Research for Large Power Generate by Photovolataic Structure

碩士 === 逢甲大學 === 資訊電機工程碩士在職專班 === 98 === The exploitation and consumption of energy on the earth increase every day and some of them can not be retrieved. The fossil energy including oil, coal, and gas will be depleted gradually in the future. So the development of various renewable energies is an im...

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Main Authors: Chien-hsiang Lai, 賴建享
Other Authors: Der-chin Chen
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/48367159079527875080
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spelling ndltd-TW-098FCU053920782016-04-20T04:18:20Z http://ndltd.ncl.edu.tw/handle/48367159079527875080 Research for Large Power Generate by Photovolataic Structure 大型太陽能發電系統建構之探討 Chien-hsiang Lai 賴建享 碩士 逢甲大學 資訊電機工程碩士在職專班 98 The exploitation and consumption of energy on the earth increase every day and some of them can not be retrieved. The fossil energy including oil, coal, and gas will be depleted gradually in the future. So the development of various renewable energies is an important topic and current trend. Solar energy plays an important role in the substitute renewable energy. It has many advantages such as it is useless energy source, power generation equipments are easy to repair, it has no noise and reduction of environment pollution. The solar energy system discussed in this paper is installed at top of raw water troughs D and E. The size of this system is 26,900 m2. Under standard testing conditions of solar energy module, the solar energy batteries power generation installed capacity is 1,508kWp, power generation performance ratio is larger than 85 %, and battery modules transfer efficiency is 14.14%. It is satisfied the design requirements. Base on the calculation data from the coal thermal power plant, it needs coal 0.551 kg to make 1 kWH energy and will exhaust carbon dioxide 0.885 kg. To compare the data with the solar energy power system in this paper that system efficiency is 85 % power supply eight hours a day to make the same electrical energy, it can reduce coal consumption about 2,100 ton and carbon dioxide emissions about 3,300 ton. Using solar energy system can achieve Energy Saving and Carbon Reduction. Der-chin Chen 陳德請 2010 學位論文 ; thesis 137 zh-TW
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description 碩士 === 逢甲大學 === 資訊電機工程碩士在職專班 === 98 === The exploitation and consumption of energy on the earth increase every day and some of them can not be retrieved. The fossil energy including oil, coal, and gas will be depleted gradually in the future. So the development of various renewable energies is an important topic and current trend. Solar energy plays an important role in the substitute renewable energy. It has many advantages such as it is useless energy source, power generation equipments are easy to repair, it has no noise and reduction of environment pollution. The solar energy system discussed in this paper is installed at top of raw water troughs D and E. The size of this system is 26,900 m2. Under standard testing conditions of solar energy module, the solar energy batteries power generation installed capacity is 1,508kWp, power generation performance ratio is larger than 85 %, and battery modules transfer efficiency is 14.14%. It is satisfied the design requirements. Base on the calculation data from the coal thermal power plant, it needs coal 0.551 kg to make 1 kWH energy and will exhaust carbon dioxide 0.885 kg. To compare the data with the solar energy power system in this paper that system efficiency is 85 % power supply eight hours a day to make the same electrical energy, it can reduce coal consumption about 2,100 ton and carbon dioxide emissions about 3,300 ton. Using solar energy system can achieve Energy Saving and Carbon Reduction.
author2 Der-chin Chen
author_facet Der-chin Chen
Chien-hsiang Lai
賴建享
author Chien-hsiang Lai
賴建享
spellingShingle Chien-hsiang Lai
賴建享
Research for Large Power Generate by Photovolataic Structure
author_sort Chien-hsiang Lai
title Research for Large Power Generate by Photovolataic Structure
title_short Research for Large Power Generate by Photovolataic Structure
title_full Research for Large Power Generate by Photovolataic Structure
title_fullStr Research for Large Power Generate by Photovolataic Structure
title_full_unstemmed Research for Large Power Generate by Photovolataic Structure
title_sort research for large power generate by photovolataic structure
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/48367159079527875080
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