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Laser Doppler Measurements of Twin Impinging Jets Aligned with a Crossflow
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作者 Jorge M.M. Barata Pedro S.D. Carvalho +3 位作者 Femando M.S.P. Neves1, Andr6 R.R. Silva1, Diana F.C. VieiraI andDiamantino F.G. Duro Andre R.R. Silva Diana F.C. Vieira Diamantino F.G. Durao 《Journal of Physical Science and Application》 2014年第7期403-411,共9页
This paper presents a detailed analysis of the complex flow beneath two impinging jets aligned with a low-velocity crossflow which is relevant for the future F-35 VSTOL configuration, and provides a quantitative pictu... This paper presents a detailed analysis of the complex flow beneath two impinging jets aligned with a low-velocity crossflow which is relevant for the future F-35 VSTOL configuration, and provides a quantitative picture of the main features of interest for impingement type of flows. The experiments were carried out for a Reynolds number based on the jet exit conditions of Rej = 4.3 × 10^4, an impingement height of 20.1 jet diameters and for a velocity ratio between the jet exit and the crossflow VR = V/Uo of 22.5. The rear jet is located at S = 6 D downstream of the first jet. The results show a large penetration of the first (upstream)jet that is deflected by the crossflow and impinges on the ground, giving rise to a ground vortex due to the collision of the radial wall and the crossflow that wraps around the impinging point like a scarf. The rear jet (located downstream) it is not so affected by the crossflow in terms of deflection, but due to the downstream wall jet that flows radially from the impinging point of the first jet it does not reach the ground. The results indicate a new flow pattern not yet reported so far, that for a VSTOL aircraft operating in ground vicinity with front wind or small forward movement may result in enhanced under pressures in the aft part of the aircraft causing a suction down force and a change of the pitching moment towards the ground. 展开更多
关键词 vstol ground vortex TURBULENCE complex flows.
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基于系统辨识的垂直/短距飞机垂直起降过程升力损失建模 被引量:1
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作者 屠展 朱纪洪 《中国科学技术大学学报》 CAS CSCD 北大核心 2012年第8期664-669,共6页
采用系统辨识的方法对垂直/短距飞机垂直起降过程中的升力损失问题进行建模和计算.与传统的机理建模结合经验公式估计升力损失的建模方法相比,该方法解决了复杂结构垂直/短距飞机机理模型参数选取困难和落压比随喷射气流变化的问题,提... 采用系统辨识的方法对垂直/短距飞机垂直起降过程中的升力损失问题进行建模和计算.与传统的机理建模结合经验公式估计升力损失的建模方法相比,该方法解决了复杂结构垂直/短距飞机机理模型参数选取困难和落压比随喷射气流变化的问题,提高了模型可信度与适用性.完整的辨识系统由六分量天平、应变力传感器阵列、飞控系统和地面站组成,根据系统的输入输出辨识垂直起降过程升力损失模型. 展开更多
关键词 系统辨识 垂直/短距飞机 垂直起降 升力损失
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