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On thermal axisymmetric liquid-metal divertors

机译:在热轴对称液态金属侧端子上

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Motivated by liquid-metal divertor concepts, we consider a detailed model of a thin liquid-metal film flowing down a toroidally-symmetric solid substrate, driven by gravity as well as thermal and mechanical interaction with the SOL. In the relevant physical limit where the film is thin relative to the divertor extent, and the induced magnetic field is weaker than the applied field, the governing equations may be approximated asymptotically to yield tractable reduced-order dynamics. The analysis incorporates gravitational, thermocapillary and thermoelectric forces, and reveals several nontrivial findings. Firstly, we find that the influence on the liquid metal flow of the toroidal component of the applied field is negligible compared to that of the poloidal component. This has important ramifications for the behaviour of the liquid metal. Secondly, we identify a "spiral-type flow" due to a flow component in the toroidal direction. This flow has been previously reported in the literature in the isothermal case when using extreme parameters. Our analysis explains why these extreme parameter choices were required to observe the isothermal flow, and reveals that, for typical parameters in the thermal case, the flow becomes significant due to thermoelectric forces. Thirdly, we deduce full dimensional velocity scalings. Finally, we present a case study that employs the reduced-order model to explore the effects of sweeping the plasma strike point up and down the divertor. We simulate fully transient dynamics within the divertor and demonstrate how, in some regions of parameter space, the sweeping might promote dry-out or droplet ejection of the liquid metal. We discuss how the case study can inform both divertor material choice as well as tokamak operating parameters.
机译:通过液态金属偏移器概念的动机,我们考虑流动沿重环状固体基材的薄液金属膜的详细模型,其由重力驱动,以及与溶胶的热和机械相互作用。在膜相对于转矩范围薄膜薄的相关物理极限中,并且诱导磁场比施加的场较弱,控制方程可以近似渐近地呈现出易递减的阶数动态。该分析包括重力,热毛细管和热电力,并揭示了几种非增长的发现。首先,我们发现,与面针组分相比,施加的场的环形部件的液态金属流量的影响可忽略不计。这对液态金属的行为具有重要的影响。其次,我们由于环形方向上的流量分量而识别“螺旋式流动”。在使用极端参数时,此前已经报道了在等温案例中的文献中。我们的分析解释了为什么需要这些极端参数选择来观察等温流,并揭示了在热壳中的典型参数,由于热电力而变得显着。第三,我们推导了全维速缩放。最后,我们展示了一个案例研究,采用了阶数模型来探讨扫描等离子击球的效果上下偏移器。我们模拟了转轴内的完全瞬态动态,并在参数空间的某些区域中展示如何,扫描可能促进液态金属的干出或液滴喷射。我们讨论案例研究如何通知偏转器材料选择以及Tokamak操作参数。

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