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ACCELERATION AND PARALLELIZATION OF ARBITRARY TRAJECTORY BASED THREE-DIMENSIONAL METHOD OF CHARACTERISTICS

机译:基于任意轨迹的三维特征加速与并行化

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The method of characteristics based on arbitrary trajectory adopts interpolation method to deal with the reflective boundary, which can break the restriction on the choice of trajectory layouts and quadrature sets. An acceleration and parallelization scheme is used to reduce the computational time. A generalized coarse-mesh finite difference (GCMFD) method which can be performed on generalized geometry is applied for acceleration. To effectively accelerate, we extend a single GCMFD method to the two-level GCMFD method, one level for the spatial acceleration and the other for the energy group acceleration. On the other hand, a parallelization method based on message-passing model uses an angular decomposition scheme. By grouping the directions to satisfy the reflective relation can effectively reduce the data communications. The numerical results show a good performance on reducing the number of iterations and speeding up the code after the acceleration and parallelization.
机译:基于任意轨迹的特征方法采用插值法处理反射边界,可以打破轨迹布局和正交集选择的限制。加速和并行化方案用于减少计算时间。可以对广义几何执行的广义粗网格有限差分(GCMFD)方法被应用于加速。为了有效地加速,我们将单个GCMFD方法扩展到两级GCMFD方法,一级用于空间加速度,另一级用于能量组加速度。另一方面,基于消息传递模型的并行化方法使用角度分解方案。通过将方向分组以满足反射关系可以有效地减少数据通信。数值结果表明,在加速和并行化之后,在减少迭代次数和加快代码速度方面具有良好的性能。

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