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Unsteady Single-Phase Natural Circulation Flow Mixing Prediction Using CATHARE Three-Dimensional Capabilities

机译:基于CATHARE三维能力的非稳态单相自然循环流混合预测

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Coolant mixing under natural circulation flow regime constitutes a key parameter that may play a role in the course of an accidental transient in a nuclear pressurized water reactor. This issue has motivated some experimental investigations carried out within the OECD/NEA PKL projects. The aim was to assess the coolant mixing phenomenon in the reactor pressure vessel downcomer and the core lower plenum under several asymmetric steady and unsteady flow conditions, and to provide experimental data for code validations. Former studies addressed the mixing phenomenon using, on the one hand, one-dimensional computational approaches with cross flows that are not fully validated under transient conditions and, on the other hand, expensive computational fluid dynamic tools that are?not?always justified for large-scale macroscopic phenomena. In the current framework, an?unsteady coolant mixing experiment carried out in the Rossendorf coolant mixing test?facility is simulated using the three-dimensional porous media capabilities of the?thermal–hydraulic system CATHARE code. The current study allows highlighting the current capabilities of these codes and their suitability for reproducing the main phenomena occurring during asymmetric transient natural circulation mixing conditions.
机译:自然循环流动状态下的冷却剂混合是一个关键参数,可能在核压水反应堆的意外瞬变过程中起作用。这个问题激发了在OECD / NEA PKL项目中进行的一些实验研究。目的是评估在几种非对称稳态和非稳态流动条件下,反应堆压力容器降液管和堆芯下部增压室中的冷却剂混合现象,并为代码验证提供实验数据。以前的研究一方面使用一维计算方法对交叉流动进行处理,但这种方法在瞬态条件下并未得到充分验证,另一方面,使用昂贵的计算流体动力学工具(对于大型流体而言始终是不合理的)尺度的宏观现象。在当前框架中,使用“热-液压系统CATHARE”代码的三维多孔介质功能模拟了在Rossendorf冷却剂混合测试设施中进行的“非恒定冷却剂混合实验”。当前的研究可以突出这些代码的当前功能及其对再现非对称瞬态自然循环混合条件下发生的主要现象的适用性。

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