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The effect of breaking waves on a coupled model of wind and ocean surface waves.

机译:破碎波对风和海洋表面波耦合模型的影响。

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摘要

Understanding the role of breaking surface waves in air-sea exchange processes is integral to accurate weather and climate modeling. A coupled wind and ocean surface wave model is developed that includes the enhanced form drag of breaking waves. Breaking and non-breaking waves induce air-side fluxes of momentum and energy in a thin layer above the air-sea interface within the constant stress layer (the wave boundary layer). By conserving momentum and energy in the wave boundary layer and wave energy, we derive coupled nonlinear advance-delay differential equations, which govern four physical quantities critical to air-sea transfer processes: the vertical wind profiles of the speed and turbulent stress, the wave height spectrum, and the length distribution of breaking wave crests as a function of wave scale. Introduction of non-dimensional variables elucidates the parameters controlling the momentum fluxes into breaking and non-breaking waves. In order to understand better the coupled wind and wave system, analytic solutions are obtained for limiting cases with either wind input to only breaking or input to only non-breaking waves. To solve the full system of advance-delay differential equations, we developed a numerical method based on two nested iterations. Solutions indicate that the number of breaking waves strongly depends on the sea state. Furthermore, breaking waves may contribute significantly to the total air-sea momentum flux. The breaking wave contribution increases for younger, strongly forced wind waves. This new wind and wave model provides a powerful tool to gain insight into complex coupled wind-wave dynamics.
机译:准确了解天气和气候模型,必须了解在海海交换过程中破坏面波的作用。建立了耦合的海浪和海面波浪模型,该模型包括增强的破碎波形式阻力。破裂波和非破裂波在恒定应力层(波边界层)内的海-气界面上方的薄层中感应出空气侧的动量和能量通量。通过保存波边界层中的动量和能量以及波能量,我们导出了耦合的非线性超前-时滞微分方程,该方程控制着对海-气传输过程至关重要的四个物理量:速度和湍流应力的垂直风廓线,波浪高度谱,以及破碎波峰的长度分布作为波标的函数。无量纲变量的引入阐明了控制进入破裂波和非破裂波的动量通量的参数。为了更好地理解风浪耦合系统,获得了用于将风输入为仅破碎波或仅输入为非破碎波的有限情况的解析解。为了解决整个系统的超前延迟微分方程,我们开发了一种基于两个嵌套迭代的数值方法。解决方案表明,破碎波的数量很大程度上取决于海况。此外,破碎波可能对总的海气动量通量有很大贡献。对于更年轻,更强的风浪,破碎波的贡献会增加。这种新的风浪模型提供了一个强大的工具,可以深入了解复杂的耦合风浪动力学。

著录项

  • 作者

    Kukulka, Tobias.;

  • 作者单位

    University of Rhode Island.;

  • 授予单位 University of Rhode Island.;
  • 学科 Physical Oceanography.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋物理学;
  • 关键词

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