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Diffusion synthetic acceleration with the fine mesh rebalance of the subcell balance method with tetrahedral meshes for S N transport calculations

机译:扩散综合加速度与Subcell平衡方法的细网重新平衡与S N 运输计算

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A diffusion synthetic acceleration (DSA) technique for the SNtransport equation discretized with the linear discontinuous expansion method with subcell balance (LDEM-SCB) on unstructured tetrahedral meshes is presented. The LDEM-SCB scheme solves the transport equation with the discrete ordinates method by using the subcell balances and linear discontinuous expansion of the flux. Discretized DSA equations are derived by consistently discretizing the continuous diffusion equation with the LDEM-SCB method, however, the discretized diffusion equations are not fully consistent with the discretized transport equations. In addition, a fine mesh rebalance (FMR) method is devised to accelerate the discretized diffusion equation coupled with the preconditioned conjugate gradient (CG) method. The DSA method is applied to various test problems to show its effectiveness in speeding up the iterative convergence of the transport equation. The results show that the DSA method gives small spectral radii for the tetrahedral meshes having various minimum aspect ratios even in highly scattering dominant mediums for the homogeneous test problems. The numerical tests for the homogeneous and heterogeneous problems show that DSA with FMR (with preconditioned CG) gives significantly higher speedups and robustness than the one with the Gauss-Seidel-like iteration.
机译:通过在非结构化的四面体网上用子细胞平衡(LDEM-SCB)的线性不连续扩展方法离散化的扩散合成加速度(DSA)技术。 LDEM-SCB方案通过使用子电池余额和通量的线性不连续扩展来解决具有离散坐标方法的传输方程。通过始终如一地离散地将连续扩散方程与LDEM-SCB方法一致地导出离散的DSA方程,然而,离散化的扩散方程与离散传输方程不完全一致。另外,设计了一种精细的网格重新平衡(FMR)方法以加速与预先处理的共轭梯度(CG)方法耦合的离散扩散方程。 DSA方法应用于各种测试问题,以表明其在加速传输方程的迭代收敛方面的有效性。结果表明,DSA方法为四面体网格提供了小的光谱半径,即使在具有均匀测试问题的高度散射显性介质中,具有各种最小宽高比的四面体网。均匀和异构问题的数值测试表明,具有FMR(具有预处理CG)的DSA比具有高斯Seidel的迭代的速度明显更高的加速和鲁棒性。

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