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Magnetohydrodynamic effects on liquid metal film flowing along an inclined plate relating to plasma facing components

机译:沿着倾斜板流动的磁金属膜的磁力流体动力学作用涉及等离子体面向等离子体的倾斜板

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摘要

The liquid metal film plasma facing component (PFC) is considered to be one of the most promising ways to realize a PFC capbable of operating for long periods. However, in the presence of a magnetic field, magnetohydrodynamic effects appearing in the liquid metal film flow directly influence the reliability of the flowing liquid metal limiter or divertor. In the present study, we consider the influence of flow rate, transverse magnetic field, and inclination angle, and conduct experiments on a liquid metal film flowing along an inclined conducting stainless steel plate. A laser profilometer (LP) and a high-speed camera are respectively adopted to obtain the local film thickness quantitatively, and its free surface structures qualitatively. We observe the magnetohydrodynamic effects of liquid metal film flow, such as the nonmonotonic change of film thickness, the reduction of film flow velocity, and the weakening of free surface waves in the direction of magnetic lines. Moreover, the film thickness increases with an increasing flow rate, whereas it decreases with an increasing inclination angle at a constant value of the magnetic field. When plotting the relative film thickening δ_(en), and the reduction of flow velocity against the Stuart number N, we find that there is a critical N, N_(cr) ≈ 0.1, at which δ_(en) begins to increase dramatically. The δ_(en)sinβ with 1° ≤ β ≤ 5°, based on all of the experimental data, collapses into one line, which can be scaled as δ_(en)sinβ ~ N. The present experimental data and its scaling law may prove useful for estimating magnetohydrodynamic effects on liquid metal film flows when considering the design of liquid metal film PFCs. Supplementary material for this article is available online
机译:液态金属薄膜等离子体面向组件(PFC)被认为是最有希望的方法之一,实现长时间操作的PFC载体。然而,在存在磁场的情况下,出现在液态金属膜流中的磁流动动力学效应直接影响流动的液态金属限制器或偏移器的可靠性。在本研究中,我们考虑流速,横向磁场和倾斜角度的影响,以及沿着倾斜导电不锈钢板流动的液态金属膜进行实验。分别采用激光轮廓仪(LP)和高速相机定量地获得局部膜厚度,并且其自由表面结构定性地获得。我们观察液体金属膜流动的磁力流体动力学效应,例如膜厚度的非单调变化,薄膜流速的减小,以及在磁线方向上的自由表面波的弱化。此外,膜厚度随着流速的增加而增加,而在磁场的恒定值下,它随着倾斜角度的增加而降低。当绘制相对膜增厚Δ_(en)时,并且对STUART号N的流速降低,我们发现存在临界N,N_(CR)≈0.1,在该临界N,N_(CR)≈0.1,在该临界n,n_(cr)Δ_(en)开始急剧增加。基于所有实验数据,1°≤β≤5°的Δ_(en)Sinβ折叠成一条线,可以缩放为Δ_(en)Sinβ〜N.本实验数据及其扩展法可能在考虑液态金属膜PFC设计时,对液体金属膜流动估计磁力学动力学效应有用。本文的补充材料可在线获取

著录项

  • 来源
    《Nuclear fusion》 |2020年第8期|086003.1-086003.12|共12页
  • 作者单位

    State Key Laboratory for Strength and Vibration of Mechanical Structures School of Aerospace Xi'an Jiaotong University Xi'an Shaanxi 710049 China;

    School of Engineering Science University of Chinese Academy of Sciences Beijing 101408 China;

    School of Engineering Science University of Chinese Academy of Sciences Beijing 101408 China;

    State Key Laboratory for Strength and Vibration of Mechanical Structures School of Aerospace Xi'an Jiaotong University Xi'an Shaanxi 710049 China School of Engineering Science University of Chinese Academy of Sciences Beijing 101408 China;

    Institute of High Energy Physics Chinese Academy of Sciences Beijing 100049 China;

    Institute of Plasma Physics Chinese Academy of Sciences Hefei Anhui 230031 China;

    Institute of Plasma Physics Chinese Academy of Sciences Hefei Anhui 230031 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    liquid metal film; magnetohydrodynamics; plasma facing components; film thickness;

    机译:液态金属膜;磁力学动力学;等离子体面向组件;薄膜厚度;

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