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Measurements of Freestream Fluctuations in the NASA Langley 20-Inch Mach 6 Tunnel

机译:NASA Langley 20英寸马赫6隧道中自由流波动的测量

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An experimental campaign was conducted to measure and to characterize the freestream disturbance levels in the NASA Langley Research Center 20-Inch Mach 6 Wind Tunnel. A pitot rake was instrumented with fast pressure transducers, hot wires, and an atomic layer thermopile to quantify the fluctuation levels of pressure, mass flux, and heat flux, respectively. In conjunction with these probe-based measurements, focused laser differential interferometry was used to optically measure density fluctuations. Measurements were made at five different nominal unit Reynolds numbers ranging from 3.28-26.5×l0°/m. The rake was positioned at two streamwise locations and several roll angles to measure flow uniformity within the test section. In general, noise levels were spatially consistent within the tested region. Pitot pressure fluctuation levels ranged from 0.84% at the highest Reynolds number tested to 1.89% at the lowest Reynolds number tested. Freestream mass-flux fluctuations remained relatively constant between 1.8-2.5% of the freestream. The pressure transducers were also used to determine the dominant disturbance speed and angle of propagation. The disturbances were estimated to travel at approximately 54-81% of the freestream speed at an angle of approximately 21-44 degrees from the freestream direction, but these measurements had a significant amount of uncertainty. A comparison to previous measurements of pressure made in 2012 and of mass flux made in 1994 show almost no change in the RMS fluctuation of these flow quantities.
机译:在NASA兰利研究中心20英寸马赫6风洞中进行了一项实验活动,以测量和表征自由流干扰水平。用快速压力传感器,热线和原子层热电堆对皮托管进行测量,以分别量化压力,质量通量和热通量的波动水平。结合这些基于探针的测量,聚焦激光微分干涉术用于光学测量密度波动。在3.28-26.5×10°/ m的五个不同的标称单位雷诺数下进行测量。将耙子定位在两个沿流的位置和几个侧倾角,以测量测试段内的流量均匀性。通常,噪声水平在测试区域内在空间上是一致的。皮托管压力波动水平从最高雷诺数的0.84%到最低雷诺数的1.89%不等。自由流的质量通量波动在自由流的1.8-2.5%之间保持相对恒定。压力传感器还用于确定主要干扰速度和传播角度。估计扰动以与自由流方向成大约21-44度的角度传播,以自由流速度的大约54-81%传播,但是这些测量具有很大的不确定性。与之前在2012年进行的压力测量和在1994年进行的质量流量测量的比较表明,这些流量的RMS波动几乎没有变化。

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