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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Heat-flux measurements on a hypersonic inlet ramp using fast-response temperature-sensitive paint
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Heat-flux measurements on a hypersonic inlet ramp using fast-response temperature-sensitive paint

机译:使用快速响应温度敏感涂料对高超声速入口斜坡进行热量通量测量

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摘要

Global heat-flux measurements are performed using a newly developed temperature-sensitive paint (TSP) on an inclined ramp with sidewalls in a hypersonic shock tunnel. The paint response and image acquisition rate are sufficiently fast to allow flow phenomena on timescales of around 100 s to be resolved. Although a priori calibration of the new TSP proves inaccurate, in situ calibration allows the recovery of heat fluxes that agree well with embedded thermocouple measurements on both short and long timescales. At low unit Reynolds numbers, the flow on the main ramp surface is entirely laminar, but transition occurs in the corner-flow regions, causing a turbulent region to spread inwards from each sidewall and producing weak, unsteady features in the heat-flux distribution of the main laminar region. Within this laminar region, roughly steady streamwise streaks with a period of approximately ten times the boundary-layer thickness are also observed. At higher unit Reynolds numbers, the boundary layer on the main ramp surface transitions to turbulence. The fast-response TSP allows tracking of the time-resolved transition front: significant unsteadiness is observed, which appears to be only weakly correlated to unsteadiness in the freestream flow conditions. Based on the heat-flux signature in the transition region, the breakdown mechanism seems to be quite different from that observed in earlier measurements on a slender cone at similar conditions.
机译:全球热通量测量在高超声速冲击隧道中使用新开发的温度敏感涂料(TSP)在倾斜坡道上进行。涂料响应和图像采集速率足够快,以便在待解决约100秒的时间间隙上允许流动现象。尽管新TSP的先验校准不准确,但原位校准允许恢复热量的热量,这与短期和长时间的嵌入式热电偶测量很好。在低单元雷诺数时,主斜坡表面上的流动完全是层状的,但在角流区域中发生过渡,导致湍流区域从每个侧壁向内扩散并在热通量分布中产生弱,不稳定的特征主层状区域。在该层状区域内,还观察到大致稳定的流线,其周期约为边界层厚度的周期。在较高的单位雷诺数时,主斜坡表面上的边界层转变为湍流。快速响应TSP允许跟踪时间分辨过渡前部:观察到显着的不稳定性,这似乎只与FreeStream流量条件中的不稳定性弱相关。基于过渡区域中的热通量签名,击穿机制似乎与在类似条件下的细长锥上的早期测量中观察到的击穿机制似乎是完全不同的。

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