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Fluid-Thermal-Structural Interactions in Ramp-Induced Shock-Wave/Boundary-Layer Interactions at Mach 6

机译:Mach 6斜坡诱导的冲击波/边界层相互作用中的流体 - 热结构相互作用

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Experiments were conducted to study the fluid-thermal-structural interactions of a compliant panel exposed to ramp-induced shock-wave/boundary-layer interactions (SWBLIs) at Mach 6 for laminar and transitional incoming boundary-layers. For some cases, boundary-layer trips were introduced to generate a turbulent boundary layer over half of the interrogation area. Infrared thermography was used to measure the variations in surface temperature on a compliant panel embedded in a rigid ramp. A plenum box was designed to enable the control of the back pressure behind the compliant panel. High-frequency pressure transducers measured the mean and fluctuating static pressure inside the cavity. Simultaneous temperature and pressure measurements enabled the analysis of the thermal and vibratory response of the compliant panel when subjected to SWBLIs for multiple ramp angles. The thermography also revealed an unexpected low temperature region visible on the panel at high ramp angles and Reynolds Numbers. A spanwise-nonuniform boundary layer generated by upstream trips resulted in the excitation of different modes on the panel. A study on the effects of the pressure difference on the panel natural frequencies revealed that the modes are diversely affected at low pressure differentials.
机译:进行了实验以研究柔顺板的流体 - 热结构相互作用,其暴露于斜坡诱导的冲击波/边界层相互作用(SWBLIS)以在Mach 6处用于层状和过渡进入边界层。对于某些情况,引入了边界层途径以产生超过一半的询问区域的湍流边界层。红外热成像用于测量嵌入刚性坡道的柔性面板上的表面温度变化。设计了一个增压盒,以便控制符合面板后面的背压。高频压力传感器测量腔内的平均值和波动静压。同时温度和压力测量使得当多个斜坡角度进行SWBLIS时,使柔性面板的热和振动响应的分析能够分析。热成像还揭示了在高斜坡角度和雷诺数的面板上可见的意外的低温区域。由上游跳闸产生的翼展 - 非均匀边界层导致面板上的不同模式的激励。对面板固有频率对压力差的影响的研究表明,在低压差分中越来越多地受到影响。

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