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Dynamical and thermal performance of molten salt pipe during filling process

机译:填充过程中熔盐管的动态和热性能

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摘要

The dynamical and thermal performances of molten salt pipe during the filling process are numerically investigated using volume of fluid model. The whole filling process has three main stages, or the developing stage with the interface width quickly increasing, the fluctuating stage with the interface width fluctuating and the fully developed stage with stable interface, and then associated interface structures, flow and temperature fields are described in detail. Before the molten salt flows through a certain position, the fluid temperature will jump within a short time, while the wall temperature only linearly increases after that. The heat transport during the filling process is mainly dependent upon the pipe wall and molten salt flow, while natural convection outside can almost be ignored. The dimensionless interface temperature has similar evolution process under different surrounding temperatures, but it will apparently increase with the flow velocity rising. In addition, the pipe will be blocked when the interface temperature drops below the freezing point, so a model of penetration distance is derived by correlating the interface temperature evolution process, and it has a good agreement with available experimental results.
机译:利用流体体积模型对熔融盐管在填充过程中的动态和热性能进行了数值研究。整个填充过程分为三个主要阶段,即界面宽度快速增长的发展阶段,界面宽度波动的波动阶段和界面稳定的充分发展阶段,然后描述了相关的界面结构,流场和温度场。详情。在熔融盐流过某个位置之前,流体温度将在短时间内跳跃,而之后壁温仅线性上升。填充过程中的热传递主要取决于管壁和熔融盐的流量,而外部自然对流几乎可以忽略。无因次界面温度在不同的环境温度下具有相似的演化过程,但随着流速的升高,界面温度显然会升高。另外,当界面温度降至冰点以下时,管道将被阻塞,因此通过关联界面温度的演变过程可以得出渗透距离的模型,并且与现有的实验结果具有很好的一致性。

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