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Comprehensive experimental investigation of two-phase heat transfer and pressure drop with propane in a minichannel

机译:微型通道中丙烷两相传热与压降的综合实验研究

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摘要

The use of hydrocarbons as natural refrigerants inside small diameter channels allows charge minimization and therefore it may be an interesting option in the refrigerating and heat pump technology. The aim of the present experimental work is to fully characterize the thermal performance of propane (R290) in minichannels by measuring frictional pressure drop, condensation and flow boiling heat transfer coefficients inside a circular cross section horizontal minichannel with an internal diameter of 0.96 mm and a rough inner surface. Measurements of frictional pressure drop during adiabatic two-phase flow have been performed at mass velocity ranging between 200 and 800 kg m(-2) s(-1). Local heat transfer coefficients have been measured during condensation and during flow boiling in the mass velocity range from 100 to 1000 kg m(-2) s(-1). The present database, including frictional pressure gradient, condensation and vaporization heat transfer coefficients, is compared against predicting correlations available in the open literature. (C) 2014 Elsevier Ltd and IIR. All rights reserved.
机译:在小直径通道内使用碳氢化合物作为天然制冷剂可以使电荷最小化,因此在制冷和热泵技术中可能是一个有趣的选择。本实验工作的目的是通过测量内径为0.96 mm的圆形横截面水平微型通道内的摩擦压降,冷凝水和沸腾传热系数来全面表征微型通道中丙烷(R290)的热性能。粗糙的内表面。绝热两相流过程中的摩擦压降的测量已在200至800 kg m(-2)s(-1)的质量速度范围内进行。已经在冷凝过程中和沸腾过程中以100至1000 kg m(-2)s(-1)的质量速度测量了局部传热系数。将本数据库(包括摩擦压力梯度,冷凝和汽化传热系数)与公开文献中可用的预测相关性进行比较。 (C)2014 Elsevier Ltd和IIR。版权所有。

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