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首页> 外文期刊>Sensors and Actuators, A. Physical >Experimental and numerical characterization of a plasma actuator in continuous and pulsed actuation
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Experimental and numerical characterization of a plasma actuator in continuous and pulsed actuation

机译:连续和脉冲驱动中等离子体驱动器的实验和数值表征

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摘要

Dielectric Barrier Discharge actuators are simulated using experimentally determined body force distributions. This work aims at validation and verification of the force measurement technique and the assumptions involved. The experimental body force distributions are implemented in a numerical flow solver and test cases are simulated for two operation modes. The first operation mode corresponds to the original experimental cases previously used for deriving the body force distributions. These include continuous operation under varied applied voltages of 8, 10, 12, 14, and 16 kV _(pp) and carrier frequencies of 1, 2, 3 and 4 kHz. Furthermore, the body force is implemented in a pulse operation regime for pulse frequencies of 50, 200, and 350 Hz and duty cycles of 25, 50, and 75 at fixed voltage and carrier frequency of 10 kV _(pp) and 2 kHz. A time-resolved two-component particle image velocimetry (2C-PIV) experiment is conducted to provide a base for comparison with the results of the numerical flow solver. Numerical results for the continuous operation show reasonable agreement with the corresponding experimental data in terms of the spatial and temporal characteristics of the induced jet as well as the values of the maximum induced velocity. It is shown that the experimental body force distributions are able to numerically reproduce the original flowfield. Additionally, the influence of assumptions related to the force estimation technique is analyzed. Results for the pulse operation reveal the transient development of the induced flow and the dependence of several flow features on the pulsation parameters. Agreement between the numerical simulation and the experimental data further demonstrates the applicability of the experimentally derived body force distributions in operational regimes other than the original condition.
机译:使用实验确定的体力分布来模拟介电势垒放电执行器。这项工作旨在验证和验证测力技术以及所涉及的假设。实验体力分布在数值流求解器中实现,并针对两种操作模式模拟了测试案例。第一操作模式对应于先前用于导出体力分布的原始实验情况。这些包括在8、10、12、14和16 kV _pp的变化外加电压,1、2、3和4 kHz的载波频率下连续运行。此外,在固定电压和10 kV_(pp)和2 kHz的载波频率下,以50、200和350 Hz的脉冲频率以及25、50和75的占空比在脉冲操作方案中实现体力。进行了时间分辨的两成分粒子图像测速(2C-PIV)实验,为与数值流求解器的结果进行比较提供了基础。连续运行的数值结果在诱导射流的时空特性以及最大诱导速度值方面与相应的实验数据显示出合理的一致性。结果表明,实验体力分布能够在数值上再现原始流场。另外,分析了与力估计技术有关的假设的影响。脉冲操作的结果揭示了诱导流动的瞬态发展以及几种流动特征对脉动参数的依赖性。数值模拟与实验数据之间的一致性进一步证明了实验得出的体力分布在除原始条件以外的其他工作状态下的适用性。

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