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NUMERICAL INVESTIGATION OF THE SPREADING AND HEAT TRANSFER CHARACTERISTICS OF EX-VESSEL CORE MELT

机译:容器前熔体扩散和传热特性的数值研究

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The flow and heat transfer characteristics of the ex-vessel core melt (corium) were investigated using a commercial CFD code along with the experimental data on the spreading of corium available in the literature (VULCANO VE-U7 test). In the numerical simulation of the unsteady two-phase flow, the volume-of-fluid model was applied for the spreading and interfacial surface formation of corium with the surrounding air. The effects of the key parameters were evaluated for the corium spreading, including the radiation, decay heat, temperature-dependent viscosity and initial temperature of corium. The results showed a reasonable trend of corium progression influenced by the changes in the radiation, decay heat, temperature-dependent viscosity and initial temperature of corium. The modeling of the viscosity appropriate for corium and the radiative heat transfer was critical, since the front progression and temperature profiles were strongly dependent on the models. Further development is required for the code to consider the formation of crust on the surfaces of corium and the interaction with the substrate.
机译:使用商业CFD代码以及有关文献(VULCANO VE-U7测试)中可得的有关钙扩散的实验数据,研究了前容器芯熔体(皮质)的流动和传热特性。在非稳态两相流的数值模拟中,将流体体积模型应用于与周围空气的扩散和界面表面形成。评估了关键参数对真皮扩散的影响,包括辐射,衰变热,温度依赖性粘度和真皮的初始温度。结果表明,受辐射,衰变热,温度依赖性粘度和皮质初始温度变化的影响,皮质皮质的发展趋势是合理的。适用于皮质和辐射热传递的粘度建模非常关键,因为前部进展和温度曲线在很大程度上取决于模型。该规范需要进一步开发,以考虑在皮质表面上形成硬皮以及与基材之间的相互作用。

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