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An inverse analysis for determination of space-dependent heat flux in heat conduction problems in the presence of variable thermal conductivity

机译:在存在导热率存在下导热问题中的热传导问题中空间依赖热通量的逆分析

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摘要

This article presents an inverse problem of determination of a space-dependent heat flux in steady-state heat conduction problems. The thermal conductivity of a heat conducting body depends on the temperature distribution over the body. In this study, the simulated measured temperature distribution on part of the boundary is related to the variable heat flux imposed on a different part of the boundary through incorporating the variable thermal conductivity components into the sensitivity coefficients. To do so, a body-fitted grid generation technique is used to mesh the two-dimensional irregular body and solve the direct heat conduction problem. An efficient, accurate, robust, and easy to implement method is presented to compute the sensitivity coefficients through derived expressions. Novelty of the study is twofold: (1) Boundary-fitted grid-based sensitivity analysis in which all sensitivities can be obtained in only one direct solution (at each iteration), irrespective of the number of unknown parameters, and (2) the way the measured temperatures on part of boundary are related to a variable heat flux applied on another part of boundary through components of a variable thermal conductivity. The conjugate gradient method along with the discrepancy principle is used in the inverse analysis to minimize the objective function and achieve the desired solution.
机译:本文提出了确定稳态导热问题中依赖于空间依赖性热通量的反问题。导热体的导热率取决于体内的温度分布。在该研究中,通过将可变导热性分量结合到灵敏度系数,模拟边界上的模拟测量温度分布与边界的不同部分施加的可变热通量有关。为此,使用身体拟合的网格生成技术来筛选二维不规则体内并解决直接导热问题。提出了一种高效,准确,鲁棒,易于实现的方法,以通过衍生的表达来计算灵敏度系数。该研究的新颖性是双重的:(1)基于边界拟合网格的敏感性分析,其中所有敏感性可以仅在一个直接解决方案(在每次迭代)中获得,而不管未知参数的数量,以及(2)方式边界的一部分的测量温度与施加在边界的另一部分通过可变导热率的组件的可变热通量有关。共轭梯度法以及差异原理用于逆分析以最小化目标函数并达到所需的溶液。

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