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首页> 外文期刊>Journal of intelligent material systems and structures >Research on Fludic Dynamic Characteristics of the Piezoelectric Synthetic Jet Actuator
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Research on Fludic Dynamic Characteristics of the Piezoelectric Synthetic Jet Actuator

机译:压电合成射流致动器的流体动力学特性研究

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A two-dimensional Reynolds-Averaged Navier-Stokes model is established for a synthetic jet actuator (SJA) fluid field. The working process of the SJA is studied in detail by numerical analysis. Then the synthetic jet fluidic characteristics are investigated under the different SJA design parameters that include diameter and thickness of orifice, and diameter and depth of cavity. The research results show that diameter of orifice is an important parameter that influences the synthesis of a jet, and diameter of cavity influences both the resonance frequency of membrane and the decay of jet velocity along the axial distance from the exit. And there is an optimal combination between orifice thickness and cavity depth that cause the maximum jet output velocity of SJA. Finally, a SJA specimen is manufactured and the test results are basically in accordance with the simulating conclusions.
机译:针对合成射流致动器(SJA)流场,建立了二维雷诺平均Navier-Stokes模型。通过数值分析详细研究了SJA的工作过程。然后在不同的SJA设计参数下研究合成射流的流体特性,包括孔口的直径和厚度,以及腔的直径和深度。研究结果表明,孔口直径是影响射流合成的重要参数,孔腔直径既影响膜的共振频率,也影响射流速度沿从出口到轴向的衰减。孔口厚度和腔体深度之间存在最佳组合,可导致SJA的最大射流输出速度。最后,制造了一个SJA样品,测试结果基本上与模拟结论一致。

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