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Continuum breakdown and surface catalysis effects in NASA arc jet testing at SCIROCCO

机译:苏拉科省美国宇航局弧喷射试验中的连续体细分和表面催化作用

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A facility characterization test campaign was performed for NASA in SCIROCCO Plasma Wind Tunnel, with increasing enthalpy and constant reservoir pressure. In the frame of numerical rebuilding of the experimental data, an important gap among measured and numerically predicted values of heat flux led to deep analyse the numerical methods and the models usually employed for test rebuilding. The Navier-Stokes model with chemical reacting non-equilibrium flows, denoted a lack of physical accuracy due to local rarefaction effects, as certified by means of the continuum breakdown parameter. Furthermore, the low stagnation pressure environment could influence the surface catalytic behaviour of the hemisphere copper probe, and the chemical contribution to the stagnation heat flux. At the end, a set of direct simulation Monte Carlo with partial catalytic behaviour of the probe was performed, in order to address both critical phenomena highlighted and close the gap with the measured heat fluxes, understanding the actual test chamber environment. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:在柯卡科等离子风隧道中对NASA进行了设施表征测试活动,焓和恒定的储层压力增加。在实验数据的数值重建的框架中,测量和数值预测的热通量值之间的重要间隙导致深度分析数值方法和通常用于测试重建的模型。具有化学反应非平衡流动的Navier-Stokes模型,由于局部稀疏效应,表示缺乏物理精度,如连续漏洞参数认证。此外,低停滞压力环境可能影响半球铜探针的表面催化行为,以及对停滞热通量的化学贡献。最后,进行了一组具有探针的部分催化行为的直接模拟蒙特卡罗,以解决突出显示并闭合测量的热通量的关键现象,了解实际测试室环境。 (c)2019年Elsevier Masson SAS。版权所有。

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