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Physics and models for plasma synthetic jets

机译:等离子体合成射流的物理模型

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Plasma synthetic jet (PSJ) actuators are mainly used in order to control high speed flows. The objective of this work is to get a better understanding of the arc created inside the actuator and of its interaction with the surrounding fresh gas which allows to transfer the required thermal energy to produce the jets. After an experimental characterisation of the system, a 2D axisymmetric EMHD solver has been developed to simulate the activity of a non-confined arc similar to the one generated inside the actuator cavity. The energy transfers are quantified and an estimation of the useful amount of the electrical energy to heat the gas is given. Therefore, this work gives an explanation to the important losses that have been observed both experimentally and by simplified energy deposition simulations.
机译:等离子合成射流(PSJ)执行器主要用于控制高速流量。这项工作的目的是更好地了解致动器内部产生的电弧及其与周围新鲜气体的相互作用,从而可以传递所需的热能以产生射流。在对该系统进行实验性表征之后,已开发出一种二维轴对称EMHD求解器,以模拟与执行器腔内部生成的类似的非限制弧的活动。量化能量传递并给出加热气体的电能的有用量的估计。因此,这项工作解释了通过实验和简化的能量沉积模拟所观察到的重要损耗。

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