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A general heat transfer correlation for non-boiling gas-liquid flow with different flow patterns in horizontal pipes

机译:水平管中不同沸腾状态下非沸腾气液流动的一般传热关系

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A general heat transfer correlation for non-boiling gas-liquid flow with different flow patterns in horizontal pipes is proposed. In order to overcome the effect of flow pattern on heat transfer, a flow pattern factor (effective wetted-perimeter) is developed and introduced into our proposed correlation. To verify the correlation, local heat transfer coefficients and flow parameters were measured for air-water flow in a pipe in the horizontal position with different flow patterns. The test section was a 27.9 mm ID stainless steel pipe with a length to diameter ratio of 100. A total of 114 data points were taken by carefully coordinating the liquid and gas superficial Reynolds number combinations. The heat transfer data were measured under a uniform wall heat flux boundary condition ranging from about 3000 W/m(2) to 10,600 W/m(2). The superficial Reynolds numbers ranged from about 820 to 26,000 for water and from about 560 to 48,000 for air. These experimental data including different flow patterns were successfully correlated by the proposed general two-phase heat transfer correlation with an overall mean deviation of 5.5%, a standard deviation of 11.7%, and a deviation range of -18.3% to 37.0%. Ninety three percent (93%) of the data were predicted within +/- 20% deviation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:提出了横管内不同沸腾状态下非沸腾气液两相流的一般传热关系。为了克服流型对传热的影响,开发了流型因子(有效润湿周长)并将其引入我们提出的相关性中。为了验证相关性,在水平位置以不同的流型测量了管道中空气-水流的局部传热系数和流参数。测试部分是27.9毫米内径的不锈钢管,长径比为100。通过仔细协调液体和气体的表面雷诺数组合,获得了114个数据点。在均匀的壁热通量边界条件下(从大约3000 W / m(2)到10,600 W / m(2))测量传热数据。表面雷诺数对于水为约820至26,000,对于空气为约560至48,000。这些包含不同流型的实验数据已通过建议的一般两相传热相关性成功关联,总平均偏差为5.5%,标准偏差为11.7%,偏差范围为-18.3%至37.0%。预测百分之九十三(93%)的数据在+/- 20%的偏差内。 (c)2006 Elsevier Ltd.保留所有权利。

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