Mechanical and Aerospace Engineering Department, University of California, San Diego, La Jolla, California 92093, USA.
Phys Rev Lett. 2010 May 28;104(21):218502. doi: 10.1103/PhysRevLett.104.218502. Epub 2010 May 27.
Three-dimensional direct numerical simulations are performed to examine nonlinear processes during the generation of internal tides on a model continental slope. An intense boundary flow is generated in the critical case where the slope angle is equal to the natural internal wave propagation angle. Wave steepening, that drives spanwise wave breaking via convective instability, occurs. Turbulence is present along the entire extent of the near-critical region of the slope. The turbulence is found to have a strong effect on the internal wave beam by distorting its near-slope structure. A complicated wave field with a broadband frequency spectrum is found. This work explains the formation of boundary turbulence during the generation of internal tides in the regime of low excursion numbers.
本文对模型大陆斜坡上内潮生成过程中的非线性过程进行了三维直接数值模拟。在斜坡角度等于自然内波传播角度的临界情况下,会产生强烈的边界流。波陡化通过对流不稳定性驱动横向波破碎发生。沿斜坡近临界区域的整个范围都存在湍流。发现湍流通过扭曲近坡结构对内波束有很强的影响。存在具有宽带频谱的复杂波场。这项工作解释了在低振幅数条件下内潮生成过程中边界湍流的形成。