Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System

碩士 === 國立勤益科技大學 === 企業管理系 === 99 === Global warming is a growing problem that international organizations even call for meetings to set the carbon reduction plan. Therefore, the energy-efficient projects are fast developing. Heat pump system is a kind of high-efficiency technology product that a...

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Main Authors: Li Cheng-Huang, 李政鍠
Other Authors: Dr. Shui-Shun Lin
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/61583686120311205485
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spelling ndltd-TW-099NCIT51210152015-10-14T04:07:12Z http://ndltd.ncl.edu.tw/handle/61583686120311205485 Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System TRIZ與NSDB方法之實務應用-複合式熱泵空調系統之設計 Li Cheng-Huang 李政鍠 碩士 國立勤益科技大學 企業管理系 99 Global warming is a growing problem that international organizations even call for meetings to set the carbon reduction plan. Therefore, the energy-efficient projects are fast developing. Heat pump system is a kind of high-efficiency technology product that absorbs the heat in the air to produce hot water. The waste cold from heat pumps and the waste heat from air conditioners are both resources that can be used.   The research adopts NSDB method, following the steps- needs, solution, differentiation, and benefits to analyze the problem and then utilizes TRIZ method, including 39 parameters and 40 inventive principles, contradiction matrix, resources, ideal final result , Su-Field Analysis, etc. Following the aforementioned methods, we can get the new system by improving heat pumps, hot water and air conditioners and design the compound heat pump for air conditioning system so to further enhance the overall energy efficiency. We also file the patent application which can bring massive business opportunities and economic benefits for countries located on Tropic of Cancer and Tropic of Capricorn. Dr. Shui-Shun Lin 林水順 2011 學位論文 ; thesis 93 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立勤益科技大學 === 企業管理系 === 99 === Global warming is a growing problem that international organizations even call for meetings to set the carbon reduction plan. Therefore, the energy-efficient projects are fast developing. Heat pump system is a kind of high-efficiency technology product that absorbs the heat in the air to produce hot water. The waste cold from heat pumps and the waste heat from air conditioners are both resources that can be used.   The research adopts NSDB method, following the steps- needs, solution, differentiation, and benefits to analyze the problem and then utilizes TRIZ method, including 39 parameters and 40 inventive principles, contradiction matrix, resources, ideal final result , Su-Field Analysis, etc. Following the aforementioned methods, we can get the new system by improving heat pumps, hot water and air conditioners and design the compound heat pump for air conditioning system so to further enhance the overall energy efficiency. We also file the patent application which can bring massive business opportunities and economic benefits for countries located on Tropic of Cancer and Tropic of Capricorn.
author2 Dr. Shui-Shun Lin
author_facet Dr. Shui-Shun Lin
Li Cheng-Huang
李政鍠
author Li Cheng-Huang
李政鍠
spellingShingle Li Cheng-Huang
李政鍠
Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
author_sort Li Cheng-Huang
title Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
title_short Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
title_full Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
title_fullStr Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
title_full_unstemmed Application of TRIZ and NSDB methods-Design of Compound Heat Pump for Air Conditioning System
title_sort application of triz and nsdb methods-design of compound heat pump for air conditioning system
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/61583686120311205485
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