The character study of applied an improvement on Thermal Battery to package air-conditioning

碩士 === 南開科技大學 === 電機與資訊工程研究所 === 98 === The thesis focuses on sub-cooling character increased by new generation Thermal Battery applied to energy storage air conditioning system. In terms of researches showed that can increased Refrigerating Capacity and Coefficient of performance (COP), which can a...

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Main Authors: Chung-Shin Tzeng, 曾崇勳
Other Authors: Ming-Jer Hsiao
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/26468193132490817302
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spelling ndltd-TW-098NKUT74460062015-11-09T04:09:58Z http://ndltd.ncl.edu.tw/handle/26468193132490817302 The character study of applied an improvement on Thermal Battery to package air-conditioning 改良式蓄熱能電池應用於箱型空調機之儲釋能特性研究 Chung-Shin Tzeng 曾崇勳 碩士 南開科技大學 電機與資訊工程研究所 98 The thesis focuses on sub-cooling character increased by new generation Thermal Battery applied to energy storage air conditioning system. In terms of researches showed that can increased Refrigerating Capacity and Coefficient of performance (COP), which can also reduce capacity of the main engine by 30 to 40%, and extra provides cooling capacity by 100 to 130% with system at the same time. The experiment embarks new generation Thermal Battery as Air-Cooled Package Air Conditioner. In the performance test, the evaporator absorption equally heat maximum difference in temperature may reach to 13℃ from the exterior. The ice water can maintains on lower temperature, because of the charge side heat-exchanger has larger cold storage rate. So, which can makes outlet refrigerant become lower temperature sub-cooled liquid of the condenser. Which maximum sub-cooled temperature capacity may reach to 6℃. However, increasing the sub-cooling temperature is the equal of increasing COP. While new generation Thermal Battery is proceeding sub-cooling, the COP raised 7% at the same conditions. Ming-Jer Hsiao 蕭明哲 2010 學位論文 ; thesis 60 zh-TW
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language zh-TW
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description 碩士 === 南開科技大學 === 電機與資訊工程研究所 === 98 === The thesis focuses on sub-cooling character increased by new generation Thermal Battery applied to energy storage air conditioning system. In terms of researches showed that can increased Refrigerating Capacity and Coefficient of performance (COP), which can also reduce capacity of the main engine by 30 to 40%, and extra provides cooling capacity by 100 to 130% with system at the same time. The experiment embarks new generation Thermal Battery as Air-Cooled Package Air Conditioner. In the performance test, the evaporator absorption equally heat maximum difference in temperature may reach to 13℃ from the exterior. The ice water can maintains on lower temperature, because of the charge side heat-exchanger has larger cold storage rate. So, which can makes outlet refrigerant become lower temperature sub-cooled liquid of the condenser. Which maximum sub-cooled temperature capacity may reach to 6℃. However, increasing the sub-cooling temperature is the equal of increasing COP. While new generation Thermal Battery is proceeding sub-cooling, the COP raised 7% at the same conditions.
author2 Ming-Jer Hsiao
author_facet Ming-Jer Hsiao
Chung-Shin Tzeng
曾崇勳
author Chung-Shin Tzeng
曾崇勳
spellingShingle Chung-Shin Tzeng
曾崇勳
The character study of applied an improvement on Thermal Battery to package air-conditioning
author_sort Chung-Shin Tzeng
title The character study of applied an improvement on Thermal Battery to package air-conditioning
title_short The character study of applied an improvement on Thermal Battery to package air-conditioning
title_full The character study of applied an improvement on Thermal Battery to package air-conditioning
title_fullStr The character study of applied an improvement on Thermal Battery to package air-conditioning
title_full_unstemmed The character study of applied an improvement on Thermal Battery to package air-conditioning
title_sort character study of applied an improvement on thermal battery to package air-conditioning
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/26468193132490817302
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