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首页> 外文期刊>International Journal of Heat and Mass Transfer >A new computational procedure for refrigerant condensation inside herringbone-type Brazed Plate Heat Exchangers
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A new computational procedure for refrigerant condensation inside herringbone-type Brazed Plate Heat Exchangers

机译:人字形钎焊板式换热器内制冷剂凝结的新计算程序

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This paper presents a new computational procedure for refrigerant condensation inside herringbone-type Brazed Plate Heat Exchanger (BPHE). A transition point between gravity controlled and forced convection condensation was found for an equivalent Reynolds number around 1600. At low equivalent Reynolds number (<1600) the heat transfer coefficients are not dependent on mass flux and are well predicted by a simple model based on the Nusselt (1916) equation for vertical surface. For higher equivalent Reynolds number (>1600) the heat transfer coefficients depend on mass flux and condensate drainage is controlled by the combined actions of gravity and vapour shear. A new model was developed for predicting the heat transfer coefficients in the forced convection condensation region. This new model was also applied to super-heated vapour condensation by using the equation of Webb (1998) to account for super-heating effects. The new computational procedure was compared against data from the literature: the mean absolute percentage deviation between experimental and calculated heat transfer coefficients was lower than 16%.
机译:本文提出了一种新的人字形钎焊板式换热器(BPHE)内制冷剂冷凝的计算程序。对于1600左右的等效雷诺数,发现了重力控制和强制对流冷凝之间的过渡点。当等效雷诺数较低(<1600)时,传热系数与质量通量无关,并且可以通过基于该系数的简单模型很好地预测Nusselt(1916)垂直表面方程。对于更高的雷诺数(> 1600),传热系数取决于质量通量,冷凝水的排泄是由重力和蒸汽剪切作用共同控制的。开发了一种新模型来预测强制对流冷凝区域的传热系数。通过使用韦伯(Webb)(1998)的方程来解决过热效应,该新模型还应用于过热蒸汽冷凝。将新的计算程序与文献数据进行了比较:实验传热系数和计算传热系数之间的平均绝对百分比偏差低于16%。

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