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Inverse problem in determining convection heat transfer coefficient of an annular fin

机译:确定环形翅片对流传热系数的反问题

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摘要

In this study, a conjugate gradient method based on an inverse algorithm is applied to estimate the unknown space and time dependent convection heat transfer coefficient of an annular fin. While knowing the temperature or strain history at the measuring positions of the fin, the convection heat transfer coefficient between the fin and the ambient fluid can be successfully computed. No prior information is needed on the functional form of the unknown convection heat transfer coefficient; and thus, the present study is classified as the function estimation inverse calculation. A particular feature in this study is that the thermal and strain fields are coupled, which makes solving the inverse problem a highly challenging task. The accuracy of the inverse analysis is examined by using the simulated temperature or strain measurements. Results show that excellent estimations of the convection heat transfer coefficient, temperature distributions and thermal stress distributions can be obtained for all the cases considered in this study.
机译:在这项研究中,基于逆算法的共轭梯度法被应用于估计未知的空间和时间相关的环形翅片的对流传热系数。在知道散热片的测量位置处的温度或应变历史的同时,可以成功地计算散热片与环境流体之间的对流传热系数。对流传热系数未知的函数形式不需要先验信息;因此,本研究被归类为函数估计逆计算。该研究的一个特殊特征是热场和应变场是耦合的,这使得解决反问题成为一项极具挑战性的任务。通过使用模拟的温度或应变测量来检查逆分析的准确性。结果表明,对于本研究中考虑的所有情况,都可以获得对流传热系数,温度分布和热应力分布的出色估计。

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