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首页> 外文期刊>Plasma Science & Technology >MHD Stability Analysis and Flow Controls of Liquid Metal Free Surface Film Flows as Fusion Reactor PFCs
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MHD Stability Analysis and Flow Controls of Liquid Metal Free Surface Film Flows as Fusion Reactor PFCs

机译:聚变反应堆PFC的液态金属自由表面膜流的MHD稳定性分析和流控制

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摘要

Numerical and experimental investigation results on the magnetohydrodynamics (MHD) film flows along flat and curved bottom surfaces are summarized in this study. A simplified modeling has been developed to study the liquid metal MHD film state, which has been validated by the existing experimental results. Numerical results on how the inlet velocity (V), the chute width (W) and the inlet film thickness (d(0)) affect the MHD film flow state are obtained. MHD stability analysis results are also provided in this study. The results show that strong magnetic fields make the stable V decrease several times compared to the case with no magnetic field, especially small radial magnetic fields (B-n) will have a significant impact on the MHD film flow state. Based on the above numerical and MHD stability analysis results flow control methods are proposed for flat and curved MHD film flows. For curved film flow we firstly proposed a new multi-layers MHD film flow system with a solid metal mesh to get the stable MHD film flows along the curved bottom surface. Experiments on flat and curved MHD film flows are also carried out and some firstly observed results are achieved.
机译:这项研究总结了沿平面和弯曲底表面的磁流体动力学(MHD)膜流的数值和实验研究结果。已开发出简化模型来研究液态金属MHD膜的状态,该模型已通过现有实验结果验证。获得了关于入口速度(V),滑槽宽度(W)和入口膜厚度(d(0))如何影响MHD膜流动状态的数值结果。本研究还提供了MHD稳定性分析结果。结果表明,与没有磁场的情况相比,强磁场使稳定的V降低了几倍,特别是小的径向磁场(B-n)将对MHD膜的流动状态产生重大影响。基于以上数值分析和MHD稳定性分析结果,提出了平流和弯流MHD膜流的流控制方法。对于弯曲的膜流,我们首先提出了一种具有固体金属网的新型多层MHD膜流系统,以沿弯曲的底面获得稳定的MHD膜流。还进行了平坦和弯曲MHD膜流的实验,并获得了一些首次观察到的结果。

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