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首页> 外文期刊>International Journal of Thermal Sciences >Heat transfer characteristics of hydrocarbon mixtures refrigerant during condensation in a helical tube
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Heat transfer characteristics of hydrocarbon mixtures refrigerant during condensation in a helical tube

机译:螺旋管冷凝后烃混合物制冷剂的传热特性

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In this paper, the condensation heat transfer of hydrocarbon mixtures refrigerant (methane/propane) flowing in a helical tube with 10 mm hydraulic diameter was investigated by experiments and numerical simulations. The experiments were conducted at mass flux of 200-400 kg/(m(2).s), saturation pressure of 0-4Mpa and heat flux of 4.8-5 kW/m(2). Also, the effects of mass flux, vapor quality, and saturation pressure on heat transfer coefficient were studied. It was observed that the heat transfer coefficients increased with the increase of mass flux and vapor quality, while the heat transfer coefficients generally decreased as the saturation pressure increased. Meanwhile, annular flow(half-annular flow, annular flow) and Non-annular flow patterns (slug flow, stratified flow, wavy flow, transition flow) were observed during the condensation of methane/propane mixtures refrigerant. And a new flow pattern transition line for hydrocarbon refrigerants condensation process was proposed. The condensation heat transfer coefficient data were compared with several existing correlations, and a modified heat transfer correlation for different flow patterns was proposed, which predicted the results well with a mean absolute error of 10.03%.
机译:本文通过实验和数值模拟研究了流动在螺旋管中流动的烃混合物制冷剂(甲烷/丙烷)的冷凝传热。实验是在200-400kg /(m(2))的质量通量的情况下进行的,饱和压力为0-4MPa和4.8-5 kW / m(2)的热通量。而且,研究了质量磁通,蒸气质量和饱和压力对传热系数的影响。观察到,随着质量磁通量和蒸汽质量的增加,传热系数增加,而随着饱和压力增加,传热系数通常会降低。同时,在甲烷/丙烷混合物制冷剂的缩合期间观察环形流动(半环形流动,环形流量)和非环形流动图案(凹槽流动,分层流动,波浪流,过渡流,过渡流程,转变流动。并提出了一种用于烃制冷剂冷凝工艺的新的流动模式过渡线。将冷凝传热系数数据与若干现有相关性进行比较,提出了用于不同流动模式的修改的传热相关性,这预测了良好的结果,其平均绝对误差为10.03%。

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