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A benchmark exercise on the use of CFD codes for containment issues using best practice guidelines: A computational challenge

机译:使用CFD代码使用最佳实践准则解决收容问题的基准测试:计算挑战

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In the framework of the 5th EU-FWP project ECORA the capabilities of CFD software packages for simulating flows in the containment of nuclear reactors was evaluated. Four codes were assessed using two basic tests in the PANDA facility addressing the transport of gases in a multi-compartment geometry. The assessment included a first attempt to use Best Practice Guidelines (BPGs) for the analysis of long, large-scale, transient problems. Due to the large computational overhead of the analysis, the BPGs could not fully be applied. It was thus concluded that the application of the BPGs to full containment analysis is out of reach with the currently available computer power. On the other hand, CFD codes used with a sufficiently detailed mesh seem to be capable to give reliable answers on issues relevant for containment simulation using standard two-equation turbulence models. Development on turbulence models is constantly ongoing. If it turns out that advanced (and more computationally intensive) turbulence models may not be needed, the use of the BPGs for 'certified' simulations could become feasible within a relatively short time.
机译:在第5个EU-FWP项目ECORA的框架内,评估了CFD软件包模拟核反应堆安全壳内流动的能力。在PANDA设施中使用两项基本测试评估了四个规范,以解决多室几何结构中的气体传输问题。该评估包括首次尝试使用最佳实践准则(BPG)来分析长期,大规模,暂时性问题。由于分析的大量计算开销,因此无法完全应用BPG。因此得出的结论是,使用现有的计算机功能无法将BPG应用于完全密闭性分析。另一方面,与足够详细的网格一起使用的CFD代码似乎能够针对与使用标准两方程湍流模型进行的密闭模拟有关的问题给出可靠的答案。湍流模型的开发正在进行中。如果事实证明可能不需要高级(且计算量更大)的湍流模型,则在相对较短的时间内将BPG用于“认证”模拟就变得可行。

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