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Validation of Fuel-Coolant Interaction Model for Severe Accident Simulations

机译:严重事故模拟中燃油冷却剂相互作用模型的验证

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A specialized module VAPEX-M has been developed and implemented as a part of an integral code, SOCRAT, to enable the modeling of fuel-coolant interactions (FCIs) during severe accidents. The mathematical model and correlations for the main physical processes are described. Results of computational analysis of three experimental series reported in the literature are presented. The calculations were carried out by the combined SOCRAT/VAPEX code and were aimed at validation of the predictive capabilities of the code. The experiments chosen cover a wide range of physical parameters, which enables different aspects of the code to be verified, that is, drag correlations (MAGICO-2000), evaporation rate (QUEOS), fuel fragmentation, and interaction with the coolant in all complexity (FARO). Generally, reasonable agreement between the measured data and calculated results was obtained, which allows one to use the combined SOCRAT/VAPEX code for severe accidents analysis.
机译:作为整体代码SOCRAT的一部分,已经开发并实施了专用模块VAPEX-M,以对严重事故中的燃料冷却剂相互作用(FCI)进行建模。描述了主要物理过程的数学模型和相关性。给出了文献报道的三个实验系列的计算分析结果。计算是通过组合的SOCRAT / VAPEX代码进行的,旨在验证代码的预测能力。选择的实验涵盖了广泛的物理参数,可以验证代码的不同方面,即阻力相关性(MAGICO-2000),蒸发速率(QUEOS),燃料碎裂以及与冷却剂的相互作用,十分复杂。 (FARO)。通常,在测量数据和计算结果之间会取得合理的一致性,这使人们可以将SOCRAT / VAPEX组合代码用于严重事故分析。

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