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Numerical investigation of a jet and vortex actuator in a cross flow boundary layer

机译:横流边界层中射流和涡流致动器的数值研究

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摘要

The performance of a zero-net-mass-flux Jet and Vortex Actuator (JaVA) was numerically investigated in a two-dimensional-cross-flow flat-plate laminar boundary layer. The JaVA is an active flow control device that can be used for flow separation control and thus can delay/prevent boundary layer separation. In this study, an unsteady, incompressible flow solver has been used to study the flow fields generated by a JaVA in a water channel. Detailed quantitative information about the performance of the JaVA on a flat-plate boundary layer is obtained. JaVA-induced boundary-layer profiles are clearly 'fuller' at the wall and hence more resistant to flow separation. The 'positive' effects of the JaVA with different operating regimes on various boundary-layer flow characteristics such as displacement thickness, shape factor and the friction coefficient are presented in this study. Selecting the appropriate governing parameters in conjunction with cross-flow properties, the velocity profile can be tuned in a boundary layer to delay or prevent separation.
机译:在二维横流平板层流边界层中,对零净质量通量射流和涡流执行器(JaVA)的性能进行了数值研究。 JaVA是一种有源流量控制设备,可用于流分离控制,因此可以延迟/防止边界层分离。在这项研究中,非稳态,不可压缩的流量求解器已用于研究JaVA在水道中产生的流场。获得有关JaVA在平板边界层上的性能的详细定量信息。 JaVA引起的边界层轮廓在壁上显然“更饱满”,因此更能抵抗流动分离。这项研究提出了JaVA在不同的工作方式下对各种边界层流动特性(如位移厚度,形状因子和摩擦系数)的“正”效应。选择合适的控制参数并结合错流特性,可以在边界层中调整速度曲线以延迟或防止分离。

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