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Supersonic Mass Flux Measurements via Tunable Diode Laser Absorption and Non-Uniform Flow Modeling

机译:通过可调谐二极管激光吸收和非均匀流动建模进行超声质量通量测量

摘要

Measurements of mass flux are obtained in a vitiated supersonic ground test facility using a sensor based on line-of-sight (LOS) diode laser absorption of water vapor. Mass flux is determined from the product of measured velocity and density. The relative Doppler shift of an absorption transition for beams directed upstream and downstream in the flow is used to measure velocity. Temperature is determined from the ratio of absorption signals of two transitions (lambda(sub 1)=1349 nm and lambda(sub 2)=1341.5 nm) and is coupled with a facility pressure measurement to obtain density. The sensor exploits wavelength-modulation spectroscopy with second-harmonic detection (WMS-2f) for large signal-to-noise ratios and normalization with the 1f signal for rejection of non-absorption related transmission fluctuations. The sensor line-of-sight is translated both vertically and horizontally across the test section for spatially-resolved measurements. Time-resolved measurements of mass flux are used to assess the stability of flow conditions produced by the facility. Measurements of mass flux are within 1.5% of the value obtained using a facility predictive code. The distortion of the WMS lineshape caused by boundary layers along the laser line-of-sight is examined and the subsequent effect on the measured velocity is discussed. A method for correcting measured velocities for flow non-uniformities is introduced and application of this correction brings measured velocities within 4 m/s of the predicted value in a 1630 m/s flow.
机译:质量通量的测量是在一个超音速地面测试设备中,使用一个基于视线(LOS)二极管激光吸收水蒸气的传感器进行的。质量通量由测得的速度和密度的乘积确定。指向流中上游和下游的光束的吸收跃迁的相对多普勒频移用于测量速度。根据两个跃迁(λ(sub 1)= 1349 nm和λ(sub 2)= 1341.5 nm)的吸收信号之比确定温度,并与设备压力测量值耦合以获得密度。该传感器利用具有二次谐波检测(WMS-2f)的波长调制光谱技术来获得较大的信噪比,并利用1f信号进行归一化以抑制与吸收无关的传输波动。传感器的视线会在测试部分上垂直和水平移动,以进行空间分辨的测量。质量流量的时间分辨测量值用于评估设施产生的流动条件的稳定性。质量通量的测量值在使用设施预测代码获得的值的1.5%以内。研究了由边界层沿激光视线引起的WMS线形畸变,并讨论了其对测得速度的影响。介绍了一种针对流量不均匀性对测得的速度进行校正的方法,该校正的应用使测得的速度在1630 m / s的流量中达到了预测值的4 m / s之内。

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