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MULTI-SCALE THERMALHYDRAULIC ANALYSES PERFORMED IN NURESIM AND NURISP PROJECTS

机译:在NURESIM和NURISP项目中进行的多尺度热液分析

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The NURESIM and NURISP successive projects of the 6th and 7th European Framework Programs joined the efforts of 21 partners for developing and validating a reference multi-physics and multi-scale platform for reactor simulation. The platform includes system codes, component codes, and also CFD or CMFD simulation tools. Fine scale CFD simulations are useful for a better understanding of physical processes, for the prediction of small scale geometrical effects and for solving problems that require a fine space and/or time resolution. Many important safety issues usually treated at the system scale may now benefit from investigations at a CFD scale. The Pressurized Thermal Shock is investigated using several simulation scales including Direct Numerical Simulation, Large Eddy Simulation, Very Large Eddy Simulation and RANS approaches. At the end a coupling of system code and CFD is applied. Condensation Induced Water-Hammer was also investigated at both CFD and 1-D scale. Boiling flow in a reactor core up to Departure from Nucleate Boiling or Dry-Out is investigated at scales much smaller than the classical subchannel analysis codes. DNS was used to investigate very local processes whereas CFD in both RANS and LES was used to simulate bubbly flow and Euler-Lagrange simulations were used for annular mist flow investigations. Loss of Coolant Accidents are usually treated by system codes. Some related issues are now revisited at the CFD scale. In each case the progress of the analysis is summarized and the benefit of the multi-scale approach is shown.
机译:第六和第七个欧洲框架计划的NURESIM和NURISP接连的项目与21个合作伙伴共同努力,开发和验证了用于反应堆仿真的参考多物理场和多尺度平台。该平台包括系统代码,组件代码以及CFD或CMFD仿真工具。精细尺度CFD模拟对于更好地了解物理过程,预测小尺度几何效应以及解决需要精细空间和/或时间分辨率的问题非常有用。通常可以在系统规模上处理的许多重要安全问题现在可以从CFD规模的调查中受益。压力热冲击的研究使用了几种模拟尺度,包括直接数值模拟,大涡模拟,超大涡模拟和RANS方法。最后,应用系统代码和CFD的耦合。还以CFD和一维尺度对凝结水锤进行了研究。以比经典子通道分析代码小得多的比例研究了直至从核沸腾或干Out脱出为止的反应堆堆芯中的沸腾流。 DNS用于研究非常局部的过程,而RANS和LES中的CFD用于模拟气泡流动,而Euler-Lagrange模拟则用于环形雾流研究。冷却液事故的损失通常由系统代码处理。现在以CFD规模重新讨论一些相关问题。在每种情况下,都总结了分析的进展,并显示了多尺度方法的好处。

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