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首页> 外文期刊>International Journal of Thermal Sciences >Inverse estimation of front surface temperature of a plate with laser heating and convection-radiation cooling
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Inverse estimation of front surface temperature of a plate with laser heating and convection-radiation cooling

机译:用激光加热和对流辐射冷却反演板的前表面温度

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摘要

The conjugate gradient method (CGM) is an efficient iterative regularization technique for solution of the inverse heat conduction problem (IHCP). However, most of the existing CGM schemes deal with linear boundary conditions and constant thermophysical properties. Little attention has been paid to formulate the CGM with radiation boundary condition and temperature-dependent thermophysical properties. In this study, a nonlinear CGM scheme is formulated to recover the front surface heating condition of a 3-D object, based on the temperature measurements at back surface. The 3-D object is subjected to a high-intensity Gaussian laser beam heating on the front surface and a combined radiation and convection boundary condition on the back surface. The derivations of the direct problem, adjoint problem and sensitivity problem are presented in detail. The results are presented for two materials and excellent agreement between the inverse and exact solutions are demonstrated.
机译:共轭梯度法(CGM)是一种有效的迭代正则化技术,用于解决反导热问题(IHCP)。但是,大多数现有的CGM方案都处理线性边界条件和恒定的热物理性质。很少有人关注具有辐射边界条件和温度依赖性热物理性质的CGM的配制。在这项研究中,基于背面温度测量,制定了非线性CGM方案以恢复3-D对象的正面加热条件。 3-D物体在正面受到高强度高斯激光束加热,在背面受到辐射和对流边界的综合作用。详细介绍了直接问题,伴随问题和敏感性问题的推导。给出了两种材料的结果,并证明了逆解与精确解之间的出色一致性。

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