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首页> 外文期刊>International journal of hydrogen energy >MHD numerical analyses of hydrodynamically developing laminar liquid lithium duct flow
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MHD numerical analyses of hydrodynamically developing laminar liquid lithium duct flow

机译:层流液体锂通道流体动力学发展的MHD数值分析。

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Magnetic effects on steady state laminar liquid lithium duct flow were studied at hydrodynamically developing flow region. Studied duct model was constructed with dimensions are (15.7 x 5 x 150 mm). Model side walls were estimated conductive and top-bottom walls were defined insulated. Magnetic field applied with values are as B = 0 T, B = 0.05 T, B = 0.1 T and B = 0.15 T. Magnetic field effect was maximized by normally applying it on the flow stream. Hydrodynamic parameters are velocity, pressure, viscosity and density were numerically studied by ANSYS Fluent software MHD module. It is concluded that increase of magnetic field increased the local pressure but also decreased local velocity, density and dynamic viscosity. Obtained results compared with studies in literature and supported. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在流体动力学发展的流动区域研究了对稳态层状液态锂导管流动的磁效应。研究的风管模型的尺寸为(15.7 x 5 x 150 mm)。模型侧壁估计为导电的,上下壁定义为绝缘的。施加值的磁场为B = 0 T,B = 0.05 T,B = 0.1 T和B = 0.15T。通过正常地将其施加到流中,可以最大化磁场效果。流体动力学参数是速度,压力,粘度和密度,并通过ANSYS Fluent软件MHD模块进行了数值研究。结论是,磁场的增加增加了局部压力,但同时也降低了局部速度,密度和动态粘度。与文献研究相比取得了成果并得到了支持。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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