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Effect of Vapor Velocity on Condensation of Low-Pressure Steam on Integral-Fin Tubes

机译:蒸气速度对整体翅片管上低压蒸汽冷凝的影响

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摘要

Experimental data are presented for forced-convection condensation of low-pressure steam on a set of single, integral-fin tubes. The five tubes had fin-root diameter of 12.7 mm and identical fin geometry except for fin spacing, which was varied from 0.25 mm to 2 mm. The range of vapor velocity was 14.7-62.3 m/s at an absolute pressure of 14 kPa. Heat-transfer enhancement was a strong function of both vapor velocity and fin spacing, and the interrelationship of the two parameters led to complex trends in the data. Observations of the extent of condensate flooding (i.e., condensate trapped between the fins at the bottom of the tube) indicated that the effect of vapor shear on flooding was a significant controlling factor in the heat-transfer process, and this factor explained, at least quantitatively, the trends observed.
机译:给出了在一组单片整体翅片管上进行低压蒸汽强制对流冷凝的实验数据。五个管的鳍根直径为12.7 mm,除了鳍间距在0.25 mm至2 mm之间变化以外,鳍的几何形状相同。在绝对压力为14 kPa时,蒸气速度的范围为14.7-62.3 m / s。传热的增强是蒸汽速度和翅片间距的重要函数,并且两个参数的相互关系导致数据的复杂趋势。观察冷凝水的泛滥程度(即,冷凝水截留在管子底部的散热片之间)表明,蒸汽剪切对洪水的影响是传热过程中的重要控制因素,至少可以解释这个因素。在数量上,观察到的趋势。

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