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Numerical heat transfer analysis of laminar film condensation on a vertical fluted tube

机译:竖向波纹管上层流膜冷凝的数值传热分析

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摘要

The purpose of this study is to find a convenient and practical procedure for calculating heat transfer of laminar film condensation on a vertical fluted tube. The condensate film on the tube surface along the axial direction was divided into two portions: the initial portion and the developing portion. The developing portion was analyzed in details. The film thickness equation of condensate film over the crest and the momentum equation of condensate film in the trough were established respectively after some simplifications and coupled with two-dimensional thermal conduction equation. The relationship between the heat transfer rate and the length of the flute was obtained through solving the equations numerically. The present procedure was tested on a sinusoidal fluted tube. The amount of heat transfer rates Q_t of the tube were calculated at different temperature differences by using this procedure. The calculation was compared with the experimental data quoted. The results were in good agreement with a maximum deviation of 18%. So the present procedure is reliable and can be used in the parameter design of sinusoidal fluted tubes.
机译:这项研究的目的是找到一种方便实用的程序来计算垂直槽管上层流膜冷凝的热传递。沿轴向在管表面上的冷凝膜分为两个部分:初始部分和显影部分。详细分析了显影部分。经过一些简化,并结合二维热传导方程,分别建立了波峰上方凝结膜的膜厚方程和槽内凝结膜的动量方程。通过数值求解方程,可以得到传热速率与长笛长度之间的关系。本程序在正弦凹槽管上进行了测试。通过使用该程序在不同的温差下计算出管子的传热速率Q_t。将计算结果与引用的实验数据进行比较。结果非常吻合,最大偏差为18%。因此,本方法是可靠的,可用于正弦凹槽管的参数设计。

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