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Assessment of different turbulence models on the large scale internal heated water pool natural convection simulation

机译:大型内部热水池自然对流模拟中不同湍流模型的评估

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In vessel retention (IVR) is treated as one of the strategies in the severe accident management aspect for the safety of nuclear reactor. The investigation of internal heated melt pool natural convection behavior is important for providing the reference for the IVR strategy. Various researchers conducted internal heated melt pool simulation with focusing on the different aspects and conditions. Based on the previous research, the large scale internal heated melt pool flow behavior located in the turbulence flow region and turbulence models used could affect the simulation result of the internal heated melt pool. Therefore, it is important to conduct the simulation of comprehensive assessment of different turbulence models on the melt pool simulation. In this work, the simulation of large scale internal heated water pool, which is one of the COPRA (COrium Pool Research Apparatus) water tests, is conducted by using ANSYS FLUENT 18.2. The large scale internal heated water pool transient behavior is investigated. The effect of various turbulence models on the internal heated water pool simulation is investigated. This work could provide better understanding of temperature distribution and velocity distribution of large scale internal heated water pool natural convection behavior from the numerical aspect. Based on the current simulation, Realizable k-epsilon turbulence model with the consideration of full buoyancy effects, RNG k epsilon turbulence model with the consideration of full buoyancy effects, DES (Spalart-Allmaras) turbulence model and DES (SST k-omega) turbulence model are recommended for the simulation of large scale internal heated water pool. This work could bring the benefits for the further study on the numerical investigation of large scale internal heated water pool natural convection behavior. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对于核反应堆的安全,在严重事故管理方面,船上滞留(IVR)被视为策略之一。内部加热熔池自然对流行为的研究对于为IVR策略提供参考非常重要。许多研究人员针对不同方面和条件进行了内部加热熔池模拟。根据先前的研究,位于湍流区域的大规模内部加热熔池流动行为和所使用的湍流模型可能会影响内部加热熔池的模拟结果。因此,在熔池模拟中进行不同湍流模型的综合评估模拟非常重要。在这项工作中,使用ANSYS FLUENT 18.2进行了大型内部热水池的模拟,这是COPRA(CO池研究设备)水测试之一。研究了大型内部热水池的瞬态行为。研究了各种湍流模型对内部热水池模拟的影响。这项工作可以从数值方面更好地理解大型内部热水池自然对流行为的温度分布和速度分布。基于当前仿真,考虑了全浮力效果的可实现k-ε湍流模型,考虑了全浮力效果的RNG k-epsilon湍流模型,DES(Spalart-Allmaras)湍流模型和DES(SST k-omega)湍流建议使用此模型来模拟大型内部热水池。这项工作可以为进一步研究大型内部热水池自然对流行为的数值模拟带来好处。 (C)2019 Elsevier Ltd.保留所有权利。

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