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Experimental aerodynamic heating to simulated shuttle tiles
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机译:实验空气动力学加热到模拟穿梭砖
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摘要
The heat transfer to simulated shuttle thermal protection system tiles was investigated experimentally using a highly instrumented metallic thin wall tile arranged with other metal tiles in a staggered tile array. Cold-wall heating rate data for laminar and turbulent flow were obtained in the Langley 8-foot high temperature tunnel at a nominal Mach number of 7, a nominal total temperature of 3300 R, free-stream unit Reynolds number from 3.4 x 10 to the 5th power to 2.2 x 10 to the 6th power per foot, and free-stream dynamic pressure of 1.8 psia to 9.1 psia. Experimental data are presented to illustrate the effects of flow angularity and gap width on both local peak heating and overall heating loads.
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机译:通过将高度仪器化的金属薄壁砖与其他金属砖以交错的砖块阵列排列的方式,对向模拟穿梭式热保护系统砖的热传递进行了实验研究。层流和湍流的冷壁加热速率数据是在Langley 8英尺高温隧道中以标称马赫数为7,标称总温度为3300 R,自由流单位雷诺数从3.4 x 10到第5功率达到2.2 x 10到每英尺第6功率,自由流动压力为1.8 psia至9.1 psia。给出实验数据以说明流动角度和间隙宽度对局部峰值加热和整体加热负载的影响。
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