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Influences of Lorentz force on the hydrofoil lift 被引量:3

Influences of Lorentz force on the hydrofoil lift
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摘要 In this paper, Lorentz forces are proved to be able to suppress separation in flows over hydrofoils. Furthermore, a differential equation of pressure distributions on the hydrofoil surface is derived, from which it is found that BVF (boundary vortex flux) σ is a suitable criterion for describing the lift coefficient variations during the electromagnetic control process. According to our numerical results, the periodic variations of lift for a hydrofoil at an attack angle of 17 ° are analyzed and its inherent mechanism is discussed in detail with the concept of BVE On the other hand, the effects of Lorentz force on the hydrofoil's lift are investigated both experimentally and numerically for different magnitudes and locations. In this paper, Lorentz forces are proved to be able to suppress separation in flows over hydrofoils. Furthermore, a differential equation of pressure distributions on the hydrofoil surface is derived, from which it is found that BVF (boundary vortex flux) σ is a suitable criterion for describing the lift coefficient variations during the electromagnetic control process. According to our numerical results, the periodic variations of lift for a hydrofoil at an attack angle of 17 ° are analyzed and its inherent mechanism is discussed in detail with the concept of BVE On the other hand, the effects of Lorentz force on the hydrofoil's lift are investigated both experimentally and numerically for different magnitudes and locations.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2009年第5期589-595,共7页 力学学报(英文版)
关键词 Lorentz force Lift coefficient HYDROFOIL Lorentz force Lift coefficient Hydrofoil
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  • 1马侠,肖林奎,蒋金贵,张绵纯.用N-S方程求解柔壁翼型绕流[J].航空动力学报,1993,8(1):11-14. 被引量:2
  • 2PRANDTL L. Uber Flussigkeitsbewegung bei sehr kleiner Reibung[A]. the Third Congress of Mathematicians at Heidelberg[C]. 1904: 484-491.
  • 3GAILITIS A, LIELAUSIS O. On a possibility to reduce the hydrodynamical resistance of a plate in an electrolyte[J]. Applied Magnetohydrodynamics, 1961, 12: 143-146.
  • 4NOSENCHUCK D M. Boundary layer control using the lorentz force[A]. Near-wall turbulent flows, proceedings of the international conference, Tempe AZ, Netherlands[C]. 1993: 689-698.
  • 5KRAL L D, DONOVAN J F. Numerical simulation of turbulence control using electromagnetic forces [A]. ASME fluids Engineering Conference July, San Diego, California[C]. 1996: 319-329.
  • 6PANG J G, CHOI K S. Turbulent drag reduction by Lorentz force oscillation[J]. Physics of Fluids, 2004, 16(5) : 35-39.
  • 7KIM S J, LEE C M. Investigation of the flow around a circular cylinder under the influence of an electromagnetic force[J]. Experiments in Fluids, 2000, 28: 252- 260.
  • 8WEIER T, GERBETH G, MUTSCHKE G, et al. Control of flow separation using Electromagnetic Forces[J]. Flow, Turbulence and Combustion, 2003, 71: 5-17.
  • 9WEIER T, GERBETH G. Control of separated flows by time periodic Lorentz forces[J]. European Journal of Mechanics B/Fluids, 2004, 23: 835-849.
  • 10MUSTCHKE G, GERBETH G, ALBRECHT T, et al. Separation control, at hydrofoils using lorentz forces [J]. European Journal of Mechanics B/Fluids, 2006, 25: 137-152.

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