首页> 外文会议>International Conference on Microchannels and Minichannels(ICMM2004); 20040617-20040619; Rochester,NY; US >AN EXPERIMENTAL STUDY OF FLOW CONDENSATION HEAT TRANSFER INSIDE CIRCULAR AND RECTANGULAR MINI-CHANNELS
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AN EXPERIMENTAL STUDY OF FLOW CONDENSATION HEAT TRANSFER INSIDE CIRCULAR AND RECTANGULAR MINI-CHANNELS

机译:圆形和矩形微型通道内流动凝结换热的实验研究

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摘要

By using unique experimental techniques and careful construction of the experimental apparatus, the characteristics of the local heat transfer were investigated using the condensing R134a two-phase flow, in horizontal single mini-channels. The circular channels (D_h = 0.493, 0.691. and 1.067 mm) and rectangular channels (D_h=0.494, 0.658, and 0.972 mm) were tested and compared. Tests were performed for a mass flux of 100, 200, 400, and 600 kg/m~2 s, a heat flux of 5 to 20 kW/m~2, and a saturation temperature of 40℃. In this study, effect of heat flux, mass flux, vapor qualities, hydraulic diameter, and channel geometry on flow condensation were investigated and the experimental local condensation heat transfer coefficients are shown. The experimental data of condensation Nusselt number are compared with existing correlations.
机译:通过使用独特的实验技术和精心设计的实验装置,利用冷凝的R134a两相流在水平单通道中研究了局部传热的特性。测试并比较了圆形通道(D_h = 0.493、0.691和1.067 mm)和矩形通道(D_h = 0.494、0.658和0.972 mm)。测试的质量通量为100、200、400和600 kg / m〜2 s,热通量为5至20 kW / m〜2,饱和温度为40℃。在这项研究中,研究了热通量,质量通量,蒸汽质量,水力直径和通道几何形状对流动冷凝的影响,并显示了实验的局部冷凝传热系数。将凝结努塞尔数的实验数据与现有的相关性进行比较。

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