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Thermofluid modeling and experiments for free surface flows of low-conductivity fluid in fusion systems

机译:聚变系统中低电导率流体自由表面流动的热流体建模和实验

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The paper summarizes results of experimental and theoretical studies related to the flow of liquids with a free surface and poor electrical and thermal conductivity, such as molten salts, under conditions relevant to fusion energy systems. These results have been obtained over last several years when developing the liquid wall concept as a part of the APEX project [M.A. Abdou, The APEX TEAM, On the exploration of innovative concepts for fusion chamber technology, Fusion Eng. Des. 54 (2001) 181-247]. As a theoretical tool a modified K-ε model of turbulence coupled with the Navier-Stokes equations written in the thin-shear-layer approximation is used for studying wavy, turbulent flows in a spanwise magnetic field. The experimental part covers current results for supercritical flows in regimes transitional from "weak" to "strong" turbulence, which are expected to occur in the reference liquid wall flows. The paper also describes on-going work on novel schemes of heat transfer promotion and current directions for direct numerical simulation.
机译:本文总结了在与聚变能系统有关的条件下,与具有自由表面,导电性和导热性较差的液体(例如熔融盐)的流动有关的实验和理论研究的结果。在过去几年中,将液壁概念作为APEX项目的一部分[M.A. APEX团队Abdou,关于融合室技术创新概念的探索,Fusion Eng。德斯54(2001)181-247]。作为一种理论工具,将修改后的湍流K-ε模型与以薄剪切层近似形式编写的Navier-Stokes方程相结合,用于研究翼展方向磁场中的波浪状湍流。实验部分涵盖了从“弱”到“强”湍流过渡状态下超临界流的当前结果,这些结果有望在参考液壁流中发生。本文还描述了正在进行的有关传热促进新方案和直接数值模拟的电流方向的工作。

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