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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Single dielectric barrier discharge plasma enhanced aerodynamics: physics, modeling and applications
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Single dielectric barrier discharge plasma enhanced aerodynamics: physics, modeling and applications

机译:单电介质阻挡层放电等离子体增强了空气动力学:物理,建模和应用

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The term "plasma actuator" has been a part of the fluid dynamics flow control vernacular for more than a decade. A particular type of plasma actuator that has gained wide use is based on a single dielectric barrier discharge (SDBD) mechanism that has desirable features for use in air at atmospheric pressures. For these actuators, the mechanism of flow control is through a generated body force vector that couples with the momentum in the external flow. The body force can be derived from first principles and the plasma actuator effect can be easily incorporated into flow solvers so that their placement and operation can be optimized. They have been used in a wide range of applications that include bluff body wake control; lift augmentation and separation control on a variety of lifting surfaces ranging from fixed wings with various degrees of sweep, wind turbine rotors and pitching airfoils simulating helicopter rotors; flow separation and tip-casing clearance flow control to reduce losses in turbines, to control flow surge and stall in compressors; and in exciting instabilities in boundary layers at subsonic to supersonic Mach numbers for turbulent transition control. New applications continue to appear through programs in a growing number of US universities and government laboratories, as well as in Germany, France, England, Netherland, Russia, Japan and China. This paper provides an overview of the physics, design and modeling of SDBD plasma actuators. It then presents their use in a number of applications that includes both numerical flow simulations and experiments together.
机译:十多年来,术语“等离子体致动器”已经成为流体动力学流控制的一部分。已经得到广泛使用的一种特定类型的等离子体致动器是基于单介电势垒放电(SDBD)机制,该机制具有在大气压下的空气中使用的理想功能。对于这些执行器,流量控制的机制是通过产生的体力矢量与外流的动量耦合。可以从第一原理得出体力,并且可以容易地将等离子致动器的效果合并到流量求解器中,从而可以优化其放置和操作。它们已被广泛用于包括虚张声势的身体唤醒控制在内的各种应用。在各种升力面上进行升力增强和分离控制,范围包括具有不同后掠度的固定翼,风力涡轮机转子和模拟直升机转子的俯仰翼型;流量分离和叶顶壳体间隙流量控制,以减少涡轮机的损失,控制压缩机的流量波动和失速;在湍流过渡控制中,亚音速到超音速马赫数的边界层存在令人兴奋的不稳定性。通过越来越多的美国大学和政府实验室以及德国,法国,英国,荷兰,俄罗斯,日本和中国的计划,新的应用程序不断出现。本文概述了SDBD等离子执行器的物理,设计和建模。然后介绍了它们在包括数值流模拟和实验在内的许多应用中的用途。

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