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径向拉伸面上磁流体边界层流方程的有限元数值解
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作者 胡敏 《西昌学院学报(自然科学版)》 2015年第3期8-11,14,共5页
研究流经径向拉伸面上的磁流体引起的稳定的二维边界层流的剪切力,利用一个等价变换将磁流体边界层流控制方程转化成与之等价的奇异积分方程,再利用Galerkin有限元方法将其转化成非线性方程组,最后利用Newton迭代法求解该非线性方程组... 研究流经径向拉伸面上的磁流体引起的稳定的二维边界层流的剪切力,利用一个等价变换将磁流体边界层流控制方程转化成与之等价的奇异积分方程,再利用Galerkin有限元方法将其转化成非线性方程组,最后利用Newton迭代法求解该非线性方程组的数值解,从而获得参数M取不同数值时该问题中流体剪切力的相应数值结果,并将该数值结果与前人的结果作比较。结果显示,该数值结果与前人结论基本一致,这说明Galerkin有限元方法也是一种解决磁流体边界层流的好方法。 展开更多
关键词 径向拉伸面 磁流体边界层流 GALERKIN有限元法 NEWTON迭代法 数值解
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Hypersonic flow control of shock wave/turbulent boundary layer interactions using magnetohydrodynamic plasma actuators 被引量:8
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作者 Hao JIANG Jun LIU +2 位作者 Shi-chao LUO Jun-yuan WANG Wei HUANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第9期745-760,共16页
The effect of magnetohydrodynamic(MHD)plasma actuators on the control of hypersonic shock wave/turbulent boundary layer interactions is investigated here using Reynolds-averaged Navier-Stokes calculations with low mag... The effect of magnetohydrodynamic(MHD)plasma actuators on the control of hypersonic shock wave/turbulent boundary layer interactions is investigated here using Reynolds-averaged Navier-Stokes calculations with low magnetic Reynolds number approximation.A Mach 5 oblique shock/turbulent boundary layer interaction was adopted as the basic configuration in this numerical study in order to assess the effects of flow control using different combinations of magnetic field and plasma.Results show that just the thermal effect of plasma under experimental actuator parameters has no significant impact on the flow field and can therefore be neglected.On the basis of the relative position of control area and separation point,MHD control can be divided into four types and so effects and mechanisms might be different.Amongst these,D-type control leads to the largest reduction in separation length using magnetically-accelerated plasma inside an isobaric dead-air region.A novel parameter for predicting the shock wave/turbulent boundary layer interaction control based on Lorentz force acceleration is then proposed and the controllability of MHD plasma actuators under different MHD interaction parameters is studied.The results of this study will be insightful for the further design of MHD control in hypersonic vehicle inlets. 展开更多
关键词 HYPERSONIC Shock wave/turbulent boundary layer interaction Magnetohydrodynamic(MHD) Flow control
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