A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators

碩士 === 國立中正大學 === 光機電整合工程研究所 === 99 === Currently, there are different methods for exploiting this solar resource such as solar electricity, solar thermal, and solar-derived fuel from biomass, which provide the primary energy source for over a billion people. Solar water heating systems appear to be...

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Main Authors: Gui-Sheng Zhang, 張貴盛
Other Authors: Ching-Wu Wang
Format: Others
Language:en_US
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/48770219470302057535
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spelling ndltd-TW-099CCU006510042015-10-28T04:07:29Z http://ndltd.ncl.edu.tw/handle/48770219470302057535 A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators 創新結構設計的太陽能熱水器結合太陽熱能轉電能產生器之研究 Gui-Sheng Zhang 張貴盛 碩士 國立中正大學 光機電整合工程研究所 99 Currently, there are different methods for exploiting this solar resource such as solar electricity, solar thermal, and solar-derived fuel from biomass, which provide the primary energy source for over a billion people. Solar water heating systems appear to be one of the prominent technologies for the exploitation of solar energy and getting popularity since they are relatively inexpensive and simple to fabricate and maintain. However, too small portion of thermal energy is hard to be absorbed by water when the solar water heater is under working, and thus becomes a wasted heat-dissipation in the environment. The thermoelectric generators supply a good way to use solar thermal energy. It is efficient for economic and developing energy that utilize the thermoelectric generators to change the solar thermal energy into electric energy. Based on the statement mentioned in the above, the innovative structural design for solar water heater combining with thermoelectric generators is proposed and experimentally studied. Different convection methods, including natural convection, forced convention, and semi-natural/semi-forced convection, are observed in temperature difference of solar collectors. Moreover, the numbers of thermoelectric generator for the effects of thermoelectric conversion efficiency (η) are also discussed. The obtained results show that semi-natural/semi-forced convection can provide the highest temperature difference (42℃) of solar collectors. Furthermore, the η of thermoelectric generators is measured above 2.2%. Ching-Wu Wang 王欽戊 2011 學位論文 ; thesis 57 en_US
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language en_US
format Others
sources NDLTD
description 碩士 === 國立中正大學 === 光機電整合工程研究所 === 99 === Currently, there are different methods for exploiting this solar resource such as solar electricity, solar thermal, and solar-derived fuel from biomass, which provide the primary energy source for over a billion people. Solar water heating systems appear to be one of the prominent technologies for the exploitation of solar energy and getting popularity since they are relatively inexpensive and simple to fabricate and maintain. However, too small portion of thermal energy is hard to be absorbed by water when the solar water heater is under working, and thus becomes a wasted heat-dissipation in the environment. The thermoelectric generators supply a good way to use solar thermal energy. It is efficient for economic and developing energy that utilize the thermoelectric generators to change the solar thermal energy into electric energy. Based on the statement mentioned in the above, the innovative structural design for solar water heater combining with thermoelectric generators is proposed and experimentally studied. Different convection methods, including natural convection, forced convention, and semi-natural/semi-forced convection, are observed in temperature difference of solar collectors. Moreover, the numbers of thermoelectric generator for the effects of thermoelectric conversion efficiency (η) are also discussed. The obtained results show that semi-natural/semi-forced convection can provide the highest temperature difference (42℃) of solar collectors. Furthermore, the η of thermoelectric generators is measured above 2.2%.
author2 Ching-Wu Wang
author_facet Ching-Wu Wang
Gui-Sheng Zhang
張貴盛
author Gui-Sheng Zhang
張貴盛
spellingShingle Gui-Sheng Zhang
張貴盛
A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
author_sort Gui-Sheng Zhang
title A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
title_short A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
title_full A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
title_fullStr A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
title_full_unstemmed A Study of Innovative Structural Design for Solar Water Heater Combining with Thermoelectric Generators
title_sort study of innovative structural design for solar water heater combining with thermoelectric generators
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/48770219470302057535
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