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Effects of surface roughness and tube materials on the filmwise condensation heat transfer coefficient at low heat transfer rates

机译:低传热速率下表面粗糙度和管材对膜状冷凝传热系数的影响

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The laminar filmwise condensation heat transfer coefficient on the horizontal tubes of copper and stainless steel was investigated. The outside diameter of the tubes was 15.88 mm, and the tube thickness ranged from 1.07 to 1.6 mm. The polished stainless steel tube had an RMS surface roughness of 0.37 mu m, and commercial stainless steel tubes had maximum surface roughness of 15 mu m. The tests were conducted at saturation temperatures of 20 and 30 degrees C, and liquid wall subcoolings from 0.4 to 2.1 degrees C. The measured condensation heat transfer coefficients were significantly lower than the predicted data by the Nusselt analysis when the ratio of the condensate liquid film thickness to the surface roughness, delta/Rp-v, was relatively low. When the condensate liquid film was very thin, tube material affected the condensation heat transfer coefficient in the filmwise condensation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:研究了铜和不锈钢水平管上的层状膜状冷凝传热系数。管的外径为15.88mm,管的厚度为1.07至1.6mm。抛光的不锈钢管的RMS表面粗糙度为0.37μm,而商用不锈钢管的最大表面粗糙度为15μm。该测试是在20和30摄氏度的饱和温度以及0.4到2.1摄氏度的液壁过冷条件下进行的。当冷凝液膜的比率为Nusselt分析时,测得的冷凝传热系数明显低于Nusselt分析的预测数据。表面粗糙度的厚度Δ/ Rp-v相对较低。当冷凝液薄膜非常薄时,管材料会影响薄膜冷凝中的冷凝传热系数。 (c)2006 Elsevier Ltd.保留所有权利。

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