Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems

碩士 === 國立清華大學 === 動力機械工程學系 === 95 === Energy plays a vital role in national industrial development. Over 98 % demand of energy in Taiwan is imported. Besides, cost of energy rises rapidly since Kyoto Protocol was effective in February 2005. For reasons that make government actively promoting a polic...

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Main Authors: Min-Hsiu Chien, 簡敏修
Other Authors: Hsiao-Wei Chiang
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/01249177143534230797
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spelling ndltd-TW-095NTHU53111012015-10-13T16:51:16Z http://ndltd.ncl.edu.tw/handle/01249177143534230797 Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems 固態氧化物燃料電池結合微型氣渦輪機混成配置研究 Min-Hsiu Chien 簡敏修 碩士 國立清華大學 動力機械工程學系 95 Energy plays a vital role in national industrial development. Over 98 % demand of energy in Taiwan is imported. Besides, cost of energy rises rapidly since Kyoto Protocol was effective in February 2005. For reasons that make government actively promoting a policy of energy conservation, including reduction of carbon dioxide emission, new transformation technology research, etc. Solid oxide fuel cell/gas turbine hybrid system has been predicted with potential of reaching 70 % efficiency, is one of the best choices to be the candidate of next generation power resource. This thesis is focused on a hybrid fuel cell/gas turbine power system with pressurized and atmospheric solid oxide fuel cell (SOFC). The exhausted heat of fuel cell stack is capable to be used by a gas turbine. Such a hybrid system can raise heat utilization and reduce energy consumption. In this research, we developed a numerical Fortran model to proceed the hybrid power plant simulation and system parameter analysis. The final result shows with on additional balance of plant equipment required, high efficiency atmospheric hybrid system is possible achieved compared with a pressurized system. Hsiao-Wei Chiang 蔣小偉 2007 學位論文 ; thesis 77 zh-TW
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description 碩士 === 國立清華大學 === 動力機械工程學系 === 95 === Energy plays a vital role in national industrial development. Over 98 % demand of energy in Taiwan is imported. Besides, cost of energy rises rapidly since Kyoto Protocol was effective in February 2005. For reasons that make government actively promoting a policy of energy conservation, including reduction of carbon dioxide emission, new transformation technology research, etc. Solid oxide fuel cell/gas turbine hybrid system has been predicted with potential of reaching 70 % efficiency, is one of the best choices to be the candidate of next generation power resource. This thesis is focused on a hybrid fuel cell/gas turbine power system with pressurized and atmospheric solid oxide fuel cell (SOFC). The exhausted heat of fuel cell stack is capable to be used by a gas turbine. Such a hybrid system can raise heat utilization and reduce energy consumption. In this research, we developed a numerical Fortran model to proceed the hybrid power plant simulation and system parameter analysis. The final result shows with on additional balance of plant equipment required, high efficiency atmospheric hybrid system is possible achieved compared with a pressurized system.
author2 Hsiao-Wei Chiang
author_facet Hsiao-Wei Chiang
Min-Hsiu Chien
簡敏修
author Min-Hsiu Chien
簡敏修
spellingShingle Min-Hsiu Chien
簡敏修
Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
author_sort Min-Hsiu Chien
title Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
title_short Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
title_full Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
title_fullStr Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
title_full_unstemmed Configuration Analysis of Pressurized and Atmospheric SOFC/Micro Turbine Hybrid Systems
title_sort configuration analysis of pressurized and atmospheric sofc/micro turbine hybrid systems
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/01249177143534230797
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