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Parallelization and application of SACOS for whole core thermal-hydraulic analysis

机译:SACOS对全核热液压分析的平行化和应用

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摘要

SACOS series of subchannel analysis codes have been developed by XJTU-NuTheL for many years and are being used for the thermal-hydraulic safety analysis of various reactor cores. To achieve fine whole core pin-level analysis, the input preprocessing and parallel capabilities of the code have been developed in this study. Preprocessing is suitable for modeling rectangular and hexagonal assemblies with less error-prone input; parallelization is established based on the domain decomposition method with the hybrid of MPI and OpenMP. For domain decomposition, a more flexible method has been proposed which can determine the appropriate task division of the core domain according to the number of processors of the server. By performing the calculation time evaluation for the several PWR assembly problems, the code parallelization has been successfully verified with different number of processors. Subsequent analysis results for rectangular- and hexagonal-assembly core imply that the code can be used to model and perform pin-level core safety analysis with acceptable computational efficiency.
机译:SACOS系列的子信道分析代码已经由XJTU-NUTHEL开发了多年,并且用于各种反应堆核的热液压安全分析。为实现精细的整体核心引脚级分析,在本研究中已经开发了代码的输入预处理和并行能力。预处理适用于矩形和六边形组件,易于易于易置较少的输入;基于具有MPI和OpenMP的混合的域分解方法建立并行化。对于域分解,已经提出了一种更灵活的方法,其可以根据服务器的处理器的数量来确定核心域的适当任务划分。通过对若干PWR组装问题进行计算时间评估,已通过不同数量的处理器成功验证代码并行化。随后的矩形和六边形组装核心的分析结果意味着代码可以用可接受的计算效率来模拟和执行引脚级核心安全性分析。

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