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Force interaction of high pressure glow discharge with fluid flow for active separation control

机译:高压辉光放电与流体流动的力相互作用,用于主动分离控制

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Radio frequency based discharges at atmospheric pressures are the focus of increased interest in aerodynamics because of the wide range of potential applications including, specifically, actuation in flows at moderate speeds. Recent literature describing promising experimental observations, especially on separation control, has spurred efforts in the development of parallel theoretical modeling to lift limitations in the current understanding of the actuation mechanism. The present effort demonstrates higher fidelity first-principle models in a multidimensional finite-element framework to predict surface discharge-induced momentum exchange. The complete problem of a dielectric barrier discharge at high pressure with axially displaced electrodes is simulated in a self-consistent manner. Model predictions for charge densities, the electric field, and gas velocity distributions are shown to mimic trends reported in the experimental literature. Results show that a residual of electrons remains deposited on the dielectric surface downstream of the exposed powered electrode for the entire duration of the cycle and causes a net electric force in the direction from the electrode to the downstream surface. For the first time, results document the mitigation process of a separation bubble formed due to flow past a flat plate inclined at 12 S angle of attack. This effort sets the basis for extending the formulation further to include polyphase power input in multidimensional settings, and to apply the simulation method to flows past common aerodynamic configurations. (c) 2006 American Institute of Physics.
机译:在大气压下基于射频的放电成为人们对空气动力学关注的焦点,因为潜在的应用范围很广,包括以中等速度驱动气流。最近的文献描述了有前途的实验观察结果,尤其是在分离控制方面的观察结果,在并行理论模型的开发中激发了人们的努力,以消除对驱动机构的当前理解的局限性。目前的工作表明,在多维有限元框架中可以预测表面放电引起的动量交换的更高保真度的第一性原理模型。以自洽的方式模拟了带有轴向位移电极的高压介质阻挡放电的完整问题。电荷密度,电场和气体速度分布的模型预测显示出可模仿实验文献中报道的趋势。结果表明,在整个循环过程中,残留的电子残留在暴露的带电电极下游的电介质表面上,并在从电极到下游表面的方向上产生净力。结果首次记录了缓解气泡的过程,该气泡是由于流经以12 S迎角倾斜的平板流过而形成的。这项工作为进一步扩展配方以包括多维设置中的多相功率输入,以及将模拟方法应用于流过常见空气动力学配置的基础奠定了基础。 (c)2006年美国物理研究所。

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