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Jets and Waves Generated by an Obstacle in Stratified or Homogeneous Fluids

机译:由分层或均匀流体的障碍物产生的喷气机和波

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Jets and waves, whose origin is in gravity force, are often observed in fluids. When the fluid has a vertical density stratification, both can be generated due to the buoyancy force. The jet appears when an obstacle descends vertically in a stratified fluid. The generation is supported by the molecular diffusion of the stratifying scalar such as salt. If there is no scalar/density diffusion, the density must be conserved along the fluid motion, and the originally horizontal isopycnal surfaces are simply deformed as they are dragged down by the obstacle, so that the dragged fluid will move downward indefinitely and will never go back to its original height. If the diffusion exists, the fluid can change its original density, and move away from the isopycnal surface to which the fluid originally belonged. In this study, we demonstrate the generation process of the jet, along with its interaction with the internal gravity waves. As another example of waves in fluids, water waves with capillary effects in a homogeneous fluid are numerically simulated, showing the excitation of short capillary waves by a long solitary wave. The phenomenon has been predicted by a weakly nonlinear theory, but has not yet been observed.
机译:在流体中通常观察到射流和波浪,其起源是重力力。当流体具有垂直密度分层时,两者都可以由于浮力而产生。当障碍物在分层流体中垂直下降时,喷射出现。通过分层标量如盐的分子扩散来支持这一代。如果没有标量/密度扩散,则密度必须沿着流体运动保存,并且最初水平的等物表面被障碍物拖下来时简单地变形,因此拖动的流体将无限期向下移动,永远不会移动回到原来的高度。如果存在扩散,则流体可以改变其原始密度,并远离最初所属的流体的异层表面。在这项研究中,我们展示了喷射的生成过程,以及其与内重波的相互作用。作为流体中的波浪的另一个例子,在数值模拟均匀流体中具有毛细管效应的水波,显示通过长孤立波的短毛刺的激发。该现象已经通过弱非线性理论预测,但尚未观察到。

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