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Stability and Sensitivity Analysis of Hydrodynamic Instabilities in Industrial Swirled Injection Systems

机译:工业旋流注射系统中流体动力稳定性的稳定性及敏感性分析

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摘要

The hydrodynamic instability in an industrial, two-staged, counter-rotative, swirled injector of highly complex geometry is under investigation. Large eddy simulations (LES) show that the complicated and strongly nonparallel flow field in the injector is superimposed by a strong precessing vortex core (PVC). Mean flow fields of LES, validated by experimental particle image velocimetry (PIV) measurements, are used as input for both local and global linear stability analysis (LSA). It is shown that the origin of the instability is located at the exit plane of the primary injector. Mode shapes of both global and local LSA are compared to dynamic mode decomposition (DMD) based on LES snapshots, showing good agreement. The estimated frequencies for the instability are in good agreement with both the experiment and the simulation. Furthermore, the adjoint mode shapes retrieved by the global approach are used to find the best location for periodic forcing in order to control the PVC.
机译:在高度复杂几何形状的工业,双分阶段,反旋转的流体动力不稳定,是高度复杂的几何形状的旋转注射器。大涡模拟(LES)表明喷射器中的复杂和强烈的非平行流场叠加在强烈的精细涡旋芯(PVC)上叠加。由实验粒子图像速度(PIV)测量验证的LES的平均流场被用作本地和全局线性稳定性分析(LSA)的输入。结果表明,不稳定性的原点位于主喷射器的出口平面。将全局和本地LSA的模式形状与基于LES快照的动态模式分解(DMD)进行比较,显示出良好的一致性。不稳定性的估计频率与实验和模拟均匀。此外,通过全局方法检索的伴随模式形状用于查找周期性强制的最佳位置,以控制PVC。

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