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マイクロフィン付き水平管内凝縮の修正理論モデル

机译:一种改进的水平管内微凝结凝结理论模型

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摘要

The previously proposed theoretical models of film condentation in helically grooved, horizontal microfin tubes have been modified to describe the characteristics of condensing two-phase flow more accurately. The stratified flow regime and the annular flow regime were considered. For the stratified flow regime, the previously proposed theoretical model was modified to take account of the curvature of vapor-liquid interface due to the surface tension force. For the annular flow regime, a more accurate expression for the interfacial shear stress was incorporated in the previously proposed theoretical model. Generally, the modified theoretical models predicted a lower circumferential average heat transfer coefficient than the previously proposed ones. Comparison of the theoretical predictions of the circumferential average heat transfer coefficient with available experimental data for six tubes and five refrigerants revealed that a good agreement (r.m.s. error of less than 21.1%) was obtained for all cases when the higher of the two theoretical predictions were adopted as the calculated value.
机译:修改了先前提出的螺旋凹槽水平微翅片管中薄膜凹陷的理论模型,以更准确地描述冷凝两相流的特性。考虑了分层流态和环形流态。对于分层流态,对先前提出的理论模型进行了修改,以考虑由于表面张力产生的气液界面曲率。对于环形流态,在先前提出的理论模型中结合了界面剪切应力的更精确表达式。通常,修改后的理论模型预测的周向平均传热系数比先前提出的模型低。将周向平均传热系数的理论预测与六管和五种制冷剂的可用实验数据进行比较后,发现当两种理论预测中的较高者时,在所有情况下均获得良好的一致性(均方根误差小于21.1%)。用作计算值。

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