首页> 外文会议>Instrumentation in Aerospace Simulation Facilities, 2003. ICIASF '03. 20th International Congress on >Vortex investigation over a rolling delta wing model in transonic flow by stereo PIV measurements
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Vortex investigation over a rolling delta wing model in transonic flow by stereo PIV measurements

机译:立体PIV测量在跨音速流中的三角翼模型上的涡旋研究

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An investigation of the vortex behaviour over a delta wing model under different angles of incidence and roll has been performed using Particle Image Velocimetry (PIV) under transonic conditions at DLR Gottingen, Germany. These tests are important for the understanding of the leading edge vortex behaviour which is responsible for enhanced lift forces and CFD validation. The investigation used a stereo PIV arrangement, with both cameras in forward-scatter mode. For high-quality stereo PIV measurements of the flow around such models under transonic conditions, many details had to be optimised, especially as the light sheets were positioned in the cross-plane to the freestream over the model. Parameters like light sheet thickness and displacement with a certain overlap had to be considered carefully. It was also necessary to observe the optical system by means of additional cameras, as the starting and stopping of the tunnel affected the light sheet. Fortunately, readjustment of its position whilst the wind tunnel was running could be done by remote control and optical tools outside the tunnel. This had to be done in connection with a special layout for the trigger sequence, as lengths of wires or optical fibres for the transmission of TTL pulses became relevant for delays in the order of microseconds. It was expected that strong centrifugal and axial accelerations would be present and tiny particles had to be used for seeding. It could be established that the vortex structure is dependent strongly on the direction of change of the roll angle. A very impressive phenomenon was the so-called busting of vortices, which was accompanied by rapidly-changing pressure distributions.
机译:在德国DLR哥廷根公司,在跨音速条件下使用粒子图像测速(PIV)技术,已经对三角翼模型在不同入射角和侧倾角下的涡旋行为进行了研究。这些测试对于了解前沿涡旋行为非常重要,因为涡旋行为有助于提高升力和CFD验证。调查使用了立体声PIV布置,两个摄像机均处于前向散射模式。为了在跨音速条件下对此类模型周围的流动进行高质量的立体PIV测量,必须优化许多细节,尤其是当轻薄板位于模型上与自由流的交叉平面中时。必须仔细考虑诸如薄板厚度和具有一定重叠量的位移之类的参数。还必须通过附加的摄像机来观察光学系统,因为隧道的开始和停止都会影响光板。幸运的是,在风洞运行时,其位置的调整可以通过风洞外部的遥控器和光学工具来完成。这必须结合触发序列的特殊布局来完成,因为用于传输TTL脉冲的电线或光纤的长度与微秒级的延迟相关。可以预料,将会出现强大的离心和轴向加速度,并且必须使用细小颗粒进行播种。可以确定,涡旋结构在很大程度上取决于侧倾角的变化方向。一个非常令人印象深刻的现象是所谓的涡旋破坏,伴随着迅速变化的压力分布。

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