Chinese Journal of Ship Research

Investigat­ion into abnormal heat transfer mechanism of supercriti­cal carbon dioxide in vertically upward Tube

- HU Juanjuan*, LI Zengguang, GAO Yimin, YANG Jian, LIU Lang

Shanghai Division, China Ship Developmen­t and Design Center, Shanghai 201108, China

Abstract: [Objectives ] The heat transfer techniques of supercriti­cal CO2 (S-CO2 ) in small channels have been extensivel­y used in nuclear reactor cooling, aerospace engine cooling and so on. To ensure the safety and high operation efficiency of the thermodyna­mic devices involved in the S-CO2 Brayton cycle system, it is necessary to systematic­ally study the flow and heat transfer characteri­stics of S-CO2, and thoroughly analyze the abnormal heat transfer mechanism.[Methods]Through CFD numerical simulation, the heat transfer characteri­stics of S-CO2 in a vertically upward tube with an internal diameter of 2 mm at different mass flow rates are studied. At the same time, under conditions of heat transfer enhancemen­t and deteriorat­ion, the change of radial physical properties at different sections is studied, and the mechanism of abnormal heat transfer is analyzed in depth.[Results ] It is found that under conditions with mass flow rates of 500–1 000 kg/(m2·s), the heat transfer of S-CO2 moves from heat transfer enhancemen­t to heat transfer deteriorat­ion. In the heat transfer deteriorat­ion cases, the peak value of the heat transfer coefficien­t in the recovery region gradually decreases with the increase in heat flux, then finally disappears. As the operating pressure is far from the critical pressure, heat transfer enhancemen­t and deteriorat­ion are both weakened. As shown by mechanism investigat­ion, in heat transfer enhancemen­t cases, the heat transfer of the fluid is stronger near the pseudo-critical region than in other regions, and the increased heat transfer coefficien­t comes from the increased portion of the cross-section area occupied by the fluid with large specific heat. In heat transfer deteriorat­ion cases, the velocity profile of the fluid at the cross-section where the wall temperatur­e has its peak value presents an M-shaped curve, the velocity gradient at the inflection point of the velocity profile decreases to 0, the turbulent kinetic energy reaches its lowest level and heat transfer deteriorat­ion occurs. [Conclusion­s]The results of this study are significan­t for improving the heat transfer characteri­stics of S-CO2 in small channels. Key words: supercriti­cal CO2;vertically upward tube;abnormal heat transfer;mechanism收­稿日期: 2020–04–07修回日期: 2020–06–27 网络首发时间: 2021–04–28 14:48作者简介:胡娟娟,女,1996年生,硕士,助理工程师*通信作者:胡娟娟

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