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首页> 外文期刊>Physics of fluids >Experimental study of unsteady aerothermodynamic phenomena on shock-tube wall using fast-response temperature-sensitive paints
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Experimental study of unsteady aerothermodynamic phenomena on shock-tube wall using fast-response temperature-sensitive paints

机译:快速反应热敏涂料在冲击管壁上非定常热力学现象的实验研究

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This paper describes an experimental study that used a fast-response temperature-sensitive paint (TSP) to investigate the unsteady aerothermodynamic phenomena occurring on a shock-tube wall. To understand these phenomena in detail, a fast-response TSP with high temperature sensitivity developed for transient temperature measurement was applied to the wall. The shock-tube experiment was carried out under the over-tailored condition, with a pressure ratio of 110 for test gases of air in driver/driven tubes. The following aspects were clarified using the TSP: (a) the TSP could be used to visualize the unsteady aerothermodynamic phenomena and estimate the quantitative heat flux on the shock-tube wall; (b) an x-t diagram based on the TSP response showed shock-tube wall characteristics that included the incident/reflected shocks, laminar-to-turbulent boundary-layer transition, streaks in the turbulent boundary layer, reflected shock/turbulent boundary layer interaction, and waves reflected from a contact surface; (c) the TSP graphically showed that a transition front from the plate's leading edge and turbulent spots moved with 80% of the free-stream velocity behind the incident shock. In addition, the TSP could track the growth of the turbulent spots on the wall. Published by AIP Publishing.
机译:本文描述了一项实验研究,该研究使用快速响应的热敏涂料(TSP)来研究在冲击管壁上发生的不稳定的空气热力学现象。为了详细了解这些现象,将为瞬态温度测量而开发的具有高温敏感性的快速响应TSP应用于墙壁。冲击管实验是在过度定制的条件下进行的,驱动器/驱动管中的空气测试气体的压力比为110。使用TSP可以阐明以下几个方面:(a)TSP可以用于可视化不稳定的空气热力学现象,并估计冲击管壁上的定量热通量; (b)基于TSP响应的xt图显示了冲击管壁的特性,包括入射/反射冲击,层流到湍流边界层的过渡,湍流边界层中的条纹,反射的冲击/湍流边界层的相互作用,从接触表面反射的波; (c)TSP的图形显示,从板前缘和湍流点开始的过渡前沿以入射冲击后的自由流速度的80%移动。此外,TSP可以跟踪墙壁上湍流点的生长。由AIP Publishing发布。

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