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Characterization of key magnetohydrodynamic phenomena in PbLi flows for the US DCLL blanket

机译:美国DCLL橡皮布PbLi流动中关键磁流体动力学现象的表征

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The dual-coolant lead-lithium (DCLL) blanket concept is considered in the US for testing in ITER and as a candidate for using in DEMO reactor. In this blanket, the eutectic alloy lead-lithium circulates slowly as a coolant and breeder in the presence of a strong plasma-confining magnetic field, experiencing magnetohydrodynamic (MHD) effects. This paper overviews the ongoing studies for the MHD flows in the US DCLL blanket, focusing mostly on the poloidal flows where most of the volumetric heating is deposited and the MHD effects are therefore of primary importance. The paper introduces qualitative description of MHD flows in the blanket along with mathematical models and numerical and analytical results to address such phenomena as the near-wall jet formation, quasi-two-dimensional MHD turbulence, and buoyant flows. Special consideration is given to the buoyancy effects in the buoyancy-opposed flows, where superposition of forced and buoyant flows may lead to locally reverse or recirculation flows. The present analysis suggests that such flows are possible both in ITER and DEMO scenarios. We also discuss conditions when the poloidal flows in the blanket turn to be turbulent.
机译:双冷却剂铅锂(DCLL)橡皮布概念在美国被认为可以在ITER中进行测试,也可以在DEMO反应堆中使用。在该毯子中,共晶合金铅锂在强等离子体约束磁场的作用下,作为冷却剂和增殖剂缓慢循环,并经历磁流体动力学(MHD)效应。本文概述了正在进行的有关美国DCLL覆盖层中MHD流动的研究,主要集中在沉积了大部分体积加热的胶体流动,因此MHD效应至关重要。本文介绍了毯中MHD流动的定性描述,数学模型以及数值和分析结果,以解决近壁射流形成,准二维MHD湍流和浮力流动等现象。特别要考虑浮力相对流中的浮力效应,在这种情况下,强迫流和浮力流的叠加可能会导致局部倒流或再循环流。目前的分析表明,在国际热核实验堆(ITER)和模拟试验(DEMO)情景中,这种流动都是可能的。我们还讨论了覆盖层中的极向性流动变成湍流时的条件。

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