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Solution of the self-adjoint radiative transfer equation on hybrid computer systems

机译:混合计算机系统中自伴辐射传递方程的解

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摘要

A new technique for simulating three-dimensional radiative energy transfer for the use in the software designed for the predictive simulation of plasma with high energy density on parallel computers is proposed. A highly scalable algorithm that takes into account the angular dependence of the radiation intensity and is free of the ray effect is developed based on the solution of a second-order equation with a self-adjoint operator. A distinctive feature of this algorithm is a preliminary transformation of rotation to eliminate mixed derivatives with respect to the spatial variables, simplify the structure of the difference operator, and accelerate the convergence of the iterative solution of the equation. It is shown that the proposed method correctly reproduces the limiting cases-isotropic radiation and the directed radiation with a delta-shaped angular distribution.
机译:提出了一种新的用于模拟三维辐射能量转移的技术,该技术可用于在并行计算机上预测具有高能量密度的等离子体的软件中。基于具有自伴算子的二阶方程的解,开发了一种高度可扩展的算法,该算法考虑了辐射强度的角度依赖性并且没有射线效应。该算法的一个显着特征是旋转的初步变换,以消除关于空间变量的混合导数,简化差分算子的结构,并加速方程迭代解的收敛。结果表明,所提出的方法正确地再现了极限情况,即各向同性辐射和具有三角形状角分布的定向辐射。

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