Measurement of Liquid Film Thickness for Annular Two-Phase HFC134a Gas-Liquid Ethanol Flow in the Vertical Tube

Huacheng Zhang, Tutomo Hisano, S. Mori, H. Yoshida
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引用次数: 1

Abstract

Annular gas-liquid two-phase flows, such as the flows attached to the fuel rods of boiling water reactors (BWR), are a prevalent occurrence in industrial processes. At the gas-liquid interface of such flows, disturbance waves with diverse velocity and amplitude commonly arise. Since the thin liquid film between two successive disturbance waves leads to the dryout on the heating surface and limits the performance of the BWRs, complete knowledge of the disturbance waves is of great importance for the characterized properties of disturbance waves. The properties of disturbance waves have been studied by numerous researchers through extensive experimental and analytical approaches. However, most of the experimental data and analyses available in the literature are limited to the near atmospheric condition. In consideration of the properties of liquids and gases under atmospheric pressure which are distinct from those under BWR operating conditions (7 MPa, 285 °C), we employed the HFC134a gas and liquid ethanol whose properties at relatively low pressure and temperature (0.7 MPa, 40 °C) are similar to those of steam and water under BWR operating conditions as working fluids in a tubular test section having an inside diameter 5.0mm. Meanwhile, the liquid film thickness is measured by conductance probes. In this study, we report the liquid film thickness characteristics in a two-phase HFC134a gas-liquid ethanol flow. A simple model of the height of a disturbance wave was also proposed.
垂直管内环空两相HFC134a气液乙醇流液膜厚度的测量
气液两相环空流动,如沸水反应堆(BWR)燃料棒上的流动,在工业过程中普遍存在。在这种流动的气液界面处,通常会出现不同速度和振幅的扰动波。由于两个连续扰动波之间的薄液膜导致受热面干燥,限制了沸水堆的性能,因此完全了解扰动波对于表征扰动波的特性至关重要。许多研究者通过大量的实验和分析方法对扰动波的性质进行了研究。然而,文献中可获得的大多数实验数据和分析仅限于近大气条件。考虑到常压下液体和气体的性质不同于沸水堆工况下(7 MPa, 285℃)的性质,在相对较低的压力和温度下(0.7 MPa, 40℃),与沸水堆工况下的蒸汽和水的性质相似的HFC134a气体和液体乙醇作为工质,在内径5.0mm的管式试验段进行试验。同时,用电导探头测量液膜厚度。在本研究中,我们报道了HFC134a气液乙醇两相流动中的液膜厚度特性。本文还提出了扰动波高度的一个简单模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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