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Experimental Study and Numerical Simulation on Propagation Properties of a Plasma Jet in a Cylindrical Liquid Chamber

机译:等离子体射流在圆柱液室内传播特性的实验研究与数值模拟

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摘要

A simulator is designed to explore the interactive mechanism of a plasma jet with the liquid medium in the bulk-loaded liquid electrothermal chemical launching process. The properties of the plasma jet expanding in the liquid and the mixing characteristics of the plasma jet with liquid in the cylindrical chamber are studied using a high speed camera system. According to the experimental results, a two-dimensional axisymmetric unsteady compressible flow model has been proposed. The transient characteristics of the jet in flow field have been simulated. The results indicate that, during the expansion of the plasma jet in the liquid medium, there is relatively strong turbulent mixing. The interface between the two phases is not smooth and fluctuates with time stochastically. The higher the discharge voltage is, the stronger the Helmholtz instability effect will be. The Taylor cavity forming during the jet expansion can be divided into three regions: the main flow region, the compression region, and the backflow vortex region. In the main flow region the temperature and velocity of the plasma jet are relatively high and both decrease along the axial and radial direction. The pressure near the Taylor cavity head is high. The high pressure region grows gradually while the pressure value decreases. The calculated axial expansion displacement of the Taylor cavity coincides well with the measured one from experiment.
机译:设计了一个模拟器,以探索在大量加载的液体电热化学发射过程中等离子体射流与液体介质的相互作用机理。使用高速相机系统研究了等离子流在液体中膨胀的特性以及等离子流与液体在圆柱室内的混合特性。根据实验结果,提出了二维轴对称非定常可压缩流动模型。模拟了射流在流场中的瞬态特性。结果表明,在液体介质中等离子流的膨胀过程中,存在较强的湍流混合。两相之间的界面不平滑,并且随时间随机波动。放电电压越高,亥姆霍兹不稳定性效应越强。射流膨胀过程中形成的泰勒腔可分为三个区域:主流区域,压缩区域和回流涡流区域。在主流区域,等离子体射流的温度和速度较高,并且都沿轴向和径向方向降低。泰勒腔头附近的压力很高。高压区域逐渐增大,而压力值减小。泰勒腔的轴向膨胀位移的计算值与实验测得的值非常吻合。

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