The dynamic simulation of organic rankine cycle power system for R245fa

碩士 === 國立交通大學 === 機械工程系所 === 105 === The purpose of this study is to simulate the system performance of ORC (organic Rankine cycle) system subject to changes of externally environmental conditions. The external environmental conditions includes changes of inlet temperature of heat and cold source, m...

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Main Authors: Lin,You-Ying, 林佑穎
Other Authors: Wang,Chi-Chuan
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/k97596
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spelling ndltd-TW-105NCTU54890192019-05-15T23:09:04Z http://ndltd.ncl.edu.tw/handle/k97596 The dynamic simulation of organic rankine cycle power system for R245fa R245fa於有機朗肯循環發電系統之動態模擬分析 Lin,You-Ying 林佑穎 碩士 國立交通大學 機械工程系所 105 The purpose of this study is to simulate the system performance of ORC (organic Rankine cycle) system subject to changes of externally environmental conditions. The external environmental conditions includes changes of inlet temperature of heat and cold source, mass flow rate of heat and cold source, pump rotation speed. The major differences between the present study and others are that no extra constraints such as given high pressure or low pressure are imposed initially. Typical simulations from the literatures normally fix high pressure and low pressure of system or superheated temperature of refrigerant. Instead, the only constraint in this study is the amount of inventory of working fluids. With this help of the present ORC program, the associated temperature and pressure in the system will be obtained. The result shows that reducing inlet temperature of cold source, increasing the mass flow rate of cold source or increasing the tube length of evaporator and condenser at the situation of fixed pump rotation speed are proper way will improve the system performance. In addition, when the rotation speed of pump raises, the power of expander and thermal efficiency of system is also higher than the original design. Wang,Chi-Chuan 王啟川 2016 學位論文 ; thesis 63 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立交通大學 === 機械工程系所 === 105 === The purpose of this study is to simulate the system performance of ORC (organic Rankine cycle) system subject to changes of externally environmental conditions. The external environmental conditions includes changes of inlet temperature of heat and cold source, mass flow rate of heat and cold source, pump rotation speed. The major differences between the present study and others are that no extra constraints such as given high pressure or low pressure are imposed initially. Typical simulations from the literatures normally fix high pressure and low pressure of system or superheated temperature of refrigerant. Instead, the only constraint in this study is the amount of inventory of working fluids. With this help of the present ORC program, the associated temperature and pressure in the system will be obtained. The result shows that reducing inlet temperature of cold source, increasing the mass flow rate of cold source or increasing the tube length of evaporator and condenser at the situation of fixed pump rotation speed are proper way will improve the system performance. In addition, when the rotation speed of pump raises, the power of expander and thermal efficiency of system is also higher than the original design.
author2 Wang,Chi-Chuan
author_facet Wang,Chi-Chuan
Lin,You-Ying
林佑穎
author Lin,You-Ying
林佑穎
spellingShingle Lin,You-Ying
林佑穎
The dynamic simulation of organic rankine cycle power system for R245fa
author_sort Lin,You-Ying
title The dynamic simulation of organic rankine cycle power system for R245fa
title_short The dynamic simulation of organic rankine cycle power system for R245fa
title_full The dynamic simulation of organic rankine cycle power system for R245fa
title_fullStr The dynamic simulation of organic rankine cycle power system for R245fa
title_full_unstemmed The dynamic simulation of organic rankine cycle power system for R245fa
title_sort dynamic simulation of organic rankine cycle power system for r245fa
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/k97596
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