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Electro-magnetic flow coupling for liquid metal blanket applications

机译:液态金属毡应用中的电磁流耦合

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In the framework of the development of liquid metal blankets to be tested in ITER and for applications in a DEMOnstration reactor, magnetohydrodynamic (MHD) interactions between the electrically conducting lead lithium alloy and intense magnetic fields have been investigated numerically. In all proposed liquid metal blanket designs the presence of leakage currents that flow from one fluid domain into the adjacent one crossing electrically conducting walls has to be taken into account since it influences significantly the flow partitioning in parallel ducts. The way in which electrically coupled flows affect each other depends on orientation of common walls with respect to the magnetic field, on flow direction in adjacent channels and on the path of leakage currents. The present paper aims at providing an overview of main phenomena that occur in multiple channels where flows are coupled by an exchange of electric currents. The understanding of those basic flows is required for the study of complex 3D coupling conditions. (C) 2016 EURATOM. Published by Elsevier B.V. All rights reserved.
机译:在要在ITER中测试的液态金属毡的开发框架中以及在DEMOnstration反应器中的应用中,已经对导电铅锂合金与强磁场之间的磁流体动力学(MHD)相互作用进行了数值研究。在所有提出的液态金属毯设计中,必须考虑到存在泄漏电流的问题,该泄漏电流从一个流体域流入相邻的一个相交的导电壁,因为它会显着影响平行管道中的流量分配。电耦合流彼此影响的方式取决于公共壁相对于磁场的方向,相邻通道中的流向以及泄漏电流的路径。本文旨在概述发生在多个通道中的主要现象,在这些通道中,电流通过电流交换而耦合。研究复杂的3D耦合条件需要了解这些基本流程。 (C)2016年欧元。由Elsevier B.V.发布。保留所有权利。

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