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Forced convective condensation flow and heat transfer characteristics of hydrocarbon mixtures refrigerant in helically coiled tubes

机译:螺旋盘管中碳氢化合物混合制冷剂的强迫对流冷凝流和传热特性

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摘要

Helical tube has been widely used in liquefied natural gas (LNG) liquefying applications. However, studies on the heat transfer performance of hydrocarbon mixture refrigerant in a helical tube have rarely been conducted. In this paper, condensation heat transfer characteristics of hydrocarbon mixture refrigerant in a helical tube were investigated numerically. The tests were conducted at saturation pressure of 24 MPa, mass flux of 100-400 kg/(m(2).s) and vapor quality 0-1. The numerical model was well verified by experimental data. And the effects of different structural parameters (tube diameter, helix angle and curvature diameter) and operating parameters (mass flux, heat flux and saturation pressure) on the heat transfer of hydrocarbons refrigeration were considered. The results showed that the tube diameter and mass flux had significant effect on condensation heat transfer coefficient. Meanwhile, stratified flow, half-annular flow and annular flow were observed during the condensation of methane/propane mixtures refrigerant by simulations, and a new flow pattern transition line for hydrocarbon refrigerants condensation process was proposed. Finally, the simulation results were compared with several well-known condensation heat transfer correlations. The research results will provide some constructive instructions for more effective design of LNG heat exchanger. (C) 2018 Published by Elsevier Ltd.
机译:螺旋管已广泛用于液化天然气(LNG)的液化应用中。但是,很少进行关于螺旋管中的烃类混合制冷剂的传热性能的研究。本文对螺旋管中碳氢化合物混合制冷剂的冷凝传热特性进行了数值研究。测试是在24 MPa的饱和压力,100-400 kg /(m(2).s)的质量通量和0-1的蒸气质量下进行的。数值模型得到了实验数据的很好验证。并考虑了不同的结构参数(管直径,螺旋角和曲率直径)和运行参数(质量通量,热通量和饱和压力)对烃类制冷剂传热的影响。结果表明,管径和通量对冷凝传热系数有显着影响。同时,通过模拟观察了甲烷/丙烷混合制冷剂冷凝过程中的分层流,半环流和环形流,提出了一种新的烃类制冷剂冷凝过程的流型转换线。最后,将模拟结果与几种众所周知的冷凝传热相关性进行了比较。研究结果将为更有效地设计LNG换热器提供一些建设性的指导。 (C)2018由Elsevier Ltd.发布

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