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Numerical investigation of the LM MHD flows in a curved duct with an FCI with varying slot locations

机译:LM MHD在具有变化缝隙位置的FCI的弯曲管道中流动的数值研究

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This study numerically investigates the liquid-metal (LM) magnetohydrodynamic (MHD) flows in a curved duct with an FCI having three different slot locations and having no slot under a uniform magnetic field perpendicular to the duct. The flow velocity, current density, electric potential, Lorentz force, and pressure in different flow situations are presented in detail. The effects of the location of FCI slot and of the curvature radius on the flow behavior are reviewed. The flow field is examined with an introduction of the electric-field component and electro-motive component of the current, allowing us to analyze the interdependency of the flow variables. The effect of the FCI slot position on the equalization of the pressure in the inner fluid region (inside the FCI) and the gap fluid region (outer the FCI) is examined. The result shows that and the case with an FCI slot located in the neutral position yields the smallest pressure gradient in the main flow direction among the cases with an FCI slot, resulting in the smallest pressure drop. Also, in a flow situation with smaller radius of curvature with the FCI slot in the neutral position, the axial velocity near the inner (in terms of the curvature) part of a cross-section is higher than that near the outer part. (c) 2016 Elsevier B.V. All rights reserved.
机译:这项研究从数值上研究了液态金属(LM)的磁流体动力学(MHD)在具有FCI的弯曲导管中的流动,该FCI具有三个不同的缝隙位置,并且在垂直于导管的均匀磁场下没有缝隙。详细介绍了不同流动情况下的流速,电流密度,电势,洛伦兹力和压力。回顾了FCI槽的位置和曲率半径对流动行为的影响。通过介绍电流的电场分量和电动势分量来检查流场,从而使我们能够分析流量变量的相互依赖性。检查了FCI槽位置对内部流体区域(在FCI内部)和间隙流体区域(在FCI外部)中的压力均衡的影响。结果表明,在具有FCI槽的情况下,在FCI槽位于中性位置的情况下,在主流方向上产生的压力梯度最小,因此压降最小。同样,在FCI槽处于中性位置且曲率半径较小的流动情况下,横截面的内部(根据曲率)附近的轴向速度要比外部附近的轴向速度高。 (c)2016 Elsevier B.V.保留所有权利。

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