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Hybrid simulation of wake-vortex evolution during landing on flat terrain and with plate line

机译:在平坦地形上和板块直线着陆时尾涡演变的混合模拟

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摘要

Wake-vortex evolution during approach and landing of a long range aircraft is investigated. The simulations cover final approach, touchdown on the tarmac, and the evolution of the wake after touchdown. The wake is initialized using a high fidelity Reynolds-averaged Navier-Stokes solution of the flow field around an aircraft model. The aircraft in high-lift configuration with deployed flaps and slats is swept through a ground fixed domain. The further development of the vortical wake is investigated by large-eddy simulation until final decay. The results show the formation of a pronounced shear layer at the ground and an increase in circulation in ground proximity, caused by the wing in ground effect. Disturbances at disconnected vortex ends, so-called end effects, appear after touchdown and propagate along the wake vortices against the flight direction. They lead to a circulation decay of the rolled-up wake vortices, combined with a growth of the core radius to 300% of its initial value. After touchdown wake vortices are subjected to strong three-dimensional deformations and linkings with the ground. The complete vortex evolution, including roll-up and decay, is accelerated in ground proximity. Additionally the effect of a plate line installed in front of the runway is studied with this method. The plates cause disturbances of the vortices propagating to either side and interacting with the end effects. The plate line further accelerates the vortex decay, reducing the circulation rapidly by another 25% of its initial value.
机译:研究了远程飞机进近和着陆过程中的尾涡演变。模拟包括最终进场,停机坪上的着陆以及着陆后尾流的演变。使用飞机模型周围流场的高保真度雷诺平均Navier-Stokes解初始化尾流。具有升起的襟翼和板条的高升力飞机被扫过地面固定区域。通过大涡模拟直至最终衰减,研究了涡旋尾流的进一步发展。结果表明,由于机翼在地面的作用,在地面上形成了明显的剪切层,并增加了地面附近的环流。断开的涡旋末端处的扰动,即所谓的末端效应,在触地后出现,并沿尾流涡旋逆着飞行方向传播。它们导致卷起的尾流涡流的循环衰减,同时使铁心半径增加到其初始值的300%。触地之后,尾流涡流会经受强烈的三维变形并与地面连接。在地面附近,完整的涡旋演化(包括卷起和衰减)会加速。此外,还使用这种方法研究了安装在跑道前面的板线的影响。这些板引起涡流的扰动,涡流传播到任一侧并与最终效应相互作用。板线进一步加速了涡旋的衰减,使循环迅速减少了其初始值的25%。

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