首页> 外文期刊>International Journal of Heat and Mass Transfer >Inverse Radiation Problem Of Temperature Fieldrnin Three-dimensional Rectangular Enclosure Containingrninhomogeneous, Anisotropically Scattering Media
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Inverse Radiation Problem Of Temperature Fieldrnin Three-dimensional Rectangular Enclosure Containingrninhomogeneous, Anisotropically Scattering Media

机译:含非均质各向异性散射介质的三维矩形壳体中温度场的逆辐射问题

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摘要

An inverse radiation analysis is presented for determining the three-dimensional temperature field in an inhomogeneous, absorbing, emitting and anisotropically scattering media of known radiative properties from the knowledge of the exit radiative energy received by charge-coupled device (CCD) cameras at boundary surfaces. The forward Monte Carlo method was employed to describe the radiative energy propagation. The inverse problem was formulated as an ill-posed matrix equation and solved by least square QR decomposition (LSQR) method. The measured data were simulated by adding random errors to the exact solution of the direct problem. The effects of measurement errors, combinations of CCD cameras, concentration distributions of particles, and coefficient fluctuating errors on the accuracy of the inverse problem were investigated. The results show that the three-dimensional temperature field can be estimated accurately, even for the noisy data.
机译:根据电荷耦合器件(CCD)相机在边界表面接收的出射辐射能的知识,提出了一种反向辐射分析方法,用于确定已知辐射特性的不均匀,吸收,发射和各向异性散射介质中的三维温度场。前向蒙特卡罗方法被用来描述辐射能的传播。将反问题公式化为不适定矩阵方程,并通过最小二乘QR分解(LSQR)方法求解。通过将随机误差添加到直接问题的精确解中来模拟测量数据。研究了测量误差,CCD相机组合,颗粒浓度分布和系数波动误差对反问题精度的影响。结果表明,即使对于嘈杂的数据,三维温度场也可以准确估计。

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