首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Weak wind-wave/tide interaction over fixed and moveable bottoms: a formulation and some preliminary results
【24h】

Weak wind-wave/tide interaction over fixed and moveable bottoms: a formulation and some preliminary results

机译:固定和活动底部的弱风/潮相互作用:一个公式和一些初步结果

获取原文
获取原文并翻译 | 示例
           

摘要

The formulation of weak wind-wave/low-frequency current interaction is discussed comprehensively as applied to fixed- and moveable-bottom cases. It involves (1) a dependence of the drag coefficient on the ratio between wave and current bottom friction velocity amplitudes, (2) the resistance law for the oscillatory, rough, turbulent bottom boundary layer (BBL) which accounts for the usually neglected effects of rotation and the phase difference between the bottom stress and the friction-free current velocity, (3) the expression for the BBL depth in terms of the bottom Rossby number and (4) the bottom roughness predictor of Grant and Madsen (J. Geophys. Res., 87 (1982) 469) in the version of Tolman (J. Phys. Oceanogr., 24 (1994) 994). The formulation is implemented in the UCA (University of Cadiz) 2D nonlinear, high-resolution, hydrodynamic model and used to study the influence of wind-wave/tide interaction, bottom mobility and the improved flow-resistance description on the M-2 tidal dynamics of Cadiz Bay. The inclusion of either of the first two factors can cause the drag coefficient to increase significantly over its reference value. If the third factor is included, changes in the drag coefficient are quite moderate. This is because the effect of rotation is opposite in sign to the effect of phase difference, so that these effects taken together very nearly balance. The reason why bottom mobility has such an important influence on shallow-water tidal dynamics as wind-wave/tide interaction has, is the occurrence of the large irregular variations in the drag coefficient that accompany sediment motion. (c) 2005 Elsevier Ltd. All rights reserved.
机译:全面讨论了弱风波/低频电流相互作用的公式,并将其应用于固定和活动底部情况。它涉及(1)阻力系数对波和当前底部摩擦速度幅度之间的比率的依赖性;(2)振荡,粗糙,湍流的底部边界层(BBL)的阻力定律解释了通常忽略的作用旋转和底部应力与无摩擦电流速度之间的相位差,(3)以底部Rossby数表示的BBL深度的表达式,以及(4)Grant和Madsen的底部粗糙度预测器(J.Geophys。 Res。,87(1982)469)的Tolman版本(J. Phys。Oceanogr。,24(1994)994)。该公式在UCA(加的斯大学)的2D非线性,高分辨率,水动力模型中实现,用于研究风浪/潮汐相互作用,海底流动性和改进的流阻描述对M-2潮汐的影响。加的斯湾的动态。包含前两个因素中的任何一个都会导致阻力系数大大超过其参考值。如果包括第三因素,则阻力系数的变化是相当适度的。这是因为旋转的作用在符号上与相位差的作用相反,因此这些作用加在一起非常接近平衡。底部迁移率像风浪/潮汐相互作用一样对浅水潮汐动力学产生如此重要的影响的原因是,伴随着泥沙运动的阻力系数出现了很大的不规则变化。 (c)2005 Elsevier Ltd.保留所有权利。

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