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    • 2. 发明公开
    • DOUBLE LAYER SOLAR HEATING-AND-COOLING THERMOSYPHON SYSTEM
    • 杜邦制造商SONNENENERGIE-THERMOSIPHON-SYSTEMFÜRERHITZUNG UNDKÜHLUNG
    • EP2771624A4
    • 2015-09-30
    • EP12843338
    • 2012-10-29
    • TEOH SIANG TEIK
    • TEOH SIANG TEIK
    • F24J2/44E04D13/00F24D11/00F24F5/00F24J2/00F24J2/26F24J2/34F24J2/46F25D1/00F28D5/00
    • F24J2/44E04D13/00F24D11/003F24F2005/0064F24J2/0023F24J2/26F24J2/345F24J2/4647F25D1/00F28D5/00Y02B10/20Y02E10/44
    • A solar liquid-heating-and-cooling system (20) includes: 1. a hot-liquid storage-tank (22); 2. a hot-liquid manifold-tank (26); 3. a coaxial heating-and-cooling-tube (24) that connects downward from the hot-liquid storage-tank (22) to the hot-liquid manifold-tank (26); 4. a double layer heating-and-cooling collector-array-panel (32) located beneath the hot-liquid manifold-tank (26), the panel (32) including, connected to the hot-liquid manifold-tank (26) a. an upper layer of glazed heating-tubes (36); and b. a lower layer of unglazed cooling-tubes (56); 5. parabolic-trough mirror reflectors (64) that are located between the upper and lower layers of tubes (36, 56); 6. cold-liquid manifold-tank (92) located below the panel (32) connected to lower ends both of the glazed heating-tubes (36) and of the unglazed cooling-tubes (56); 7. a cold liquid storage tank (98); and 8. a coaxial heating-and-cooling-tube (96) that connects downward from the cold-liquid manifold-tank (92) to the cold liquid storage tank (98).
    • 太阳能液体加热和冷却系统(20)包括:1.热液储罐(22); 2.一种热液歧管罐(26); 3.一种从热液储罐(22)向下连接到热液歧管罐(26)的同轴加热和冷却管(24); 4.一种位于热液歧管槽(26)下方的双层加热和冷却收集器阵列板(32),所述面板(32)包括连接到热液歧管罐(26) 一个。 上层玻璃加热管(36); 和b。 下层的无釉冷却管(56); 5.抛物面反射镜(64),其位于管(36,56)的上层和下层之间; 6.位于面板(32)下方的冷液歧管槽(92),其连接到两个釉面加热管(36)和无釉冷却管(56)的下端; 7.冷液储罐(98); 8.一种从冷液歧管箱(92)向下连接到冷液储罐(98)的同轴加热和冷却管(96)。
    • 6. 发明专利
    • ES2202474T3
    • 2004-04-01
    • ES96933025
    • 1996-09-13
    • TEOH SIANG TEIK
    • TEOH SIANG TEIK
    • F24J2/34F24J2/44F24J2/46F24S10/75
    • A collector core (104) for a solar water-heating-system (100) includes a plurality of heat-absorbing pipes (108) each of which surrounds a cooler-water return-pipe (116). The heating-pipes (108) may connect directly to an insulated hot-water storage-tank (104) from which cooler water descends through the return-pipes (116) into the heating-pipes (108). Upon reaching the end of the return-pipes (116), the cooler water flows outward into the space between the surrounding heating-pipes (108) and the inner return-pipes (116). Upon warming, water between the two pipes (108, 116) rises upward back to the hot-water storage-tank (104) thus completing the thermosyphon flow cycle. Preferably, the inner return-pipe (116) is made of polyvinyl chloride ("PVC"), polybutelene ("PB"), or other compressible material which permits collector core (106) operation both in freezing and non-freezing environments. Alternatively, the collector core (106) may be added to an existing solar water-heating panel (102') to improve its operation.
    • 10. 发明专利
    • COAXIAL TUBE SOLAR HEATER WITH NIGHTTIME COOLING
    • CA2779447A1
    • 2011-05-26
    • CA2779447
    • 2010-11-23
    • TEOH SIANG TEIK
    • TEOH SIANG TEIK
    • F24J2/44F24S10/70
    • Disclosed is a solar water-heating-and-cooling system (20) that included a collector array panel (32, 36) having thermosyphon coaxial heating/cooling tubes (52). The disclosed system (20) avoids damaging the collector array panel (32, 36) by filling the tubes (52) : 1. only when environmental conditions ensure that damage won't occur,- and/or 2. using a filling method that ensures that damage won ' t occur. Thermosyphon coaxial heating/cooling tubes (52) disclosed herein may be open both at their upper and lower ends. Tubes (52) that are open at their, lower end enables capturing radiative cooling of liquid present within the tubes (52). A cold water storage tank (46) and cold radiator array (48) included in the water.-heating-and-cooling system (20) permits preserving and using the radiative 'cooling. Also disclosed are coaxial tubes (104, 106) that enable simpler and easier installation of the system (20), and also provide a less architecturally intrusive system (20).