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Three-dimensional transient mathematical model to predict the heat transfer rate of a heat pipe:

机译:三维瞬态数学模型,用于预测热管的传热速率:

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A three-dimensional model was developed to simulate the heat transfer rate on a heat pipe in a transient condition. This article presents the details of a calculation domain consisting of a wall, a wick, and a vapor core. The governing equation based on the shape of the pipe was numerically simulated using the finite element method. The developed three-dimensional model attempted to predict the transient temperature, the velocity, and the heat transfer rate profiles at any domain. The values obtained from the model calculation were then compared with the actual results from the experiments. The experiment showed that the time required to attain a steady state (where transient temperature is constant) was reasonably consistent with the model. The working fluid r134a (tetrafluoroethane) was the quickest to reach the steady state and transferred the greatest amount of heat.
机译:开发了一个三维模型来模拟瞬态条件下热管上的传热速率。本文介绍由壁,灯芯和蒸气芯组成的计算域的详细信息。使用有限元方法对基于管道形状的控制方程进行了数值模拟。开发的三维模型试图预测任何区域的瞬态温度,速度和传热速率曲线。然后将从模型计算中获得的值与实验的实际结果进行比较。实验表明,达到稳态(瞬态温度恒定)所需的时间与模型相当一致。工作流体r134a(四氟乙烷)最快达到稳态并传递最大的热量。

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