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Three-dimensionnal instabilities and transient growth of trailing vortices

机译:尾涡的三维不稳定性和瞬态增长

摘要

An aircraft wake is made of counter-rotating vortices and is known to be affected by a long (Crow) and a short (elliptic) wavelength instabilities. Numerical investigations on the three-dimensionnal instabilities and transient growth of such dipole are performed. By means of a three-dimensionnal linear stability analysis, we retrieve the instability bands corresponding to the Crow and elliptic modes but we also observe less unstable oscillatory modes with very broad peaks. The transient growth of perturbations on this dipole, investigated by computing the optimal linear perturbations with a direct-adjoint technique, demonstrates the crucial role of the region of maximal strain at short time and of the hyperbolic point at intermediate time. Investigations on the three-dimensionnal dynamics of trailing vortices in stratified fluids are performed. The elliptic instability is almost unaffected by weak and moderate stratifications.
机译:飞机尾流由反向旋转的涡流制成,并且已知会受到长(乌鸦)和短(椭圆)波长不稳定性的影响。对这种偶极子的三维不稳定性和瞬态增长进行了数值研究。通过三维线性稳定性分析,我们获得了对应于Crow和椭圆模态的不稳定性带,但是我们还观察到了不稳定的振荡模态,具有非常宽的峰。通过使用直接伴随技术计算最佳线性扰动来研究此偶极子上扰动的瞬态增长,证明了短时最大应变区域和中间时间的双曲点的关键作用。对分层流体中尾随涡流的三维动力学进行了研究。椭圆的不稳定性几乎不受弱和中等分层的影响。

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