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Experimental Study on Performance of Supercritical CO_2 Heat Exchanger with Four Different Inner Tubes

Experimental Study on Performance of Supercritical CO_2 Heat Exchanger with Four Different Inner Tubes
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摘要 The experiment was conducted to investigate the heat transfer performance of supercritical CO_2 in a casing heat exchanger by comparing their heat transfer,entropy production unit number,non-dimensional entropy production rate and field synergy factor.The results show that both heat transfer and entropy production unit number in four tubes decrease with water temperature increasing.Heat transfer and entropy production unit number in multiple tubes( i. e.,triple straight tube and double helix tube) is higher than their single counterparts; the non-dimensional entropy production rate increases with water temperature. Non-dimensional entropy production rate of triple straight tube and double helix tube is far below the single tube. Field synergy factor of double helix tube is much higher than that of the triple straight tube under the same condition. Further experiment was carried out in double helix tube,under various CO_2 pressure and inlet water temperature,the results are analyzed and reported in this paper. The experiment was conducted to investigate the heat transfer performance of supercritical CO_2 in a casing heat exchanger by comparing their heat transfer,entropy production unit number,non-dimensional entropy production rate and field synergy factor.The results show that both heat transfer and entropy production unit number in four tubes decrease with water temperature increasing.Heat transfer and entropy production unit number in multiple tubes( i. e.,triple straight tube and double helix tube) is higher than their single counterparts; the non-dimensional entropy production rate increases with water temperature. Non-dimensional entropy production rate of triple straight tube and double helix tube is far below the single tube. Field synergy factor of double helix tube is much higher than that of the triple straight tube under the same condition. Further experiment was carried out in double helix tube,under various CO_2 pressure and inlet water temperature,the results are analyzed and reported in this paper.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2016年第1期138-143,共6页 东华大学学报(英文版)
基金 Hujiang Foundation of China(No.D14003) Yangtze River Delta Technology Joint Research,China(No.10195811000)
关键词 supercritical CO2 casing tube heat exchanger entropy production unit number non-dimensional entropy production rate field synergy factor supercritical CO2 casing tube heat exchanger entropy production unit number non-dimensional entropy production rate field synergy factor
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