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电磁激活板的宽度对圆柱绕流控制的影响 被引量:7

CYLINDER WAKE FLOW AFFECTED BY WIDTH OF ELECTRO-MAGNETIC ACTUATOR
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摘要 电磁力可以改变流体边界层的结构,是控制流体运动的主动控制方法之一。基于电磁场和流体的基本方程,对置于弱电介质中的圆柱电磁激活板周围产生的Lorentz力及其对圆柱绕流的控制进行了数值模拟,着重讨论了电磁激活板的宽度对其周围的电磁场、产生的Lorentz力、流场的控制和涡量变化的影响。电磁场包覆范围为流体分离点至其后部,当N值较小时,分离点后移,但不能够完全抑制流体的分离,极板越宽对尾涡的抑制效果越好;随着N值的增大,由于极板窄的表面涡量大,所以可以首先达到完全抑制流体分离的控制效果;当N值较大时,无论极板宽窄,都可以达到完全抑制流体分离的效果。 Since the structure of flow boundary layer can be modified by the electro-magnetic body forces, one of active control methods might be developed by adjusting the forces so as to control the layer. Based on the equations of magnetic and electric fields and the formula of the flow, the distribution of Lorentz force and its control effect on cylinder wake flow have been investigated numerically in the electro-magnetic fields formed by a moving low-conducting electrolyte. The influences of actuator width to the distribution of electro-magnetic fields, Lorentz force, flow field are simulated and discussed. The electro-magnetic fields are covered from the separation points to the end of cylinder. While the interaction parameter N is small, the separation points on the cylinder surface will be moved rearward, but it can not be suppressed completely. In this case, our simulated results show the better control effect. With the increase of N reaching to the critical value, since the narrow actuator has a large surface vortex, its suppressing effect for flow separation is prominent. When Nbecomes large, the separation points can be suppressed completely, and the suppression effect is independent of the actuator width.
出处 《工程力学》 EI CSCD 北大核心 2007年第12期164-168,共5页 Engineering Mechanics
关键词 电磁流体力学 圆柱绕流 LORENTZ力 流体控制 边界层 EMHD cylinder wake Lorentz force flow control boundary layer
作者简介 张辉(1981-),男,江苏人,博士生,从事工程力学研究(E-mail:zhanghui1902@hotmail.com); 范宝春(1945),男,江苏人,教授,博导,从事工程力学、爆炸力学和安全工程研究(E-mail:bcfan@mail.njust.edu.cn) 陈志华(1967),男,湖南人,教授,双博士,从事工程力学和爆炸力学研究(zhchen@mail.njust.edu.cn).
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  • 1Gailitis A, Lielausis O. On a possibility to reduce the hydrodynamical resistance of a plate in an electrolyte. Applied Magnetohydrodynamics, 1961, 12:143~146
  • 2Henoch C, Stace J. Experimental investigation of a salt water turbulent boundary larger modified by an applied streamwise magnetohydrodynamic body force. Phys Fluid,1995, 7(6): 1371~1382
  • 3Weier T, Gerbeth G, Posdziedch O, et al. Experiments on cylinder wake stabilization in an electrolyte solution by means of electromagnetic forces localized on the cylinder surface. Experimental Thermal and Fluid Science, 1998,16:84~91
  • 4Kim Seong-jae,Lee Choung-mook. Investigation of the flow around a circular cylinder under the influence of an electromagnetic force. Experiments in fluids, 2000, 28:252~260
  • 5[1]Gailitis A, Lielausis O. On a possibility to reduce the hydrodynamical resistance of a plate in an electrolyte.Applied Magnetohydrodynamics, 1961, 12:143~146
  • 6[2]Meng JCS. Major engineering physics for optimization of the seawater superconducting electromagnetic thruster.In: Branover H, Unger Y Eds. Progress in Astronautics and Aeronautics, USA: Washington DC, 1990, 148:183~208
  • 7[3]Motora S, Takezawa S. Development of MHD ship propulsion and results of sea traials of an experimental ship.In: Second International Conference on Energy Transfer in MHD Flow, France: Anssois, 1994.501~510
  • 8[4]Mutschke G, Satrov V, Gerbeth G. Cylinder wake control by magnetic field in liquid metal flows. Experimental Thermal and Fluid Science, 1998, 16:92~99
  • 9[5]Henoch C, Stace J. Experimental investigation of a salt water turbulent boundary lager modified by an applied streamwise magnetohydrodynamic body force. Phys Fluid, 1995, 7(6): 1371~1382
  • 10[6]Crawford CH, Kamiadakis GE. Rynolds stress analysis of EMHD-controlled wall turbulence. Part I streamwise forcing. Phys Fluid, 1997, 9(3): 788~806

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