Analysis of heat insulation solar glass of fuel-efficiency benefit

碩士 === 國立臺灣科技大學 === 營建工程系 === 97 === Due to the increasing problem of global warming, other problems may occur such as rise in sea level and energy depletion. Therefore, energy conservation is very important. Buildings can protect us from heat, but they are still susceptible to radiant heat. Radi...

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Main Authors: Yuun-Yu Chen, 陳俊宇
Other Authors: Chin-Huai Young
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/96212479381912526328
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spelling ndltd-TW-097NTUS55120792016-05-02T04:11:47Z http://ndltd.ncl.edu.tw/handle/96212479381912526328 Analysis of heat insulation solar glass of fuel-efficiency benefit 隔熱光電玻璃之節能效益分析 Yuun-Yu Chen 陳俊宇 碩士 國立臺灣科技大學 營建工程系 97 Due to the increasing problem of global warming, other problems may occur such as rise in sea level and energy depletion. Therefore, energy conservation is very important. Buildings can protect us from heat, but they are still susceptible to radiant heat. Radiant heat usually enters buildings through glass windows. Therefore, this study is aimed at probing into how can be isolated from sources of heat and find ways of reducing radiant heat penetration. The focus on this study was to test the fundamental nature of all kinds of glass, such as the penetration of ultraviolet, infrared transmittance, visible light transmittance and thermal transmittance, etc. It also compared a variety of glasses for their differences in energy-saving insulation, simulate a variety of buildings, such as confined space, natural ventilation, forced ventilation and the use of well-being of situation production of large-scale test house. The results showed that the heat injection solar glass is superior to all kinds of glass from the variety and nature of the basic data and the results of large-scale test houses. Using effective insulation materials in isolating the building interiors from radiant heat, it not only would use of resources effectively but also would on air-conditioning system costs. Chin-Huai Young 楊錦懷 2009 學位論文 ; thesis 104 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣科技大學 === 營建工程系 === 97 === Due to the increasing problem of global warming, other problems may occur such as rise in sea level and energy depletion. Therefore, energy conservation is very important. Buildings can protect us from heat, but they are still susceptible to radiant heat. Radiant heat usually enters buildings through glass windows. Therefore, this study is aimed at probing into how can be isolated from sources of heat and find ways of reducing radiant heat penetration. The focus on this study was to test the fundamental nature of all kinds of glass, such as the penetration of ultraviolet, infrared transmittance, visible light transmittance and thermal transmittance, etc. It also compared a variety of glasses for their differences in energy-saving insulation, simulate a variety of buildings, such as confined space, natural ventilation, forced ventilation and the use of well-being of situation production of large-scale test house. The results showed that the heat injection solar glass is superior to all kinds of glass from the variety and nature of the basic data and the results of large-scale test houses. Using effective insulation materials in isolating the building interiors from radiant heat, it not only would use of resources effectively but also would on air-conditioning system costs.
author2 Chin-Huai Young
author_facet Chin-Huai Young
Yuun-Yu Chen
陳俊宇
author Yuun-Yu Chen
陳俊宇
spellingShingle Yuun-Yu Chen
陳俊宇
Analysis of heat insulation solar glass of fuel-efficiency benefit
author_sort Yuun-Yu Chen
title Analysis of heat insulation solar glass of fuel-efficiency benefit
title_short Analysis of heat insulation solar glass of fuel-efficiency benefit
title_full Analysis of heat insulation solar glass of fuel-efficiency benefit
title_fullStr Analysis of heat insulation solar glass of fuel-efficiency benefit
title_full_unstemmed Analysis of heat insulation solar glass of fuel-efficiency benefit
title_sort analysis of heat insulation solar glass of fuel-efficiency benefit
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/96212479381912526328
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