本文对竖直圆管中超临界压力二氧化碳在低雷诺数条件下的对流换热进行了实验研究和数值模拟.实验中分析了不同入口温度、热流密度以及流动方向等对超临界CO2流动和换热的影响.实验结果与计算结果的比较表明:在热流密度较小的情况下实验结果与数值计算结果基本吻合;而在热流密度较大的情况下,由于浮升力的影响,流动可能提前从层流转变为湍流,使换热强化.
参考文献
[1] | Petukhov B S.Heat Transfer and Friction in Turbulent Pipe Flow with Variable Physical Properties. Advances in Heat Transfer[M].New York:Academic Press,1970 |
[2] | Lorentzen G;Pettersen J .A New, Efficient and Environmentally Benign System for Car Air-Conditioning[J].International Journal of Refrigeration-Revue Internationale du Froid,1993,16(01):4-12. |
[3] | 刘国球.液体火箭发动机原理[M].北京:宇航出版社,1993 |
[4] | Wachi Y.;Ono M.;Hamajima T. .Heat transfer characteristics of the supercritical helium in a cable-in-conduit conductor[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,1995(2):568-571. |
[5] | 徐轶君;姜培学;李勐;任泽霈 .竖直圆管中超临界CO2对流换热数值模拟[J].上海理工大学学报,2003,25:147-150. |
[6] | J D Jackson;W B Hall.Influences of Buoyancy on Heat Transfer to Fluids Flowing in Vertical Tubes Under Turbulent Conditions[A].,1979:613-640. |
[7] | J P Holman.Heat Transfer[M].McGraw-Hill,1997:372-377. |
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