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Numerical study of 3D MHD flow of Pb-Li liquid metal in a rectangular U-bend

机译:矩形U形弯件PB-LI液态金属3D MHD流动的数值研究

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摘要

The eutectic Pb-Li alloy has been chosen as a candidate material for the liquid breeder blanket, as it offers a unique combination of tritium breeding neutron absorbing and neutron multiplying capabilities. In fusion blanket, molten Pb-Li moves under plasma confining toroidal magnetic field, producing an induced electric current inside the liquid metal due to the interaction of the moving fluid with the magnetic field. The coupling of induced electric current and magnetic field generates a Lorentz force opposite to the flow direction, and this in turn, modifies the flow profile. The experimental and numerical flow studies of liquid Pb-Li under transverse magnetic field are of great importance, as it directly impacts the blanket performance. A liquid Lead Lithium MHD loop is being developed at Institute for Plasma Research (IPR), Gujarat, India for isothermal and thermofluid MHD studies in blanket relevant flow geometries such as sudden expansion/contraction, coupled channels and multiple bends. A test mockup with rectangular flow cross-section and having bends perpendicular to the magnetic field has been fabricated. A 3D MHD flow analysis has been performed numerically for the test mock up at a magnetic field of 1.4T (Hartmann number of order of 1500). The fabrication details of test mockup and the results of the Pb-Li flow analysis are presented and discussed. The flow field and pressure distribution in the presence and absence of the magnetic field are also compared. The existence of recirculation zones and their redistribution in the presence of magnetic field are discussed.
机译:已经选择了共晶PB-Li合金作为液体种植毯的候选材料,因为它提供了氚繁殖中子吸收和中子倍增能力的独特组合。在融合毯中,熔融PB-Li在等离子体限制环形磁场下移动,由于移动流体与磁场的相互作用,在液态金属内产生感应电流。感应电流和磁场的耦合产生与流动方向相对的洛伦兹力,并且反过来改变流动曲线。横向磁场下液体PB-Li的实验性和数值流动研究非常重要,因为它直接影响毯子性能。液体铅锂MHD循环正在印度等离子研究所(IPR)研究所开发,用于印度的等温和Thermof流体MHD研究,包括突然的膨胀/收缩,耦合通道和多个弯曲。已经制造了具有矩形流动横截面的测试样机并具有垂直于磁场的弯曲。在数值上进行了3D MHD流量分析,用于在1.4T的磁场下进行测试模拟(Hartmann的1500号阶数)。呈现和讨论了测试样机的制造细节和PB-LI流分析的结果。还比较了磁场存在和不存在的流场和压力分布。讨论了再循环区域及其在磁场存在下的再分布。

著录项

  • 来源
    《Fusion Engineering and Design》 |2021年第10期|112583.1-112583.10|共10页
  • 作者单位

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

    Inst Plasma Res Near Indira Bridge Gandhinagar 382428 Gujarat India;

  • 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

    MHD flow; U-bend; Rectangular duct; Pb-Li liquid metal; CFD;

    机译:MHD流动;U形弯;矩形管;PB-LI液态金属;CFD;

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