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DYNAMICS OF WAKE BEHIND A LOW ASPECT RATIO PITCHING PLATE

机译:低纵横比俯仰板后的唤醒动力学

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Vectorized numerical simulations of unsteady wake behind a low-aspect ratio (double amplitude to span ratio 0.3) sinusoidally pitching plate (Strouhal number 0.4 and 0.5) are carried out for the Reynolds number, Re = 150,300. A non-staggered finite volume based predictor-corrector type of algorithm employing 2~(nd)-order time integration and spatial schemes is used. The first sign of instability appears on the plate promoting separation which becomes more vigorous with the increase in Reynolds number. At low Reynolds number, the separation bubble originating near the plate diffuses in the near wake region and the whole wake oscillates with the plate. Fully developed vortex shedding from the rear edge of the plate is observed at a higher Reynolds number. The shed vortices are slowly convected and eventually diffuses completely at a large downstream distance. At a higher forced frequency the wake does not alter significantly at a lower Reynolds number. However, vigorous vortex shedding leading to two layers of vortex streets from both the sides of the plate is observed at a higher Reynolds number.
机译:向外恢复的低纵横比(双幅度为0.3)正弦俯冲板(Strouhal Number 0.4和0.5)的非稳定唤醒的矢量化的数值模拟进行雷诺数,Re = 150,300。使用非交错的有限体积的预测校正器类型,采用2〜(ND) - 订单时间集成和空间方案的算法。不稳定性的第一个迹象显示在促进分离的板上,随着雷诺数的增加而变得更加活跃。在低雷诺数时,源自靠近板的分离气泡在靠近唤醒区域中扩散,并且整个唤醒与板振荡。在更高的雷诺数中观察到从板的后边缘开始完全开发的涡流。棚形涡流缓慢地对焦,最终在大的下游距离中完全扩散。在更高的强制频率下,唤醒不会在较低的雷诺数下显着改变。然而,在更高的雷诺数,观察到从板的两侧的两层涡流街道导致两层涡旋旋转。

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