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首页> 外文期刊>Journal of Heat Transfer >Pressure Drop During Two-phase Flow Of R134a And R32 In A Single Minichannel
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Pressure Drop During Two-phase Flow Of R134a And R32 In A Single Minichannel

机译:单个小通道中R134a和R32两相流动期间的压降

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Condensation in minichannels is widely used in air-cooled condensers for the automotive and air-conditioning industry, heat pipes, and compact heat exchangers. The knowledge of pressure drops in such small channels is important in order to optimize heat transfer surfaces. Most of the available experimental work refers to measurements obtained within multipart smooth extruded tubes and deal with the average values over the number of parallel channels. In this context, the present authors have set up a new test apparatus for heat transfer and fluid flow studies in single minichannels. This paper presents new experimental frictional pressure gradient data, relative to single-phase flow and adia-batic two-phase flow of R134a and R32 inside a single horizontal minitube, with a 0.96 mm inner diameter and with not-negligible surface roughness. The new all-liquid and all-vapor data are successfully compared against predictions of single-phase flow models. Also the two-phase flow data are compared against a model previously developed by the present authors for adiabatic flow or flow during condensation of halogenated refrigerants inside smooth minichannels. Surface roughness effects on the liquid-vapor flow are discussed. In this respect, the friction factor in the proposed model is modified, in order to take into consideration also effects due to wall roughness.
机译:微型通道的冷凝器广泛用于汽车和空调行业的风冷冷凝器,热管和紧凑型热交换器。为了优化传热表面,了解这种小通道中的压降非常重要。大多数可用的实验工作是指在多部分光滑挤压管中获得的测量值,并处理平行通道数量上的平均值。在这种情况下,本作者建立了一种新的测试装置,用于在单个小通道中进行传热和流体流动研究。本文介绍了新的实验摩擦压力梯度数据,相对于单个水平微型管内R134a和R32的单相流和绝热两相流,内径为0.96 mm,表面粗糙度不可忽略。将新的全液体和全蒸汽数据与单相流模型的预测成功进行了比较。还将两相流数据与本作者先前开发的绝热流或光滑微型通道内卤化制冷剂冷凝期间的流模型进行了比较。讨论了表面粗糙度对液体蒸气流的影响。在这方面,修改了所提出模型中的摩擦系数,以便也考虑由于壁粗糙度引起的影响。

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