首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Nonlinear evolution of shear instabilities of the longshore current: A comparison of observations and computations
【24h】

Nonlinear evolution of shear instabilities of the longshore current: A comparison of observations and computations

机译:近岸洋流剪切不稳定性的非线性演化:观测和计算的比较

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The time dependent nearshore circulation field during 3 days of the SUPERDUCK field experiment is simulated. We consider the generation of nearshore currents due to obliquely incident breaking waves, damping effects due to bottom friction, and diffusion effects due to lateral momentum mixing caused by turbulence and depth-varying current velocities. Because of uncertainties in the friction and lateral mixing coefficients, numerical simulations are carried out for a realistic range of values for these coefficients. The resulting shear instabilities of the longshore current exhibit unsteady longshore progressive vortices with timescales of O(100 s) and length scales of O(100 m) and longer. The time dependent flow involves the strengthening, weakening, and interaction of vortices. Vortex pairs are frequently shed offshore. During this process, locally strong offshore directed currents are generated. We find that a stronger mean current and faster and more energetic vortex structures result as the friction coefficient is decreased. However, the longshore length scales of the resulting flow structures are not altered significantly. An increase in the mixing coefficient causes relatively small variations in the propagation speeds. However, the resulting flow structures are less energetic with larger longshore length scales. Shear instabilities are found to induce significant horizontal momentum mixing in the surf zone and affect the cross-shore distribution of the mean longshore current. Mixing due to the presence of the instabilities is found to be dominant over mixing caused by more traditional mechanisms such as turbulence. For values of the free parameters that reproduce the propagation speed of the observed motions, the frequency range within which shear instabilities are observed as well as the mean longshore current profile are predicted well.
机译:模拟了SUPERDUCK野外实验3天中随时间变化的近岸环流场。我们考虑了由于倾斜入射的破碎波而产生的近岸电流,由于底部摩擦而产生的阻尼效应,以及由于湍流和深度变化的流速导致的横向动量混合而产生的扩散效应。由于摩擦系数和横向混合系数的不确定性,对这些系数的实际值范围进行了数值模拟。由此产生的近岸洋流剪切不稳定性表现出不稳定的近岸渐进涡流,其时标为O(100 s),长度标度为O(100 m)或更长。随时间变化的流动涉及涡流的增强,减弱和相互作用。涡流对经常脱落到近海。在此过程中,会产生局部较强的海上定向电流。我们发现,随着摩擦系数的降低,平均电流更强,涡结构更快速,更有活力。但是,所形成的流动结构的沿岸长度尺度没有显着改变。混合系数的增加引起传播速度的相对较小的变化。但是,所得的流动结构在较大的岸边长度尺度下能量较低。发现剪切不稳定性会在冲浪区中引起明显的水平动量混合,并影响平均近岸流的跨岸分布。发现由于不稳定性的存在而导致的混合比由更传统的机制(例如湍流)引起的混合占优势。对于重现观察到的运动传播速度的自由参数的值,可以很好地预测观察到剪切不稳定性的频率范围以及平均近岸海流剖面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号