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HomeMy WebLinkAboutPERMIT DOCS1679 CLEARLAKE ROAD, COCOA, FLORIDA 32922-5703 (321) 638-1000 Approved Soar Energy System FSEC # S 9208 Approval Date: OCT 2006 DISTRIBUTOR SYSTEM Aquatherm Solar Supply 2213 Andrea Lane Fort Myers, Florida 33912 This system was evaluated by the Florida Solar Energy Center (FSEC) in accordance with the Florida Standards Program For Solar Domestic Water and Pool Heating Systems (FSEC-GP-7-80) and was found to meet the minimum standards established by FSEC. North South/Central The calculated Florida Energy Factors for this system are: 3.2 3.5 Description Collector Manufacturer Mode],Number Units Total Rating (Stu) 1. Alternate Energy Tech. ', AE- Q-- 1 34,400 2. SunEarth Inc. E4(r 1 34,900 3. 4. Tank Manufacturer Model Number Capacity (gal) Type: Direct 1. Lochinvar Corp. FTS082 80 2. Rheem Water Heaters 81 VR80-1 80 3. Rheem Water Heaters 81 VR80TC-1 80 4. American Water Heaters SE62-SOH-045S 80 Pump Manufacturer Model Number Power Draw (Watts) Rated Power 1. March Mfg. Inc. 809-BR-24 18 1 /100 H-P. 2. EL-SID, Ivan Labs Inc. 2W2 10 1 /100 H.P. 3. 4. Controller Manufacturer Model Number Type: Photovoltaic 1. Sunwise Technologies OEM-10 2. Yingil Solar PU-10 3. Freeze Protection 1. Thermally operated freeze protection valve 2. Manual drain down 3. Other Major Components 1. 2. If further information is required you may contact the Florida Solar Energy Center at the above address. FLORIDA SOLAR ENERGY CENTER November 2002 1679 CL.EARLAKE ROAD, COCOA, FLORIDA 32922-5703 (321) 638-1000 FSEC # 00089N MANUFACTURER Alternate Energy Technologies, LLC 1057 N. Ellis Road, Unit 4 Jacksonville, Florida 32254 Collector Model AE-32 This solar collector was evaluated by the Florida Solar Energy Center (FSEC) in accordance with prescribed methods and was found to meet the minimum standards established by FSEC. This evaluation was based on solar collector tests performed at the Bodycote Materials Testing Canada Inc., Mississauga, Ontario, Canada. The purpose of the tests is to verify initial performance conditions and quality of construction only. The resulting certification is not a guarantee of tong term performance or durability. DESCRIPTION Gross Length 2.470 meters . 8.10'fieet Gross Width 1.200 meters -3 94 feet Gross Depth 0.079 meters 0.26 feet Gross Area 2.965 square meters 31.91 square feet Transparent Frontal Area 2.781 square meters 29.93 square feet Volumetric_ Capacity 4.9 liters 1.3 gallons Weight (empty) 51.3 kilograms 113.0 pounds Recommended Flow Rate 76 ml/s 1.2 gpm Test Pressure 1103 kPag 160 psig Number of Cover Plates One Flow Pattern Parallel Forced Circulation Number of Flow Tubes Ten MATERIALS Enclosure Aluminum frame, aluminum back Glazing Tempered low iron glass, 0.30 cm thick Absorber Copper tubes welded to copper fins Absorber Coating Selective coating Insulation Foil faced polyisocyanurate, 3.2 cm thick THERMAL PERFORMANCE Tested per ASHRAE 93-1986 Incident Angle Modifier Kra = 1.0 - 0.19 ( coso Efficiency Equations ri = 71.7 - 499 (Ti-Ta)/I rl = 71.7 _ 87 (Ti-Ta)/l rl = 70.1 - 344 (Ti-Ta)/l - 1598 [(Ti-Ta)/I]2 rl = 70.1 - 60 (Ti-Ta)/l - 50 [(Ti-Ta)/1]2 Units of (Ti-Ta)ll are °C / Watt/m2 Units of (Ti-Ta)/l are OF / Stu/hr-ft2 RATING The collector has been rated for energy output on measured performance and an assumed standard day. Total solar energy available for the standard day is 5045 Watt-hours/m2 (1600 Btu/ft2) distributed over a 10 hour period. Output energy ratings for this collector based on the second -order efficiency curve are: Collector Temperature Energy Output Low Temperature, 35'C (95'F) 35,300 Kilojoules/day 33,500 Btu/day Intermediate Temperature, 50'C (122°F) 29,000 Kitojoules/day 27,500 Btulday High Temperature, 100'C (212'F) 9,700 Kilojoules/day 9,200 Btu/day REFERENCE 00081 N uoD'lot)aSEImsulsoN:)r 6LT2-2L8 GM 806EE 'VQI21013 'SZ13AW AOd AVM 31Hfi3d H3V3E 86991 3d 'I>ISNISON '3 Hd3SO '3NI '9NIN33NION3 INSNISON 'O'( -AE USIAZIUns ([NV a3H33NIDN3 'UMMAIN N33H SVH NVId SIHI S 88ZZ5 #3d a33NION3 lVWILOnalS o 3d 'IASNISON '0 Hd3SOf �. ON3 TWO ro \. U � w a m Q z 0 v U a � � J Q U I <C w F- W n ao N O VJ ZUf a m_ �0 NOW U z N J ~-i {W. i?o E U=W� O ON¢C_Si I l3NVd �. aroa3 1 W � Y 4 H W m z m w Y c W �a �m s nm E w u2i v�¢ 3 F- Z \ x 3. 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