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Solution of the inverse radiation problem for anisotropically scattering medium using the control volume finite element method

机译:控制体积有限元法求解各向异性散射介质的反辐射问题

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摘要

In this paper, an inverse analysis is performed for the estimation of radiative parameters from the measured temperature profile in an absorbing, emitting, and anisotropically scattering medium. The control volume finite element method is employed to solve the direct problem in a 3-D rectangular furnace. The inverse problem is formulated as an optimization problem between the calculated and the experimental data and the Levenberg-Marquardt method is used for its solution. The sensitivity analysis is made in order to determine whether it is possible to identify the parameters. Also, the effects of angular and spatial grid numbers and the initial guesses on the accuracy of the inverse problem are investigated. This method combination, which is applied for the first time to solve 3-D inverse radiation problem, has been found to accurately predict the unknown parameters.
机译:在本文中,对吸收,发射和各向异性散射介质中的测得温度曲线进行了反分析,以估计辐射参数。控制体积有限元方法用于解决3-D矩形炉中的直接问题。将反问题公式化为计算数据和实验数据之间的优化问题,并使用Levenberg-Marquardt方法求解。进行灵敏度分析,以确定是否有可能识别参数。此外,还研究了角度和空间网格数以及初始猜测对反问题精度的影响。已经发现这种方法组合首次用于解决3-D逆辐射问题,可以准确地预测未知参数。

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