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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Localized micro-discharges group dielectric barrier discharge vortex generators: Disturbances source for active transition control
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Localized micro-discharges group dielectric barrier discharge vortex generators: Disturbances source for active transition control

机译:局部微放电群介质阻挡放电涡流发生器:用于主动过渡控制的扰动源

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摘要

In this study, a new type of dielectric barrier discharge plasma actuator for boundary layer control, based on the controllable inhomogeneity of the discharge along the exposed electrode, is developed. The structure of the flow, generated by the isolated groups of microdischarges, was studied in detail in quiescent conditions. In the two-dimensional laminar boundary layer, the flow structure downstream of the actuator was studied for various sweep angles of the electrode. The equivalent model of the actuator, including the force and heat sources, is formulated based on the analysis of the flow created by the actuator in quiescent conditions. The model is verified by simulating the flow downstream of the actuator in two-dimensional boundary layer. As a final step, the applicability of the localized microdischarge group actuator for active transition control on a swept wing was studied. The generation of a cross-flow mode by the actuator was demonstrated in numerical simulation for low-velocity experiment conditions.
机译:在这项研究中,基于沿暴露电极的可控放电不均匀性,开发了一种用于边界层控制的新型介质阻挡放电等离子体致动器。在静态条件下详细研究了由孤立的微放电组产生的流动结构。在二维层流边界层中,针对电极的各种扫掠角,研究了促动器下游的流动结构。基于静态条件下执行器产生的流量分析,制定了执行器的等效模型,包括力和热源。通过在二维边界层中模拟执行器下游的流量来验证该模型。作为最后一步,研究了局部微放电组致动器在后掠机翼上进行主动过渡控制的适用性。在低速实验条件下的数值模拟中演示了执行器产生的错流模式。

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