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Experimental Design of Dielectric Barrier Discharge Plasma Actuators on a Rotating Reference Frame

机译:旋转参考系上介质阻挡放电等离子体致动器的实验设计

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The design modification of a double-width double-inlet (DWDI) centrifugal impeller for the installation of dielectric barrier discharge (DBD) plasma actuators is presented here. Although several studies utilizing DBD plasma actuators for flow control of flow phenomena such as vortex-dominated swirling flows and flow separations exist, very few studies are concerned with the application of this flow control mechanism to turbomachinery systems. The process of designing a novel power distribution system and DWDI centrifugal impeller is presented as a case study for researchers interested in the application of this technology to turbomachinery systems. Electrical and material requirements provide unique challenges for the installation of DBD plasma actuators on a rotating reference frame. The results of material dielectric testing, finite element analysis, impeller design modifications, stereolithography 3D printing, and slip ring design are presented here.
机译:本文介绍了用于安装介电势垒放电(DBD)等离子体致动器的双宽度双入口(DWDI)离心叶轮的设计修改。尽管有几项利用DBD等离子体致动器来控制流动现象(例如,以涡流为主的旋流和流动分离)的研究,但很少有人关注这种流动控制机制在涡轮机械系统中的应用。提出了设计新型动力分配系统和DWDI离心式叶轮的过程,作为有兴趣将此技术应用于涡轮机械系统的研究人员的案例研究。电气和材料要求为在旋转参考架上安装DBD等离子致动器带来了独特的挑战。此处介绍了材料介电测试,有限元分析,叶轮设计修改,立体光刻3D打印和滑环设计的结果。

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