D0o (D o n �3C �Q 0 C Z O 7 d C N gC C —w� ,�Co ��� Q s. W E 0 c� N m O O J C U U O w .3• tq w O 0 ai Q E Q E o a) •? 0) .2 0-❑ E H E Z co U 0 c C m a m .0 E f0 U U I` Q 0 O N N N c =w 'D Z O O N U 0 N N O W = U m a� _� c N N N O Z u, +L,,, O N c0 Q a L rn N N 00 Qy o f O O U J 0 7ia t (1) O O O U m - x a Com w E S w Y O J a) J r o c0 WH O c O> O 0 ZL0 O M a)O n O C a) M E m N CO aN�i 7 O F- 3 C L C � 6 m m Q c E d a N 0 c n d U d U m � c0 W Q a cp J � c� •- Cn ai N co 0 0 E M 0 U) v c0 ❑ U U E z � Lys 0� 0 W .r m W U U v W O ti c F w w U U 6 E E (D c0 O c 0 .O a7 N n E Z C O An a m 0 co77 O LO 0o 0 0 N (6 a7 f0 N c a) O r O Q a) O (D 0 N C'1 n O LL U C 0 0 O Q N RESIDENTIAL MEASURES SUMMARY RMS-1 Project Name THE DALHBERG RESIDENCE Building Type 10 Single Family ❑ Addition Alone ❑ Multi Family m Existing+ Addition/Alteration_ California Energy Climate Zone Total Cond. Floor Area Addition CA Climate Zone 15 6,712 505 Date 811512017 # of Units 1 Project Address 53810 Del Gato Dr - Main House La Quir INSULATION Construction Type Area Cavity (ff) Special Features Status Slab Unheated Slab -on -Grade - no insulation 6,207 Perim = 0' Existing Wall Wood Framed R 19 5,825 Existing Roof Wood Framed Attic R 30 6,207 Existing Slab Unheated Slab -on -Grade - no insulation 505 Perim = 0' New Wall Wood Framed R 21 870 New Demising Wood Framed R 19 976 New Roof Wood Framed Attic R 38 505 New Door Opaque Door - no insulation 200 Existing FENESTRATION Orientation Area(ft2) Total Area: 1,457 Glazing Percentage: 21.7 % U-Fac SHGC Overhang Sidefins NewiAltered Average U-Factor: Exterior Shades 0,48 Status Right (E) 226.6 0.770 0.70 none none Bug Screen Existing Right (E) 131.4 0.420 0.33 none none Bug Screen Altered Rear (N) 236.0 0.770 0.70 none none Bug Screen Existing Rear (N) 36.3 0.420 0.33 none none Bug Screen Altered Right (E) 40.0 0.420 0.33 none none Bug Screen New Right (E) 48.0 0.510 0.26 none none Bug Screen New Right (E) 192.0 0.510 0.26 none none Bug Screen Altered Front (S) 159.0 0.510 0.26 none none Bug Screen Altered Front (S) 24.0 0.420 0.33 none none Bug Screen Altered Right (E) 68.8 0.500 0.26 none none Bug Screen Altered Rear (N) 77.0 0.420 0.33 none none Bug Screen New Rear (N) 48.0 0.510 0.26 none none Bug Screen New Left (W) 117.0 0.500 0.26 none none Bug Screen Altered Left (W 17.2 0.420 0.33 none none Bug Screen Altered HVAC SYSTEMS Qty. Heating Min. Eff Cooling Min. Eff Thermostat Status 1 Central Furnace 78% AFUE Split Air Conditioner 16.0 SEER Setback Altered 1 Central Furnace 78% AFUE Split Air Conditioner 18.5 SEER Setback Altered 1 Central Furnace 78% AFUE Split Air Conditioner 16.0 SEER Setback Altered HVAC DISTRIBUTION Location Heating Cooling Duct Location Duct R-Value Status HVAC System - Zone 1 Ducted Ducted Attic 8.0 Existing HVAC System - Zone 2 Ducted Ducted Attic 8.0 Existing HVAC System - Zone 3 Ducted Ducted Attic 8.0 Existing WATER HEATING Qty. TXpe Gallons Min. Eff Distribution Status EnerqvPro 7.1 by EnergySoft User Number: 5732 ID: LQ051617 Page 15 of 25 RESIDENTIAL MEASURES SUMMARY RMS-1 Project Name THE DALHBERG RESIDENCE Building Type ❑ Single Family ❑ Addition Alone ❑ Multi Family m Existing+ Addition/Alteration California Energy Climate Zone - Total Cond. Floor Area Addition CA Climate Zone 15 6,712 505 Date 8/15/2017 # of Units 1 Project Address 53810 Del Gato Dr- Main House La Qui INSULATION Construction Type Area Cavity (ft) Special Features Status FENESTRATION Total Area 1.457 Gazing Percentage: 21.7 % New/Altered Average U-Factor' Orientation Area(ft2) U-Fac SHGC Overhang Sidefins Exterior Shades 0-48 Status Left (lM 35.7 0.420 0.33 none none Bug Screen New HVAC SYSTEMS Qty. Heating Min. Eff Cooling Min. Eff Thermostat Status 1 Central Furnace 78% AFUE Split Air Conditioner 16.0 SEER Setback Altered 1 Central Furnace 78% AFUE Split Air Conditioner 18.0 SEER Setback Altered HVAC DISTRIBUTION Location Heating Duct Cooling Duct Location R-Value Status HVAC System - Zone 4 Ducted Ducted Attic 8.0 Existing HVAC System - Zone 5 Ducted Ducted Attic 6.0 Existing WATER HEATING Qty. Type Gallons Min. Eff Distribution Status EnerqvPro 7.1 by EnerqySoft User Number: 5732 ID: L0051617 Pa a 16 of 25 2016 Low -Rise Residential Mandatory Measures Summary NOTE: Low-rise residential buildings subject to the Energy Standards must comply with all applicable mandatory measures, regardless of the compliance approach used. Review the respective section for more information. 'Exceptions may apply. (Original 08/2016) Building Envelope Measures: § 110.6(a)1; Air Leakage. Manufactured fenestration, exterior doors, and exterior pet doors must limit air leakage to 0.3 cfm/ft' or less when tested per NFRC-400 orASTM E283 orAAMA/WDMA/CSA 101/I.S.2/A440-2011,' § 110.6(a)5: Labeling. Fenestration products must have a label meeting the requirements of § 10-111(a). § 110.6(b), Field fabricated exterior doors and fenestration products must use U-factors and solar heat gain coefficient (SHGC) values from TA6LES 110.6-A and 110." for cam ol 1ance and must be caulked and/or weatherstri pped.' § 110,7: Air Leakage. All joints, penetrations, and other openings In the building envelope that are potential sources of alr leakage must be caulked, asketed, or weather stripped § 110.8(a): Insulation Certification by Manufacturers. Insulation specified or installed must meet Standards for Insulating Material, § 110.8(g): Insulation Requirements for Heated Slab Floors. Heated slab floors must be insulated per the requirements of § 110.8(g). § 110.8(i): Roofing Products Solar Reflectance and Thermal Emittance. The thermal emittance and aged solar reflectance values of the roofing material must meet the requirements of § 11 0.8(i) when the installation of a cool roof is specified on the CF1 R. § 110.80): Radiant Barrier. A radiant barrier must have an emittance of 0.05 or less and be certified to the Department of Consumer Affairs. Ceiling and Rafter Roof Insulation. Minimum R-22 insulation in wood -frame ceiling; or the weighted average U-factor must not exceed 0.043. Minimum R-19 or weighted average U-factor of 0.054 or less in a rafter roof alteration. Attic access doors must have permanently attached § 150.0(a): insulation using adhesive or mechanical fasteners. The attic access must be gasketed to prevent air leakage. Insulation must be installed in direct contact with a continuous roof or ceiling which is sealed to limit infiltration and exfiltration as specified in § 110.7, including but not limited to placing insulation either above or below the roof deck or on top of a drywall ceiling.* § 150.0(b): Loose -fill Insulation. Loose fill insulation must meet the manufacturer's required density for the labeled R-value. Wall Insulation. Minimum R-13 insulation in 2x4 inch wood framing wall or have a U-factor of 0.102 or less (R-19 in 2x6 or U-factor of 0.074 or § 150,0(c): less). Opaque non -framed assemblies must have an overall assembly U-factor not exceeding 0.102, equivalent to an installed value of R-13 in a wood framed assembly.* § 150.0(d): Raised -floor Insulation. Minimum R-19 insulation in raised wood framed floor or 0.037 maximum U-factor,' § 150.0(f): Slab Edge Insulation. Slab edge insulation must meet all of the following; have a water absorption rate, for the insulation material alone without facings, no greater than 0.3%; have a water vapor permeance no greater than 2.0 perm/inch; be protected from physical damage and UV light deterioration; and, when installed as part of a heated slab floor, meet the requirements of § 110.8 Vapor Retarder. In Climate Zones 1-16, the earth floor of unvented crawl space must be covered with a Class I or Class II vapor retarder. This § 150.0(g)l! requirement alsoapplies to controlled ventilation crawls ace for buildings complying with the exception to § 150.0(d). § 150.0(g)2: Vapor Retarder. In Climate Zones 14 and 16, a Class I or Class II vapor retarder must be installed on the conditioned space side of all insulation in all exterior walls, vented attics, and unvented attics with air -permeable insulation. 150.0 § (q)' Fenestration Products. Fenestration, including skylights, separating conditioned space from unconditioned space or outdoors must have a maximum U-factor of 0.58: or the weighted average U-factor of all fenestration must not exceed 0.58.' Fireplaces, Decorative Gas Appliances, and Gas Log Measures: § 150.0(e)lA: Closable Doors. Masonry or factory -built fireplaces must have a closable metal or glass door covering the entire opening of the firebox. § 150.0(e)1 B: Combustion Intake. Masonry or factory -built fireplaces must have a combustion outside air intake, which is at least six square inches in area and is equipped with a readily accessible, operable, and tight -fitting damper or combustion -air control device.' § 150.0(e)l C: Flue Damper. Masonry or factory -built fireplaces must have a flue damper with a readily accessible control.' § 150.0(e)2: Pilot Light. Continuous burning pilot lights and the use of indoor air for cooling a firebox jacket, when that indoor air is vented to the outside of the building, are prohibited. Space Conditioning, Water Heating, and Plumbing System Measures: § 110.0-§ 110.3: Certification. Heating, ventilation and air conditioning (HVAC) equipment, water heaters, showerheads, faucets, and all other regulated appliances must be certified by the manufacturer to the Energy Commission." § 110.2(a): HVAC Efficiency. Equipment must meet the applicable efficiency requirements in TABLE 110.2-A through TABLE 110.2-K.' Controls for Heat Pumps with Supplementary Electric Resistance Heaters. Heat pumps with supplementary electric resistance heaters § 110.2(b): must have controls that prevent supplementary heater operation when the heating load can be met by the heat pump alone; and in which the cut -on temperature for compression heating is higher than the cut -on temperature for supplementary heating, and the cut-off temperature for compression heating is higher than the cut-off temperature for supplementary heating.* § 110.2(c): Thermostats. All unitary heating or cooling systems not controlled by a central energy management control system (EMCS) must have a setback thermostat," Water Heating Recirculation Loops Serving Multiple Dwelling Units. Water heating recirculation loops serving multiple dwelling units must § 110.3(c)5: meet the air release valve, backflow prevention, pump priming, pump isolation valve, and recirculation loop connection requirements of § 110.3(c)5. § 110.3(c)7: Isolation Valves. Instantaneous water heaters with an input rating greater than 6.8 kBTU/hr (2 kW) must have isolation valves with hose bibbs or other fittings on both cold water and hot water lines of water heating systems to allow for water tank flushing when the valves are closed. § 110.5: Pilot Lights. Continuously burning pilot lights are prohibited for natural gas: fan -type central furnaces; household cooking appliances (appli- ances without an electrical supply voltage connection with pilot lights that consume less than 150 Btu/hr are exem t , and pool and spa heaters.' Building Cooling and Heating Loads. Heating and/or cooling loads are calculated in accordance with ASHRAE Handbook, Equipment § 150.0(h)l: Volume, Applications Volume, and Fundamentals Volume; SMACNA Residential Comfort System Installation Standards Manual; or ACCA Manual J using design conditions specified in § 150.0(h)2. 2016 Low -Rise Residential Mandatory Measures Summary § 150.0(h)3A: Clearances. Installed air conditioner and heat pump outdoor condensing units must have a clearance of at least 5 feet from the outlet of any dryer vent. § 150.0(h)3B: Liquid Line Drier. Installed air conditioner and heat pump systems must be equipped with liquid line filter driers if required, as specified by manufacturer's instructions. § 150.0Q)1; Storage Tank Insulation. Unfired hot water tanks, such as storage tanks and backup storage tanks for solar water -heating systems, must have R-12 external insulation or R-16 internal insulation where the internal insulation R-value is indicated on the exterior of the tank. Water piping and cooling system line insulation. For domestic hot water system piping, whether buried or unburied, all of the following must be insulated according to the requirements of TABLE 120.3-A: the first 5 feet of hot and cold water pipes from the storage tank; all piping with a § 150.0(j)2A: nominal diameter of 3/4 inch or larger; all piping associated with a domestic hot water recirculation system regardless of the pipe diameter; piping from the heating source to storage tank or between tanks; piping buried below grade; and all hot water pipes from the heating source to kitchen fixtures! § 150.00)2B: Water piping and cooling system line insulation. All domestic hot water pipes that are buried below grade must be installed in a water proof and non -crushable casing or sleeve.' § 150.0(j)2C: Water piping and cooling system line insulation. Pipe for cooling system lines must be insulated as specified in § 150.00)2A. Distribution piping for steam and h dronic heating systems or hot waters stems must meet the requirements in TABLE 120.3-A.' § 150.00)3: Insulation Protection. Insulation must be protected from damage, including that due to sunlight, moisture, equipment maintenance, and wind. Insulation Protection. Insulation exposed to weather must be installed with a cover suitable for outdoor service. For example, protected by § 150.00)3A: aluminum, sheet metal, painted canvas, or plastic cover. The cover must be water retardant and provide shielding from solar radiation that can cause degradation of the material. § 150.00)3B; Insulation Protection. Insulation covering chilled water piping and refrigerant suction piping located outside the conditioned space must have a Class I or Class II vapor retarder. Gas or Propane Systems. Systems using gas or propane water heaters to serve individual dwelling units must include all of the following: a § 150.0(n)1: 120V electrical receptacle within 3 feet of the water heater; a Category III or IV vent, or a Type B vent with straight pipe between the outside termination and the space where the water heater is installed; a condensate drain that is no more than 2 inches higher than the base of the water heater, and allows natural draining without pump assistance and a gas supply line with a capacity of at least 200,000 Btu/hr. § 150.0(n)2: Recirculating Loops. Recirculating loops serving multiple dwelling units must meet the requirements of § 110.3(c)5. § 150.0(n)3: Solar Water -heating Systems. Solar water -heating systems and collectors must be certified and rated by the Solar Rating and Certification Corporation SRCC or by a listing agency that is approved by the Executive Director. Ducts and Fans Measures: § 110.8(d)3: Ducts. Insulation installed on an existing space -conditioning duct must comply with § 604.0 of the California Mechanical Code (CMC). If a contractor installs the insulation, the contractor must certify to the customer, in writing, that the insulation meets this requirement, CMC Compliance. All air -distribution system ducts and plenums must be installed, sealed, and insulated to meet the requirements of CMC §§ 601.0, 602.0, 603.0, 604.0, 605.0 and ANSI/SMACNA-006-2006 HVAC Duct Construction Standards Metal and Flexible 3rd Edition. Portions of supply -air and return -air ducts and plenums must be insulated to a minimum installed level of R-6.0 (or higher if required by CMC § 605.0) or a minimum installed level of R-4.2 when entirely in conditioned space as confirmed through field verification and diagnostic testing § 150.0(m)1: (RA3.1.4.3.8). Connections of metal ducts and inner core of flexible ducts must be mechanically fastened. Openings must be sealed with mastic, tape, or other duct -closure system that meets the applicable requirements of UL 181, UL 181A, or UL 181 B or aerosol sealant that meets the requirements of UL 723. If mastic or tape is used to seal openings greater than'/< inch, the combination of mastic and either mesh or tape must be used. Building cavities, support platforms for air handlers, and plenums designed or constructed with materials other than sealed sheet metal, duct board or flexible duct must not be used for conveying conditioned air. Building cavities and support platforms may contain ducts. Ducts installed in cavities and support platforms must not be compressed to cause reductions in the cross -sectional area of the ducts: Factory -Fabricated Duct Systems. Factory -fabricated duct systems must comply with applicable requirements for duct construction, § 150.0(m)2: connections, and closures; joints and seams of duct systems and their components must not be sealed with cloth back rubber adhesive duct tapes unless such tape is used in combination with mastic and draw bands. § 150.0(m)3: Field -Fabricated Duct Systems. Field -fabricated duct systems must comply with applicable requirements for: pressure -sensitive tapes, mastics, sealants, and other requirements specified for duct construction. § 150.0(m)7: Backdraft Dampers. All fan systems that exchange air between the conditioned space and the outside of the building must have backdraft or automatic dampers. § 150.0(m)8: Gravity Ventilation Dampers. Gravity ventilating systems serving conditioned space must have either automatic or readily accessible, manually operated dampers in all openings to the outside, except combustion inlet and outlet air openings and elevator shaft vents. Protection of Insulation. Insulation must be protected from damage, including that due to sunlight, moisture, equipment maintenance, and § 150.0(m)9: wind. Insulation exposed to weather must be suitable for outdoor service. For example, protected by aluminum, sheet metal, painted canvas, or plastic cover. Cellular foam insulation must be protected as above or painted with a coating that is water retardant and provides shielding from solar radiation. § 150.0(m)10: Porous Inner Core Flex Duct. Porous inner core flex duct must have a non -porous layer between the inner core and outer vapor barrier. Duct System Sealing and Leakage Test. When space conditioning systems use forced air duct systems to supply conditioned air to an § 150.0(m)11: occupiable space, the ducts must be sealed and duct leakage tested, as confirmed through field verification and diagnostic testing, in accordance with § 150.0 m 11 and Reference Residential Appendix RA3. Air Filtration. Mechanical systems that supply air to an occupiable space through ductwork exceeding 10 feet in length and through a thermal § 150.0(m)12: conditioning component, except evaporative coolers, must be provided with air filter devices that meet the design, installation, efficiency, press re drop, and labeling requirements of§ 150.0(m)12. 2016 Low -Rise Residential Mandatory Measures Summary Duct System Sizing and Air Filter Grille Sizing. Space conditioning systems that use forced air ducts to supply cooling to an occupiable space must have a hole for the placement of a static pressure probe (HSPP), or a permanently installed static pressure probe (PSPP) in the § 150,0(m)13: supply plenum. The space conditioning system must also demonstrate airflow >_ 350 CFM per ton of nominal cooling capacity through the return grilles, and an air -handling unit fan efficacy:5 0,58 W/CFM as confirmed by field verification and diagnostic testing, in accordance with Reference Residential Appendix RA3.3. This applies to both single zone central forced air systems and every zone for zonally controlled central forced airs stems." Ventilation for Indoor Air Quality. All dwelling units must meet the requirements of ASHRAE Standard 62.2. Neither window operation nor §150.0(o): continuous operation of central forced air system air handlers used in central fan integrated ventilation systems are permissible methods of providing whole-bullding ventilation. § 150.0(o)1A: Field Verification and Diagnostic Testing. Whole -building ventilation airflow must be confirmed through field verification and diagnostic testing, in accordance with Reference Residential Appendix RA3.7. Pool and Spa Systems and Equipment Measures: Certification by Manufacturers. Any pool or spa heating system or equipment must be certified to have all of the following: a thermal efficiency § 110.4(a): that complies with the Appliance Efficiency Regulations; an on -off switch mounted outside of the heater that allows shutting off the heater without adjusting the thermostat setting; a permanent weatherproof plate or card with operating instructions; and must not use electric resistance heating.' § 110.4(b)1; Piping. Any pool or spa heating equipment must be installed with at least 36 inches of pipe between the filter and the heater, or dedicated suction and return lines, or built-in or built-up connections to allow for future solar heating. § 110.4(b)2: Covers. Outdoor pools or spas that have a heat pump or gas heater must have a cover. § 110.4(b)3: Directional inlets and time switches for pools. Pools must have directional inlets that adequately mix the pool water, and a time switch that will allow all pumps to be set or programmed to run only during off-peak electric demand periods. § 110.5: Pilot Light. Natural gas pool and spa heaters must not have a continuously burning pilot light. 150.0 § (p)' Pool Systems and Equipment Installation. Residential pool systems or equipment must meet the specified requirements for pump sizing, flow rate, piping, filters, and valves.' Lighting Measures: § 110.9.. Lighting Controls and Components. All lighting control devices and systems, ballasts, and luminaires must meet the applicable requirements of § 110.9.' § 110.9(e): JAB High Efficacy Light Sources. To qualify as a JA8 high efficacy light source for compliance with § 150.0(k), a residential light source must be certified to the Energy Commission accordinq to Reference Joint Appendix JA8. § 150.0(k)lA: Luminaire Efficacy. All installed luminaires must be high efficacy in accordance with TABLE 150.0-A. Blank Electrical Boxes. The number of electrical boxes that are more than 5 feet above the finished floor and do not contain a luminaire or § 150.0(k)l B: other device must be no greater than the number of bedrooms. These electrical boxes must be served by a dimmer, vacancy sensor control, or fan speed control. Recessed Downlight Luminaires in Ceilings. Luminaires recessed into ceilings must meet all of the requirements for: insulation contact (IC) § 150.0(k)l C: labeling; air leakage; sealing; maintenance; and socket and light source as described in § 150.0(k)l C. A JA8-2016-E light source rated for elevated temperature must be installed by final inspection in all recessed downli ht luminaires in ceilings. § 150.0(k)l D: Electronic Ballasts. Ballasts for fluorescent lamps rated 13 watts or greater must be electronic and must have an output frequency no less than 20 kHz. Night Lights. Permanently installed night lights and night lights integral to installed luminaires or exhaust fans must be rated to consume no § 150.0(k)l E: more than 5 watts of power per luminaire or exhaust fan as determined in accordance with § 130.0(c). Night lights do not need to be controlled by vacancy sensors. § 150.0(k)1 F: Lighting Integral to Exhaust Fans. Lighting integral to exhaust fans (except when installed by the manufacturer in kitchen exhaust hoods) must meet the applicable requirements of § 150.0(k).* Screw based luminaires. Screw based luminaires must not be recessed downlight luminaires in ceilings and must contain lamps that comply § 150,0(k)1 G: with Reference Joint Appendix JA8. Installed lamps must be marked with "JA8-2016" or "JA8-2016-E" as specified in Reference Joint Appendix JA8," § 150.0(k)1 H: Enclosed Luminaires. Light sources installed in enclosed luminaires must be JA8 compliant and must be marked with "JA8-2016-E," § 150.0(k)2A: Interior Switches and Controls. All forward phase cut dimmers used with LED light sources must comply with NEMA SSL 7A. § 150.0(k)2B: Interior Switches and Controls. Exhaust fans must be switched separately from lighting systems.' § 150.0(k)2C: Interior Switches and Controls. Luminaires must be switched with readily accessible controls that permit the luminaires to be manually switched ON and OFF. § 150.0(k)2D: Interior Switches and Controls. Controls and equipment must be installed in accordance with manufacturer's instructions. § 150.0(k)2E: Interior Switches and Controls. No control must bypass a dimmer or vacancy sensor function if the control is installed to comply with 150.0 k . § 150.0(k)2F: Interior Switches and Controls. Lighting controls must comply with the applicable requirements of § 110.9. Interior Switches and Controls. An energy management control system (EMCS) may be used to comply with dimmer requirements if it: § 150,0(k)2G: functions as a dimmer according to § 110,9; meets the Installation Certificate requirements of § 130,4; meets the EMCS requirements of § 130.5 ; and meets all other requirements in § 150.0(k)2. Interior Switches and Controls. An EMCS may be used to comply with vacancy sensor requirements in § 150.0(k) if it meets all of the § 150.0(k)2H: following: it functions as a vacancy sensor according to § 110.9; the Installation Certificate requirements of § 130.4; the EMCS requirements of § 130.5(f); and all other requirements in § 150.0 k 2. § 150.0(k)21: Interior Switches and Controls. A multiscene programmable controller may be used to comply with dimmer requirements in § 150.0(k) if it provides the functionality of a dimmer according to § 110.9, and complies with all other applicable requirements in § 150.0(k)2. Q 2016 Low -Rise Residential Mandatory Measures Summary § 150.0(k)2J: Interior Switches and Controls. In bathrooms, garages, laundry rooms, and utility rooms, at least one luminaire in each of these spaces must be controlled by a vacancy sensor. § 150.0(k)2K: Interior Switches and Controls. Qimmers or vacancy sensors must control all luminaires required to have light sources compliant with Reference Joint Appendix JAB, except luminaires in closets less than 70 square feet and luminaires in hallways,* § 150.0(k)2L: Interior Switches and Controls. Undercabinet lighting must be switched separately from other lighting systems, Residential Outdoor Lighting. For single-family residential buildings, outdoor lighting permanently mounted to a residential building, or to other § 150.0(k)3A: buildings on the same lot, must meet the requirement in item § 150,0(k)3Ai (ON and OFF switch) and the requirements in either item § 150.0(k)3Aii (photocell and motion sensor) or item § 150.0(k)3Aiii (photo control and automatic time switch control, astronomical time clock, or EMCS, Residential Outdoor Lighting. For low-rise multifamily residential buildings, outdoor lighting for private patios, entrances, balconies, § 150.0(k)3B: and porches; and outdoor lighting for residential parking lots and residential carports with less than eight vehicles per site must comply with either § 150.0 k 3A or with the applicable requirements in 110.9, 130.0, 130.2, 130.4, 140.7 and 141.0, § 150.0(k)3C: Residential Outdoor Lighting. For low-rise residential buildings with four or more dwelling units, outdoor lighting not regulated by 150.0(k)36 or § 150,0 k 3D must comply with the applicable requIrements in §§ 110.9 130.0 130.2, 130.4, 140.7 and 141.0. § 150.0(k)3D: Residential Outdoor Lighting. Outdoor lighting for residential parking lots and residentlal carports with a total of eight or more vehicles per site must comply with the applicable re uirements in §§ 110.9 130.0, 130.2 130.4, 140.7, and 141.0. § 150.0(k)4: Internally illuminated address signs. Internally illuminated address signs must comply with § 140.8; or must consume no more than 5 watts of power as determined according to § 130.0 c , § 150.0(k)5: Residential Garages for Eight or More Vehicles. Lighting for residential parking garages for eight or more vehicles must comply with the applicable requirements for nonresidential garages in §§ 110.9, 130.0, 130.1, 130.4, 140.6, and 141.0. Interior Common Areas of Low-rise Multi -Family Residential Buildings. In a low-rise multifamily residential building where the total interior § 150.0(k)6A: common area in a single building equals 20 percent or less of the floor area, permanently installed lighting for the interior common areas in that building must be high efficacy luminaires and controlled by an occupant sensor. Interior Common Areas of Low-rise Multi -Family Residential Buildings. In a low-rise multifamily residential building where the total interior common area in a single building equals more than 20 percent of the floor area, permanently installed lighting in that building must: § 150.0(k)6B: i. Comply with the applicable requirements in §§ 110.9, 130.0, 130.1, 140.6 and 141.0; and ii. Lighting installed in corridors and stairwells must be controlled by occupant sensors that reduce the lighting power in each space by at least 50 percent. The occupant sensors must be capable of turning the light fully on and off from all designed paths of ingress and egress. Solar Ready Buildings: Single Family Residences. Single family residences located in subdivisions with ten or more single family residences and where the § 110.10(a)1: application for a tentative subdivision map for the residences has been deemed complete by the enforcement agency must comply with the requirements of § 110.1 0b through 110,10 e . § 110.10(a)2: Low-rise Multi -family Buildings. Low-rise multi -family buildings must comply with the requirements of § 110.10(b) through § 110.10(d). Minimum Area. The solar zone must have a minimum total area as described below. The solar zone must comply with access, pathway, smoke ventilation, and spacing requirements as specified in Title 24, Part 9 or other Parts of Title 24 or in any requirements adopted by a local jurisdiction. The solar zone total area must be comprised of areas that have no dimension less than 5 feet and are no less than 80 square feet each for buildings with roof areas less than or equal to 10,000 square feet or no less than 160 square feet each for buildings with roof areas § 110.10(b)1: greater than 10,000 square feet. For single family residences the solar zone must be located on the roof or overhang of the building and have a total area no less than 250 square feet. For low-rise multi -family buildings the solar zone must be located on the roof or overhang of the building, or on the roof or overhang of another structure located within 250 feet of the building, or on covered parking installed with the building project, and have a total area no less than 15 percent of the total roof area of the building excluding any skylight area.' § 110.10(b)2: Orientation. All sections of the solar zone located on steep -sloped roofs must be oriented between 110 degrees and 270 degrees of true north. § 110.10(b)3A: Shading. The solar zone must not contain any obstructions, including but not limited to: vents, chimneys, architectural features, and roof mounted equipment.' Shading. Any obstruction located on the roof or any other part of the building that projects above a solar zone must be located at least twice the § 110.10(b)38: distance, measured in the horizontal plane, of the height difference between the highest point of the obstruction and the horizontal projection of the nearest point of the solar zone, measured in the vertical lane." § 110.10(b)4: Structural Design Loads on Construction Documents. For areas of the roof designated as solar zone, the structural design loads for roof dead load and roof live load must be clearly indicated on the construction documents. Interconnection Pathways. The construction documents must indicate: a location for inverters and metering equipment and a pathway for § 110.10(c): routing of conduit from the solar zone to the point of interconnection with the electrical service (for single family residences the point of interconnection will be the main service panel); and a pathway for routing of plumbing from the solar zone to the water -heating system. § 110.10(d): Documentation. A copy of the construction documents or a comparable document indicating the information from § 110.10(b) through 110.10(c) must be provided to the occupant. § 110.10(e)1: Main Electrical Service Panel. The main electrical service panel must have a minimum busbar rating of 200 amps. Main Electrical Service Panel. The main electrical service panel must have a reserved space to allow for the installation of a double pole circuit § 110.10(e)2: breaker for a future solar electric installation. The reserved space must be: positioned at the opposite (load) end from the input feeder location or main circuit location; and ermanentl marked as "For Future Solar Electric". HVAC SYSTEM HEATING AND COOLING LOADS SUMMARY Project Name THE DALHBERG RESIDENCE System Name HVAC System - Zone 1 Date 8/15/2017 + Floor Area I 1,930 ENGINEERING CHECKS SYSTEM LOAD Number of Systems 1 COIL CFM Total Room Loads 2,491 Return Vented Lighting Return Air Ducts Return Fan Ventilation 0 Supply Fan Supply Air Ducts TOTAL SYSTEM LOAD COOLING PEAK COIL HTG. PEAK Heating System Sensible Latent CFM Sensible Output per System 80,000 49,472 485 789 30,472 Total Output (Btuh) 80,000 0 Output (Btuh/s ft) 41.5 2,856 1,498 Cooling System 0 0 Output per System 58,000 0 0 0 0 Total Output (Btuh) 58,000 0 2,856 55,184 485 0 Total Output (Tons) 4.8 1,498 Total Output (Btuh/sgft) 30.1 Total Output (sgft/Ton) 399.3 33,467 Air System CFM per System 2,000 HVAC EQUIPMENT SELECTION Airflow (cfm) I 2,000 York CZH06011 41,458 7,566 80,000 Airflow (cfm/sgft) 1.04 Airflow (cfm/Ton) 413.8 41,458 7,566 80,000 Jan 1 AM Outside Air (%) 0-0 % Total Adjusted System Output (Adjusted for Peak Design conditions) TIME OF SYSTEM PEAK Outside Air (cfm/sqft) y 0.00 Note: values above given at ARI conditions Aug 3 PM HEATING SYSTEM PSYCHROMETRICS (Airstream Temperatures at Time of Heating Peak) 26 OF Outside Air Ar 0 cfm 67 OF 67 OF 1 Heating Coil Supply Fan 2,000 cfm ROOM COOLING SYSTEM PSYCHROMETRICS (Airstream Tem eratures at Time of Cooling Peak Outside Air 0 cfm 76 / 62 OF 55154 OF 55 / 54 OF Q Cooling Coil Supply. Fan 2,000 cfm { p 46.2 % ROOM EnergyPro 7.1 by EnergySoft User Number: 5732 /D: LQ051617 Page 21 of 25 HVAC SYSTEM HEATING AND COOLING LOADS SUMMARY Project Name Date THE DALHBERG RESIDENCE 8/15/2017 System Name Floor Area HVAC System - Zone 2 681 ENGINEERING CHECKS SYSTEM LOAD Number of Systems 1 COIL CFM Total Room Loads 829 Return Vented Lighting Return Air Ducts Return Fan Ventilation 0 Supply Fan Supply Air Ducts TOTAL SYSTEM LOAD COOLING PEAK COIL HTG. PEAK Heating System Sensible Latent CFM Sensible Output per System 80,000 16,958 171 264 10,279 Total Output (Btuh) 80,000 0 Output (Btuh/sgft) 117.5 979 505 Cooling System 0 0 Output per System 36,600 0 0 0 0 Total Output (Btuh) 36.600 0 979 F 18,916 171 0 Total Output (Tons) 3.1 505 Total Output (Btuh/sgft) 53.7 Total Output (sgft/Ton) 223-3 11,290 Air System CFM per System 1,200 HVAC EQUIPMENT SELECTION Airflow (cfm) 1,200 York CZH03611 25,951 4,889 80,000 Airflow (cfm/sgft) 1.76 Airflow (cfm/Ton) 393.4 Outside Air (%) 0•0 % Total Adjusted System Output (Adjusted for Peak Design conditions) TIME OF SYSTEM PEAK 25,951 4,889 Aug 3 PM 80,000 Jan 1 AM Outside Air (cfm/sgft) 0.00 Note: values above given at ARI conditions HEATING SYSTEM PSYCHROMETRICS (Airstream Temperatures at Time of Heating Peak) 26 68 OF 105 OF 105 OF It d H-,III OutsideAir III 0 cfm Heating CoilAL Supply Fan 1,200 cfm ROOM 68 OF 68 OF COOLING SYSTEM PSYCHROMETRICS Airstream Temperatures at Time of Cooling Peak 76/62OF 55/54OF 55/54OF o n Outside Air Ar I I 0 cfm Cooling Coil Supply Fan 56 / 54 OF 1,200 cfm 46.2 % ROOMS 75 / 61 OF EnergyPro 7.1 by EnergySoft User Number., 5732 ID: LQ051617 Page 22 of 25 HVAC SYSTEM HEATING AND COOLING LOADS SUMMARY Project Name Date THE DALHBERG RESIDENCE 8/15/2017 System Name Floor Area HVAC System - Zone 3 1,576 ENGINEERING CHECKS SYSTEM LOAD Number of Systems 1 COIL CFM Total Room Loads 921 Return Vented Lighting Return Air Ducts Return Fan Ventilation 0 Supply Fan Supply Air Ducts TOTAL SYSTEM LOAD COOLING PEAK COIL HTG. PEAK Heating System Sensible I Latent CFM Sensible Output per System 80,000 19,093 396 362 14,116 Total Output (Btuh) 80,000 0 Output Btuh/s ft) 50.8 1,102 694 Cooling System 0 0 Output per System 58,000 0 0 0 0 Total Output (Btuh) 58,000 0 1,102 F 21,298 396 0 Total Output (Tons) 4•8 694 Total Output (Btuh/sqft) 36.8 Total Out ut (s ft/Ton) 326.1 15,504 Air System CFM per System 2,000 HVAC EQUIPMENT SELECTION Airflow (cfm) 2,000 York CZH06011 40,342 8,490 80,000 Airflow (cfm/sgft) 1.27 Airflow (cfm/Ton) 413.8 0.0 % Total Adjusted System Output (Adjusted for Peak Design conditions) TIME OF SYSTEM PEAK 40,342 8,490 Aug 3 PM Outside Air (%) 80,000 Jan 1 AM Outside Air (cfm/sgft) 0.00 Note: values above given at ARI conditions HEATING SYSTEM PSYCHROMETRICS (Airstream Temperatures at Time of Heating Peak) 68 OF Ok + C1 Outside Air I I 4 0 cfm Heating Coil Supply Fan 2,000 cfm ROOM 6,8 °r COOLING SYSTEM PSYCHROMETRICS Airstream Temperatures at Time of Cooling Peak 76 / 62 OF 55154 OF 55 / 54 OF Outside Air 0 cfm Cooling Coil Supply Fan 56 / 54 OF 2,000 cfm 46.3 % ROOM EnergyPro 7.1 by EnergySoft User Number: 5732 ID: LQ051617 Page 23 of 25 HVAC SYSTEM HEATING AND COOLING LOADS SUMMARY Project Name THE DALHBERG RESIDENCE System Name HVAC System - Zone 4 Date 8/15/2017 Floor Area 1,630 ENGINEERING CHECKS SYSTEM LOAD Number of Systems 1 COIL CFM Total Room Loads 1,098 Return Vented Lighting Return Air Ducts Return Fan Ventilation F 0 Supply Fan Supply Air Ducts TOTAL SYSTEM LOAD COOLING Sensible 22,660 0 1,308 0 0 I. 0 1,308 25,277 PEAK COIL HTG. PEAK Heating System Latent CFM Sensible Output per System 80,000 409 401 15,621 Total Output (Btuh) 80,000 Output (Btuh/sqft) 49.1 768 Cooling System 0 Output per System 58,000 0 0 0 Total Output (Btuh) 58,000 409 0 Total Output (Tons) 4.8 768 Total Output (Btuh/sgft) 35.6 Total Output s ft/Ton 337.2 17,156 Air System CFM per System 2,000 HVAC EQUIPMENT SELECTION Airflow (cfm) 2,000 York CZHO6011 40,472 8,383 80,000 Airflow (cfm/s ft) 1.23 Airflow (cfm/Ton) 413.8 Outside Air (%) 0.0 % Total Adjusted System Output (Adjusted for Peak Design conditions) TIME OF SYSTEM PEAK 40,472 8,383 Aug 3 PM 80,000 Jan 1 AM Outside Air (cfm/sgft) 0.00 Note: values above given at ARI conditions HEATING SYSTEM PSYCHROMETRICS (Airstream Temperatures at Time of Heating Peak) 26 OF Outside Air 0 cfm 68 OF 68 OF � Heating CoilAL Supply Fan 2,000 cfm ROOM 68 OF COOLING SYSTEM PSYCHROMETRICS Airstream Temperatures at Time of Cooling Peak Outside Air Ar 0 cfm 76/62OF 55/54OF 55/54OF Cooling Coil Supply Fan 2,000 cfm 56 / 54 OF 46.3 % ROOM 0— - 75 / 61 OF EnergyPro 7.1 by EnergySoft User Number: 5732 ID: LQ051617 Page 24 of 25 HVAC SYSTEM HEATING AND COOLING LOADS SUMMARY Project Name THE DALHBERG RESIDENCE System Name HVAC System - Zone 5 Date 8/15/2017 Floor Area 895 ENGINEERING CHECKS SYSTEM LOAD Number of S stems 1 COIL CFM Total Room Loads 601 Return Vented Lighting Return Air Ducts Return Fan Ventilation 0 Supply Fan Supply Air Ducts TOTAL SYSTEM LOAD COOLING PEAK COIL HTG. PEAK Heating System Sensible Latent CFM Sensible Output per System 80,000 12,377 225 293 11,378 Total Output (Btuh) 80,000 0 Output (Btuh/s ft) 89.4 845 656 Cooling System 0 0 Output per System 24,600 0 0 0 0 Total Output (Btuh) 24,600 0 225 0 Total Output (Tons) 2•1 845 656 Total Output (Btuh/sgft) 27.5 Total Output (sgft/Ton) 436.6 14,066 12,691 Air System CFM per System 1,200 HVAC EQUIPMENT SELECTION Airflow (cfm) 1,200 York CZH02411 15,737 4,987 80,000 Airflow (cfm/sqft) 1.34 Airflow (cfm/Ton) 585.4 Outside Air (%) 0•0 % Total Adjusted System Output (Adjusted for Peak Design conditions) TIME OF SYSTEM PEAK 15,737 4,987 Aug 3 PM 80,000 r Jan 1 AM Outside Air (cfm/sqft) 0.00 Note: values above given at ARI conditions HEATING SYSTEM PSYCHROMETRICS Airstream Temperatures at Time of Heating Peak) 26 OF 10 Outside Air 0 cfm 67 OF 67 OF 105 IF 105 OF Heating CoilAL Supply Fan 1,200 cfm ROOM 68 OF COOLING SYSTEM PSYCHROMETRICS (Airstream Tem eratures at Time of Cooling Peak) Outside Air 0 cfm 76/62OF 76/62OF 55/54OF 55/54OF Cooling Coil Supply Fan 1.200 cfm 56 / 54 OF 46.2% ROOM 75/61 OF EnergyPro 7.1 by EnergySoft User Number: 5732 ID: LQ051617 Page 25 of 25