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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >A new laser vorticity probe - LAVOR: Its development and validation in a turbulent boundary layer
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A new laser vorticity probe - LAVOR: Its development and validation in a turbulent boundary layer

机译:新型激光涡旋探头-LAVOR:在湍流边界层中的开发和验证

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Vorticity measurements, which are scarce at the present time, can provide valuable dynamical information, particularly in unsteady and separated flows. Advances in laser Doppler anemometry and optical techniques have furnished the opportunity for the development of a nonintrusive vorticity probe with very fine spatial and temporal resolutions. The laser vorticity probe (LAVOR), which makes use of minimal laser beams and optical components, is capable of measuring velocity gradients with a separation distances as small as 0.3 mm. Velocity gradients are measured using two points on the same probe volume. However, unlike other techniques, the LAVOR also provides the instantaneous velocity at each point in the probe volume, and so provides additional dynamical information. The LAVOR probe was used in a fully turbulent two-dimensional boundary layer, and the data obtained are compared with the existing hot-wire vorticity data obtained in the same wind tunnel facility and with data obtained in other facilities. The spatial resolution is of the order of three Kolmogorov microscale units. [References: 42]
机译:目前稀缺的涡度测量可以提供有价值的动力学信息,尤其是在不稳定和分离的流动中。激光多普勒风速仪和光学技术的进步为开发具有非常精细的空间和时间分辨率的非侵入式涡度探头提供了机会。激光涡度探头(LAVOR)使用最少的激光束和光学组件,能够测量分离距离小至0.3 mm的速度梯度。使用相同探针体积上的两个点测量速度梯度。但是,与其他技术不同,LAVOR还提供了探针体积中每个点的瞬时速度,因此提供了额外的动态信息。 LAVOR探头用于全湍流二维边界层,并将获得的数据与在同一风洞设施中获得的现有热线涡度数据以及在其他设施中获得的数据进行比较。空间分辨率约为三个Kolmogorov微米单位。 [参考:42]

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