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首页> 外文期刊>Sensors and Actuators, A. Physical >Discharge and electrothermal efficiency analysis of capacitive discharge plasma synthetic jet actuator in single-shot mode
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Discharge and electrothermal efficiency analysis of capacitive discharge plasma synthetic jet actuator in single-shot mode

机译:单次射击模式中电容放电等离子体合成射流执行器的放电和电热效率分析

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Gas discharge plasma techniques have been applied successfully in a wide range of fields. As one of these techniques, plasma synthetic jet (PSJ) actuator shows promising application in high-speed flow control. However, for practical application to aircraft, the capacity of the power source is very limited. So the energy efficiency optimization of PSJ actuator is vital to its longtime effective performance. The overall efficiency of PSJ actuator can be divided into three parts: discharge efficiency, electrothermal efficiency and exhaust efficiency. In this paper, discharge and electrothermal efficiencies of a home-designed and manufactured two-electrode PSJ actuator working in single-shot mode and normal atmosphere are evaluated experimentally. The influence of circuit parameters and actuator configurations are investigated and analyzed as a reference for optimization. The results show that, discharge efficiency is basically determined by the resistance ratio of the RLC circuit. The parasitic resistance of the circuit has a great influence on discharge efficiency due to the very short length and low resistance of the plasma arc (O (100 m Omega)). Electrothermal efficiency seems to be less affected by the circuit parameters and actuator configurations compared to discharge efficiency. The variation extent of electrothermal efficiency is around 50-70% for the tested conditions. Smaller discharge chamber volume produces PSJ with higher speed, but will reduce electrothermal efficiency. For a certain overall input energy required, a design of smaller capacitance and wider anode-to-cathode distance is highly recommended to increase both discharge efficiency and electrothermal efficiency. (C) 2019 Elsevier B.V. All rights reserved.
机译:气体放电等离子体技术已成功应用于各种领域。作为这些技术之一,等离子体合成射流(PSJ)致动器在高速流量控制中显示了有希望的应用。然而,对于飞机的实际应用,电源的容量非常有限。因此PSJ执行器的能效优化对其长期有效性能至关重要。 PSJ执行器的整体效率可分为三个部分:放电效率,电热效率和排气效率。本文在实验中评估了在单次射击模式和正常气氛中工作的家庭设计和制造的双电极PSJ致动器的放电和电热效率。研究电路参数和致动器配置的影响和分析作为优化的参考。结果表明,放电效率基本上由RLC电路的电阻比基本决定。由于等离子体弧的长度和低电阻(O(100MΩ)的非常短,电阻,电路的寄生电阻对放电效率的影响很大。与放电效率相比,电热效率似乎对电路参数和致动器配置的影响较小。电热效率的变化程度约为测试条件约为50-70%。较小的放电室容量具有更高速度的PSJ,但会降低电热效率。对于所需的某个整体输入能量,强烈建议使用较小电容和较宽的阳极 - 阴极距离的设计,以提高放电效率和电热效率。 (c)2019 Elsevier B.v.保留所有权利。

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