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Boundary Layer Flow Control with a One Atmosphere Uniform Glow Discharge Surface Plasma

机译:具有一个大气均匀辉光放电表面等离子体的边界层流控制

摘要

Low speed wind tunnel data have been acquired for planar panels covered by a uniform, glow-discharge surface plasma in atmospheric pressure air known as the One Atmosphere Uniform Glow Discharge Plasma (OAUGDP). Streamwise and spanwise arrays of flush, plasma-generating surface electrodes have been studied in laminar, transitional, and fully turbulent boundary layer flow. Plasma between symmetric streamwise electrode strips caused large increases in panel drag, whereas asymmetric spanwise electrode configurations produced a significant thrust. Smoke wire flow visualization and mean velocity diagnostics show the primary cause of the phenomena to be a combination of mass transport and vortical structures induced by strong paraelectric ElectroHydroDynamic (EHD) body forces on the flow.
机译:已经获得了在大气压力空气中被均匀的辉光放电表面等离子所覆盖的平板的低速风洞数据,称为“大气压均匀辉光放电等离子”(OAUGDP)。在层流,过渡和完全湍流的边界层流中研究了齐平的,产生等离子体的表面电极的流向和展向阵列。对称的流向电极条之间的等离子体会导致面板阻力的大幅增加,而不对称的展向电极结构会产生很大的推力。烟丝流的可视化和平均速度诊断表明,现象的主要原因是质量流和强顺电电动液压(EHD)体力对流产生的涡旋结构的结合。

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