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A new approach for the estimation of temperature-dependent thermal properties by solving transient inverse heat conduction problems

机译:解决瞬态逆热传导问题估算温度相关热特性的新方法

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摘要

A new method is proposed for estimating temperature-dependent thermal properties using solutions to transient inverse heat conduction problems. The prior information on the functional form of the thermal properties is not necessary for the proposed approach. The unknown thermal property is treated as the optimization variable, and the errors to be minimized are the differences between the calculated temperatures and the measured ones. The least-squares method is employed for the solution of the ill-posed inverse problem. The main contribution of this work is to introduce the complex-variable-differentiation method into transient inverse heat conduction problems, for the calculation of sensitivity coefficient. The inverse estimations of the heat capacity, the thermal conductivity and the thermal diffusivity are reported. Examples are given to demonstrate the effectiveness, efficiency and accuracy of the inverse approach as well as the potential to engineering applications. The effects of measurement errors on the inverse results are also investigated.
机译:提出了一种新的方法,该方法使用瞬态逆导热问题的解决方案来估计与温度有关的热性能。对于所提出的方法,关于热性质的功能形式的先验信息不是必需的。未知的热特性被视为优化变量,要最小化的误差是计算温度和测量温度之间的差异。最小二乘方法用于不适定逆问题的求解。这项工作的主要贡献是将复变量微分方法引入瞬态逆导热问题,以计算灵敏度系数。报告了热容量,热导率和热扩散率的逆估计。举例说明了逆方法的有效性,效率和准确性,以及工程应用的潜力。还研究了测量误差对反演结果的影响。

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