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PERFORMANCE IMPROVEMENT OF TURBOMACHINERY USING PLASMA ACTUATORS

机译:等离子体执行器对涡轮机械的性能改进

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This work deals with the computational modeling of the single dielectric barrier discharge (SDBD) plasma actuator and its applications as a flow actuator. In the literature, plasma actuators have been used especially in order to control boundary layer separation. The plasma acts as a momentum source to the boundary layer allowing it to remain attached throughout a large portion of the airfoil. The RANS simulations are performed using a CFD code in which the plasma force have been modeled as paraelectric force acting on the charged particles in the working flow Using this numerical model, different cases have been simulated on NACA 0015 airfoil, depending on the direction of the force, to study the effect of the force on the flow and on the boundary layer. The best flow control solutions have been displayed when body force component in the direction straight along the flow is positive and the component normal to the flow is considered. Finally, this numerical simulation methodology has been used for the investigations on the potential of plasma actuators, to suppress the flow separation over a compressor blade. Specifically, the analysis has been focused to evaluate the increasing of the compressor performance depending on the actuator strength and position on the blade.
机译:这项工作涉及单个介电势垒放电(SDBD)等离子体致动器的计算模型及其作为流量致动器的应用。在文献中,特别是为了控制边界层分离而使用了等离子体致动器。等离子体充当边界层的动量源,使其在整个机翼的大部分区域保持附着状态。使用CFD代码执行RANS仿真,其中将等离子力建模为作用在工作流中带电粒子上的顺电力。使用此数值模型,根据NACA 0015机翼的方向,对不同情况进行了仿真。力,以研究力对流动和边界层的影响。当沿流线笔直的方向上的分力为正,并考虑垂直于流线的分力时,将显示最佳的流控制解决方案。最后,这种数值模拟方法已用于研究等离子致动器的潜力,以抑制压缩机叶片上的流动分离。具体而言,分析的重点在于根据致动器的强度和叶片上的位置来评估压缩机性能的提高。

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