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Numerical Investigation of Thermochemical Nonequilibrium Flow Field in a 20kW Arc Heater Coupled with Electric Field Calculation

机译:20kW电弧加热器中热化学非醌流场​​的数值研究与电场计算联接

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Numerical simulation is carried out and the distribution of flow field properties is obtained for nonequilibrium flow in a constrictor-type 20kW arc-heated wind tunnel. In the arc heater, plasma flow is highly in nonequilibrium and arc discharge plays a critical role. The flow field is described by the Navier-Stokes equations with a multi-temperature model. The flow field equations are solved with the governing equation for the electric field being coupled. Furthermore, to validate the present numerical model, the numerical solutions are compared with the corresponding experimental data. The flow characteristics in the 20kW arc heater, e.g., the arc charge and the supersonic expansion, become clear through the present simulation. Moreover, the computed results for the arc heater indicate almost full dissociation/ionization reactions and thermochemical equilibrium in the constrictor part, while strong nonequilibrium clearly appears in the nozzle section.
机译:进行数值模拟,并在收缩器型20kW电弧风隧道中获得非纤维流的流场特性的分布。在电弧加热器中,等离子体流量高度不足,电弧放电起到关键作用。流场由具有多温模型的Navier-Stokes方程描述。利用用于电场的控制方程来解决流场方程。此外,为了验证当前数值模型,将数值解决方案与相应的实验数据进行比较。 20kW电弧加热器中的流动特性,例如电弧电荷和超音速膨胀,通过目前的模拟清楚。此外,电弧加热器的计算结果在收缩部件中表示几乎完全的解离/电离反应和热化学平衡,而在喷嘴部分中清晰地出现强烈的非核纤维。

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