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Inverse heat conduction problem: Sensitivity coefficient insights, filter coefficients, and intrinsic verification

机译:逆导热问题:灵敏度系数见解,滤波器系数和固有验证

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摘要

The inverse heat conduction problem is the estimation of the time and/or space dependence of the surface heat flux or temperature utilizing interior temperature measurements at discrete times and/or locations. This problem is ill-posed since it is very sensitive to omnipresent measurement errors. Many solution methods have been proposed including exact-matching, function specification, Tikhonov regu-larization, iterative regularization, conjugate gradient, steepest descent and singular value decomposition. In this paper, the tools provided by the scaled sensitivity coefficients, digital filter coefficients, and intrinsic verification are used to investigate and compare several of these methods. The utility of digital filters designed for on-line instrumentation for "continuous" measurements of the surface heat flux and temperature in manufacturing settings is also demonstrated.
机译:逆导热问题是利用离散时间和/或位置处的内部温度测量值来估计表面热通量或温度的时间和/或空间依赖性。由于它对无处不在的测量误差非常敏感,因此该问题不适当。已经提出了许多解决方法,包括精确匹配,函数规范,Tikhonov规整,迭代正则化,共轭梯度,最速下降和奇异值分解。在本文中,由缩放灵敏度系数,数字滤波器系数和固有验证提供的工具用于研究和比较其中的几种方法。还演示了设计用于在线仪表以“连续”测量制造设置中的表面热通量和温度的数字滤波器的实用性。

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