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High performance 3D pin-by-pin neutron diffusion calculation based on 2D/1D decoupling method for accurate pin power estimation

机译:基于2D / 1D去耦方法的高性能3D引脚逐针中子扩散计算,用于精确引脚功率估计

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The methods and performance of a 3D pin-by-pin neutronics code based on the 2D/1D decoupling method are presented. The code was newly developed as an effort to achieve enhanced accuracy and high calculation performance that are sufficient for the use in practical nuclear design analyses. From the 3D diffusion-based finite difference method (FDM) formulation, decoupled planar formulations are established by treating pre-determined axial leakage as a source term. The decoupled axial problems are formulated with the radial leakage source term. To accelerate the pin-by-pin calculation, the two-level coarse mesh finite difference (CMFD) formulation, which consists of the multigroup node-wise CMFD and the two-group assembly-wise CMFD is implemented. To enhance the accuracy, both the discontinuity factor method and the super-homogenization (SPH) factor method are examined for pin-wise cross-section homogenization. The parallelization is achieved with the OpenMP package. The accuracy and performance of the pin-by-pin calculations are assessed with the VERA and APR1400 benchmark problems. It is demonstrated that pin-by-pin 2D/1D alternating calculations within the two-level 3D CMFD framework yield accurate solutions in about 30?s for the typical commercial core problems, on a parallel platform employing 32 threads.
机译:提出了基于2D / 1D去耦方法的3D引脚逐针中文功能的方法和性能。该代码被新开发为努力实现增强的准确性和高计算性能,足以用于实际核设计分析。根据基于3D扩散的有限差分方法(FDM)制剂,通过将预定的轴向泄漏作为源术语来建立去耦平面制剂。用径向泄漏源术语配制分离的轴向问题。为了加速引脚销钉计算,实现了由MultiGroup Node-Wise CMFD和双组组装CMFD组成的两级粗网格有限差(CMFD)配方。为了提高准确性,检查不连续因子方法和超级均质化(SPH)因子方法,用于针尖横截面均质化。通过OpenMP包实现并行化。通过VERA和APR1400基准问题评估引脚计算的准确性和性能。据证明,在采用32个线程的并行平台上,两级3D CMFD框架内的引脚2D / 1D在两级3D CMFD框架内的交替计算在大约30秒内为典型的商业核心问题提供精确的解决方案。

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