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Inertial Waves and Steady Flows in a Liquid Filled Librating Cylinder

机译:充液式气缸中的惯性波和稳定流

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The fluid flow in a non-uniformly rotating (librating) cylinder about a horizontal axis is experimentally studied. In the absence of librations the fluid performs a solid-body rotation together with the cavity. Librations lead to the appearance of steady zonal flow in the whole cylinder and the intensive steady toroidal flows near the cavity corners. If the frequency of librations is twice lower than the mean rotation rate the inertial waves are excited. The oscillating motion associated with the propagation of inertial wave in the fluid bulk leads to the appearance of an additional steady flow in the Stokes boundary layers on the cavity side wall. In this case the heavy particles of the visualizer are assembled on the side wall into ring structures. The patterns are determined by the structure of steady flow, which in turn depends on the number of reflections of inertial wave beams from the cavity side wall. For some frequencies, inertial waves experience spatial resonance, resulting in inertial modes, which are eigenmodes of the cavity geometry. The resonance of the inertial modes modifies the steady flow structure close to the boundary layer that is manifested in the direct rebuilding of patterns. It is shown that the intensity of zonal flow, as well as the intensity of steady flows excited by inertial waves, is proportional to the square of the amplitude of librations.
机译:实验研究了绕水平轴旋转的非均匀旋转气缸中的流体流动。在没有游离的情况下,流体与腔体一起执行固体旋转。振动会导致整个圆柱体出现稳定的纬向流,并在模腔角附近产生密集的稳定环形流。如果释放频率比平均转速低两倍,则激发惯性波。与惯性波在流体体积中的传播相关的振荡运动导致在腔体侧壁上的斯托克斯边界层中出现额外的稳定流。在这种情况下,可视化器的重颗粒在侧壁上组装成环形结构。图案由稳流结构决定,稳流结构又取决于惯性光束从腔体侧壁反射的次数。对于某些频率,惯性波会经历空间共振,从而产生惯性模,这是空腔几何结构的本征模。惯性模式的共振改变了边界层附近的稳定流动结构,这在模式的直接重建中表​​现出来。结果表明,纬向流的强度,以及由惯性波激发的稳定流的强度,与自由振幅的平方成正比。

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