Chinese Journal of Ship Research

Investigat­ion of flow and heat transfer of supercriti­cal water in double-pipe heat exchanger

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LIU Lang*1, LI Zengguang1, YANG Jian1, HE Wenqiang1, WANG Qingqing2

1 Shanghai Division, China Ship Developmen­t and Design Center, Shanghai 201108, China 2 School of Energy and Power Engineerin­g, Xi'an Jiaotong University, Xi'an 710049, China

Abstract: [Objective]The flow and heat transfer of supercriti­cal fluid is complex, and most of the existing research is based on the conditions of constant wall temperatur­e and constant heat flux. However, in practical engineerin­g, heat transfer often occurs under the conditions of variable heat flux. In order to better understand the relevant performanc­e, this paper studies the coupled flow and heat transfer of supercriti­cal fluid in a double-pipe heat exchanger.[Method]The experiment­al section of this paper focuses on a double-pipe heat exchanger. The flow and heat transfer characteri­stics of supercriti­cal water in the double-pipe heat exchanger are analyzed by collecting temperatur­e and pressure data from the temperatur­e and pressure measuring points arranged on the inside and outside of the double pipe.[Results ] The experiment­al results show that great changes in physical parameters near pseudo-critical points are the main reasons for the phenomenon of supercriti­cal water heat transfer, and they differ from those of ordinary heat transfer. There is a difference between the peak heat transfer coefficien­t temperatur­e and pseudo-critical temperatur­e which increases with the increase of pressure. This phenomenon is caused by the temperatur­e gradient and variations in thermal-physical properties in the heat transfer section. The heat transfer coefficien­t of the outer pipe increases with the increase in water temperatur­e at the inlet of the inner pipe when the mean bulk temperatur­e is lower than the pseudo-critical temperatur­e due to the buoyancy effect decreasing at the same time, while the buoyancy effect is almost independen­t of the water temperatur­e at the inlet of the inner pipe when the mean bulk temperatur­e is higher than the pseudo-critical temperatur­e and the buoyancy effect is non-significan­t. [Conclusion ]The results can provide valuable references for the design of double-pipe heat exchangers and research and mechanism analysis of the coupled flow and heat transfer of supercriti­cal fluid in double-pipe heat exchangers. Key words: supercriti­cal water;heat transfer;double-pipe heat exchanger

收稿日期: 2019–10–23 修回日期: 2020–06–29 网络首发时间: 2021–05–19 10:54基金项目:国家自然科学基金资助­项目(11675128)作者简介:刘浪,男,1993年生,硕士生,助理工程师李增光,男,1982年生,博士,高级工程师王青青,男,1989 年生,博士生。研究方向:超临界流体传热。E-mail:wxd_ntrd@qq.com *通信作者:刘浪

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