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首页> 外文期刊>Nuclear Engineering and Design >Synthesis of a CFD benchmark exercise based on a test in the PANDA facility addressing the stratification erosion by a vertical jet in presence of a flow obstruction
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Synthesis of a CFD benchmark exercise based on a test in the PANDA facility addressing the stratification erosion by a vertical jet in presence of a flow obstruction

机译:基于PANDA设施中的测试的CFD基准测试的综合,该测试解决了在有流动障碍的情况下垂直射流引起的分层腐蚀

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摘要

The benchmark exercise discussed in this paper was conducted within the OECD/NEA project HYMERES. The specific experiment in the PANDA facility chosen for the present benchmark addresses the stratification erosion in a vessel where the upper region contained initially a mixture of steam and helium, and the remaining volume was filled with steam. The mixing is induced by a vertical steam jet, which originates from the exit of a circular pipe located below the bottom of the helium-rich layer. The stratification erosion process is somewhat slowed down by a small circular plate above the jet source. The exercise consisted of a blind phase, and an open phase. Two sets of blind simulations were requested: one set obtained using a "common model", and a second set produced by a "best estimate" model. For the "common model", a list of recommendations was given, whereas for the "best estimate" model, each participant was free to choose the modelling approach. The submitted results for the erosion times were in a large band, and especially the large differences in the results with the "common model" were not expected. The results of the best estimate simulations showed that the combination of mesh and modelling approach can lead to a wide spread of results. The most important difficulty in interpreting the results and finding the reason of the large deviations was the lack of information on the velocity field downstream of the obstruction. Therefore, for the open phase extended data from auxiliary, "zero" tests (for similar conditions but without helium layer) were provided to the participants to permit a more basic validation of their models, using a "multi-step approach". The step-by-step validation permitted some progress with respect to some of the items identified in the blind benchmark. However, large discrepancies with data in the final analyses of the test are observed, which cannot be easily attributed to specific model deficiencies or insufficient detail of the mesh. These results raised some questions in relation to best practice guidelines for the use of Computational Fluid Dynamic (CFD) codes for containment analysis and indicated needs for further CFD-grade experiments.
机译:本文讨论的基准测试是在OECD / NEA项目HYMERES中进行的。为当前基准选择的PANDA设施中的特定实验解决了容器中的分层腐蚀问题,该容器的上部区域最初包含蒸汽和氦气的混合物,而其余区域充满了蒸汽。混合是由垂直蒸汽射流引起的,该蒸汽射流源自位于富氦层底部下方的圆形管的出口。射流源上方的一块小圆形板会稍微减慢分层腐蚀过程。练习包括一个盲阶段和一个开放阶段。要求进行两组盲目模拟:一组使用“通用模型”获得,第二组通过“最佳估计”模型产生。对于“通用模型”,给出了建议列表,而对于“最佳估计”模型,每个参与者都可以自由选择建模方法。提交的腐蚀时间结果在较大范围内,尤其是与“通用模型”的结果之间的巨大差异是无法预期的。最佳估计模拟的结果表明,网格和建模方法的结合可以导致结果的广泛传播。解释结果和发现较大偏差的原因最重要的困难是缺乏有关阻塞物下游速度场的信息。因此,对于来自辅助设备的开放相扩展数据,使用“多步方法”向参与者提供“零”测试(针对类似条件,但没有氦气层),以允许对其模型进行更基本的验证。逐步验证使盲目基准中确定的某些项目取得了一些进展。但是,在测试的最终分析中观察到与数据的巨大差异,这不能轻易归因于特定的模型缺陷或网格细节不足。这些结果引起了有关使用计算流体动力学(CFD)代码进行密闭性分析的最佳实践准则的一些问题,并指出了进一步CFD级实验的需求。

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