首页> 外文会议>8th International Topical Meeting on Nuclear Thermal-Hydraulics, Operation and Safety. >Revisiting Modeling Techniques and Validation Experiments for Two-Phase Choked Flows Relevant to LOCA
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Revisiting Modeling Techniques and Validation Experiments for Two-Phase Choked Flows Relevant to LOCA

机译:与LOCA相关的两相节流的复习建模技术和验证实验

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This paper deals with the modeling of the 1D choked or critical flow rate in steady state or quasi-steady state conditions and the selection of the relevant experimental data for assessing such models. In particular, the focus is made on thermodynamic non-equilibrium conditions which prevail in the flashing process near the critical section. In this regard, relaxation models such as the Delayed Equilibrium Model (DEM) or the Homogeneous Relaxation Model (HRM) have been developed and tested in previous studies. These models were revisited and improved in view of their future implemention in the next CATHARE code generation during the EU NURISP (Nuclear Reactor Integrated Software Platform) project. Some new results of these models are compared against experimental data mainly obtained at CEA Grenoble (Super-Mobydick experiments), and additional benchmarks are proposed for further validations
机译:本文涉及稳态或准稳态条件下的一维节流或临界流量的建模,以及用于评估此类模型的相关实验数据的选择。特别地,重点是在临界区附近的闪蒸过程中普遍存在的热力学非平衡条件。在这方面,先前的研究已经开发并测试了松弛模型,例如延迟均衡模型(DEM)或均质松弛模型(HRM)。考虑到这些模型在EU NURISP(核反应堆集成软件平台)项目期间在下一代CATHARE代码生成中的未来实现方式,因此对其进行了重新研究和改进。将这些模型的一些新结果与主要在CEA格勒诺布尔(Super-Mobydick实验)中获得的实验数据进行了比较,并提出了其他基准以进行进一步验证

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