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首页> 外文期刊>Technical physics >Numerical simulation of an energy deposition zone in quiescent air and in a supersonic flow under the conditions of interaction with a normal shock
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Numerical simulation of an energy deposition zone in quiescent air and in a supersonic flow under the conditions of interaction with a normal shock

机译:垂直冲击作用下静态空气和超音速流中能量沉积区的数值模拟

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摘要

The potential of using the Euler equations to numerically simulate the evolution of localized energy deposition zones interacting with a normal shock in quiescent air and in a supersonic channel flow is demonstrated. Simulation results are compared with available experimental data for an optical discharge in quiescent air and with results calculated for a supersonic flow using the Navier-Stokes equations with allowance for real gas effects. The possibility of predicting gasdynamic effects using the T- and q-models of energy deposition for perfect gas is justified. The variation of the gasdynamic structure and flow parameters near an energy deposition zone developing in a quiescent medium and interacting with a normal shock is analyzed in detail for different energy deposition powers.
机译:证明了使用Euler方程数值模拟静态空气和超音速通道流中与正常冲击相互作用的局部能量沉积区的演化的潜力。将模拟结果与静态空气中光放电的可用实验数据进行比较,并使用Navier-Stokes方程对超音速流动进行计算,并考虑实际气体的影响。使用能量沉积的T和q模型预测完美气体的气体动力学效应的可能性是合理的。针对不同的能量沉积功率,详细分析了在静态介质中发展并与法向冲击相互作用的能量沉积区附近的气体动力学结构和流量参数的变化。

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