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Heat transfer analysis of a circular pipe heated internally with a cyclic moving heat source

机译:循环移动热源内部加热的圆形管的传热分析

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Moving heat source (MHS) problems are widely encountered in many engineering applications. In this paper, transient heat transfer of a circular pipe subjected to an internal cyclic expanding heat source is investigated. The right boundary of the heat source moves from its original position to the end of the circular pipe in a few milliseconds, during which the inner wall is under forced convective heating and then the pipe is under natural cooling for a few seconds. This is called a cycle. A finite volume method is used to analyze the transient heat transfer of the pipe under this cyclic thermal loading. Temperature responses, heat flux responses and temperature distributions are presented to show the thermal characteristics of such a pipe. Results show that the inner wall is under intense thermal impact and a large temperature gradient occurs in the region near the inner wall. The effect of exterior water cooling method on the heat transfer in the pipe is investigated. Predictions show that this method can reduce the growth trend of the peak temperature of the inner wall and take much heat away that stored in the pipe. (C) 2014 Elsevier Masson SAS. All rights reserved.
机译:在许多工程应用中广泛遇到移动热源(MHS)问题。本文研究了内部循环膨胀热源作用下圆形管的瞬态传热。热源的右边界在几毫秒内从其原始位置移动到圆形管道的末端,在此期间内壁受到强制对流加热,然后管道自然冷却几秒钟。这称为循环。在这种循环热负荷下,有限体积法用于分析管道的瞬态传热。给出了温度响应,热通量响应和温度分布,以显示这种管道的热特性。结果表明,内壁受到强烈的热冲击,内壁附近区域出现较大的温度梯度。研究了外部水冷却方法对管道内传热的影响。预测表明,该方法可以减少内壁峰值温度的增长趋势,并带走管道中存储的大量热量。 (C)2014 Elsevier Masson SAS。版权所有。

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