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Development and implementation of an integral variational nodal method to the hexagonal geometry nuclear reactors

机译:六边形几何核反应堆积分变分节点方法的开发与实现

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This paper presents recent progress of the development and implementation of the integral transport variational nodal method (VNM) to the neutronics modelling of hexagonal geometry nuclear reactors. In this study, the three-dimensional multi-group neutron transport equation is solved with the variational nodal method utilizing an integral form of the with-in node angular flux distribution to generate response matrices more efficiently. The angular flux distributions on hexagonal nodal interfaces are approximated with even-parity spherical harmonics. The quasi-reflected interface condition (QRIC) method is employed to reduce the number of interfacial angular terms to save computational costs. Parallelization algorithms are accounted to accelerate the response matrix formation process. The newly-implemented methods are examined against the TAKEDA-4 benchmark cases, presenting superior accuracy and efficiency than the standard VNM approach. With the P7 angular approximation, the joint performance of the integral method and the QRIC method yields a remarkable computational time gain of 33.0. Furthermore, an 11-core parallelization to the response matrix formation process results in another 88% reduction in the total computation time. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了六边形几何核反应堆中子学中积分输运变分节法(VNM)的发展和实现的最新进展。在这项研究中,利用变节点方法求解三维多组中子输运方程,该变节点方法利用节点内角通量分布的积分形式来更有效地生成响应矩阵。六方节点界面上的角通量分布用偶校验奇偶球谐函数近似。准反射界面条件(QRIC)方法用于减少界面角度项的数量,以节省计算成本。考虑并行化算法以加速响应矩阵形成过程。针对TAKEDA-4基准案例检查了新实施的方法,与标准的VNM方法相比,该方法具有更高的准确性和效率。通过P7角近似,积分方法和QRIC方法的联合性能产生了33.0的显着计算时间增益。此外,与响应矩阵形成过程的11核并行化导致总计算时间又减少了88%。 (C)2019 Elsevier Ltd.保留所有权利。

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