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Electro-mechanical efficiency of plasma synthetic jet actuator driven by capacitive discharge

机译:电容放电驱动的等离子体合成射流致动器的机电效率

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摘要

A simplified model is established to estimate the jet exit density variation of a plasma synthetic jet actuator (PSJA) driven by a capacitive arc discharge. This model, in conjunction with phase-locked planar particle imaging velocimetry (PIV) measurements, enables the calculation of jet mechanical energy for different operating conditions. Discharge energy is directly calculated based on waveforms of applied voltage and discharge current. The ratio of jet mechanical energy to discharge energy provides the absolute electro-mechanical efficiency. Results indicate that PSJA is characterized by a rather low electro-mechanical efficiency in the order of 0.1%, while the maximum observed value under tested conditions is 0.22%. Electromechanical efficiency improves significantly with nondimensional energy deposition, and appears largely independent of jet exit diameter.
机译:建立一个简化的模型来估计由电容性电弧放电驱动的等离子体合成射流致动器(PSJA)的射流出口密度变化。该模型与锁相平面颗粒成像测速(PIV)测量结合,可以计算出不同工况下的喷射机械能。根据施加电压和放电电流的波形直接计算放电能量。喷射机械能与放电能之比提供了绝对的机电效率。结果表明,PSJA的特征是机电效率相当低,仅为0.1%,而在测试条件下的最大观测值为0.22%。机电效率随无量纲能量沉积而显着提高,并且表现出与射流出口直径无关的大部分。

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