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首页> 外文期刊>Journal of Computational Physics >Application of linear multifrequency-grey acceleration to preconditioned Krylov iterations for thermal radiation transport
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Application of linear multifrequency-grey acceleration to preconditioned Krylov iterations for thermal radiation transport

机译:线性多频 - 灰色加速度在热辐射运输中的预处理克里夫洛夫迭代中的应用

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The thermal radiative transfer (TRT) equations comprise a radiation equation coupled to the material internal energy equation. Linearization of these equations produces effective, thermally-redistributed scattering through absorption-reemission. We investigate the effectiveness and efficiency of Linear-Multi-Frequency-Grey (LMFG) acceleration that has been reformulated for use as a preconditioner to Krylov iterative solution methods. We introduce two general frameworks, the scalar flux formulation (SFF) and the absorption rate formulation (ARF), and investigate their iterative properties in the absence and presence of true scattering. SFF has a group-dependent state size but may be formulated without inner iterations in the presence of scattering, while ARF has a group-independent state size but requires inner iterations when scattering is present. We compare and evaluate the computational cost and efficiency of LMFG applied to these two formulations using a direct solver for the preconditioners. This work is novel because the use of LMFG for the radiation transport equation, in conjunction with Krylov methods, involves special considerations not required for radiation diffusion. (C) 2018 Elsevier Inc. All rights reserved.
机译:热辐射转移(TRT)方程包括耦合到材料内部能量方程的辐射方程。这些方程的线性化通过吸收再次产生有效的热再分分布散射。我们研究了线性多频 - 灰色(LMFG)加速度的有效性和效率,该加速度被重新制定用作Krylov迭代解决方案方法的预处理器。我们介绍了两个一般框架,标量磁带配方(SFF)和吸收率制剂(ARF),并在缺乏和存在真正散射的情况下探讨它们的迭代性质。 SFF具有依赖性状态大小,但可以在散射存在下没有内部迭代的情况下配制,而ARF具有独立于群体的状态大小,但需要在存在散射时需要内部迭代。我们使用直接求解器进行比较和评估LMFG的计算成本和效率,用于预处理器的直接求解器。这项工作是新颖的,因为与Krylov方法一起使用LMFG的辐射传输方程,涉及不需要辐射扩散所需的特殊考虑因素。 (c)2018年Elsevier Inc.保留所有权利。

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