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Simulation of Magnetohydrodynamic Effects on an Ionised Hypersonic Flow by Using the TAU Code

机译:利用TAU代码模拟电磁动力学效应

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In the present investigation the DLR TAU code is extended to support future experimental investigations of magnetohydrodynamic effects in high temperature hypersonic flows. According to the conditions in the High Enthalpy Shock Tunnel G?ttingen (HEG) the first steps in enhancing the TAU code are the implementation of a source term formulation of electromagnetic forces and the calculation of the electrical conductivity of air as a gas mixture in chemical non equilibrium. To verify the source term implementation a perfect gas study related to numerical simulations from Poggie and Gaitonde is conducted and shows reasonable agreement. Applied to the experimental conditions the model predicts a noticeable increase of the shock stand off distance.
机译:在本研究中,DLR TAU代码扩展到支持高温超音流中磁性动力学效应的未来实验研究。根据高焓冲击隧道G的条件。增强Tingen(HEG)加强Tau代码的第一步是实施电磁力的源期术语制剂和作为化学物质中的气体混合物的空气导电性的计算非均衡。为了验证源期限实施,进行了与Poggie和Gaitonde的数值模拟相关的完美气体研究,并显示了合理的协议。应用于实验条件,该模型预测距离的震荡脱离距离显着增加。

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