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Laboratory Experiments on Internal Solitary Waves in Ice-Covered Waters

机译:冰盖水域内部孤独波浪的实验室实验

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Internal solitary waves (ISWs) propagating in a stably stratified two-layer fluid in which the upper boundary condition changes from open water to ice are studied for grease, level, and nilas ice. The ISW-induced current at the surface is capable of transporting the ice in the horizontal direction. In the level ice case, the transport speed of, relatively long ice floes, nondimensionalized by the wave speed is linearly dependent on the length of the ice floe nondimensionalized by the wave length. Measures of turbulent kinetic energy dissipation under the ice are comparable to those at the wave density interface. Moreover, in cases where the ice floe protrudes into the pycnocline, interaction with the ice edge can cause the ISW to break or even be destroyed by the process. The results suggest that interaction between ISWs and sea ice may be an important mechanism for dissipation of ISW energy in the Arctic Ocean.
机译:在稳定分层的两层流体中传播的内部孤立波(ISW),其中对润滑脂,水平和NiLAS冰进行了从开放水变为冰的上边界条件。 表面处的ISW感应电流能够在水平方向上运输冰。 在水平冰壳中,通过波速度的流动性,相对较长的冰川的传输速度线性地取决于冰絮凝物的长度,通过波长化。 冰下湍流动能耗散测量与波密度界面处的仪表相当。 此外,在冰浮胶突出到Pycnocline的情况下,与冰边的相互作用会导致ISW断裂或甚至被该过程破坏。 结果表明,ISWS和海冰之间的相互作用可能是北冰洋中isw能量耗散的重要机制。

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