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DEVELOPMENT AND VALIDATION OF A NEW DIRECT CONTAINMENT HEATING (DCH) MODEL FOR THE INTEGRAL CODE ASTEC

机译:整体代码ASTEC的新型直接容器加热(DCH)模型的开发和验证

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In this work, a new model for the European integral code ASTEC (Accident Source Term Evaluation Code) to simulate different phenomena related to Direct Containment Heating (DCH) being relevant in pressurized water reactors during severe accidents with reactor pressure vessel failure is presented. The issue of DCH has been subject of the SARNET and SARNET2 research activity as part of the European research framework program and it has been one of the objectives to establish a realistic DCH model for the ASTEC code. The model presented here is a further development of the model already implemented in the GRS containment code COCOSYS. The different phenomena which DCH is composed of, are described within an effective model, e.g. several different phenomena relevant for DCH are not treated as independent processes. To develop a model which is able to yield reliable predictions for the relevant quantities of DCH, the model was thoroughly validated against the experiments of the DISCO facility at the Karlsruhe Institute of Technology (KIT), designed for European Nuclear Power Plants. These are namely the DISCO-C experiments with cold corium simulants to focus on the hydrodynamic effects of pure melt dispersion into the containment, and the DISCO-H experiments which in addition take into account thermal effects of the dispersed high temperature melt.
机译:在这项工作中,提出了一种欧洲整体代码ASTEC(事故源术语评估代码)的新模型,该模型可以模拟在反应堆压力容器发生严重事故期间压水堆中与直接安全壳加热(DCH)有关的不同现象。作为欧洲研究框架计划的一部分,DCH的问题一直是SARNET和SARNET2研究活动的主题,它已成为为ASTEC代码建立现实的DCH模型的目标之一。这里介绍的模型是已经在GRS包含代码COCOSYS中实现的模型的进一步开发。 DCH组成的不同现象在有效模型中进行了描述,例如与DCH相关的几种不同现象不被视为独立过程。为了开发一种能够对DCH的相关数量提供可靠预测的模型,该模型已针对卡尔斯鲁厄技术学院(KIT)的DISCO设施的实验进行了充分验证,该设施是为欧洲核电厂设计的。这些是使用冷的皮质模拟剂进行的DISCO-C实验,其重点是将纯熔体分散到安全壳中的流体动力学效应,以及DISCO-H实验,该实验还考虑了分散的高温熔体的热效应。

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