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Turbulence measurements in a Short Take-Off Vertical-Landing fountain

机译:短距起飞垂直降落喷泉中的湍流测量

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摘要

THE wall jets created by the impingement on the ground of the individual jet flows from a jet-lift short take-off and vertical landing (STOVL) aircraft with two nozzles meet at a stagnation line and form an upward-flowing fountain that interacts with the airframe (Fig. 1). While it is evident that the fountain upwash flow is unsteady, only limited data on the transient characteristics of this flow region are available. Early experiments relied on intrusive measurement techniques to provide mean pressure data [1] with unsteady pressures on the ground plane being used to infer additional information [2]. Direct measurement of turbulence data has been made using hot-wire anemometry [3,4], however, this technique is limited to low flow speeds and low turbulence intensities and is, therefore, likely to be inaccurate for compressible and highly unsteady flows; there is also the issue of probe interference. Techniques such as particle image velocimetry (PIV) and laser Doppler velocimetry (LDV) offer the possibility of detailed nonintrusive measurements in the fountain region. Recently, we have reported on the mean impinging-jet and fountain-velocity profiles obtained using PIV and LDV [5-7]. This paper extends the work further by presenting PIV-derived fountain turbulence characteristics.
机译:由具有两个喷嘴的喷气式升空短距起飞和垂直着陆(STOVL)飞机撞击单个喷气机流所产生的壁流在停滞线处汇合,并形成向上流动的喷泉,与机身(图1)。尽管显然喷头上冲流是不稳定的,但是仅可获得关于该流区域的瞬态特性的有限数据。早期实验依靠侵入式测量技术来提供平均压力数据[1],而地平面上的非恒定压力可用来推断其他信息[2]。湍流数据的直接测量已经使用热线风速仪进行了[3,4],但是,该技术仅限于低流速和低湍流强度,因此对于可压缩和高度不稳定的流可能不准确。还有探头干扰的问题。诸如粒子图像测速(PIV)和激光多普勒测速(LDV)之类的技术提供了在喷泉区域进行详细的非侵入式测量的可能性。最近,我们已经报道了使用PIV和LDV获得的平均冲击射流和喷泉速度剖面[5-7]。本文通过介绍源自PIV的喷泉湍流特性进一步扩展了工作。

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