首页> 外文学位 >Large-eddy Simulation of the Inner Continental Shelf Under the Combined Effects of Surface Temperature Fluxes, Tidal Currents and Langmuir Circulation.
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Large-eddy Simulation of the Inner Continental Shelf Under the Combined Effects of Surface Temperature Fluxes, Tidal Currents and Langmuir Circulation.

机译:在表面温度通量,潮流和朗缪尔环流共同作用下的内陆大陆架大涡模拟。

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摘要

In a shallow shelf region, turbulent motion can have a major effect on coastal processes including ecosystem functioning, surface gas exchange and sediment resuspension. Many factors contribute to such turbulence; wind and wave forcing, buoyancy induced by surface heat fluxes and tidal forcing all play a key role in generating vertical mixing in this shallow region. Alongside these independent sources of turbulence, combinations thereof can lead to full-depth turbulent structures acting secondary to the mean flow and leading to enhanced vertical mixing throughout the entire water column.;Field and laboratory experiments can often prove to be costly and time consuming, and reproducing or maintaining the complex flow dynamics of real world ocean flows is a constant challenge to these methods of research. As such, those interested in developing realistic and useful models of the marine environment to further understand its behavior often rely on 3-dimensional mathematical modeling and simulation. In this dissertation, simulations will be presented of turbulent flow and associated vertical mixing in a domain representative of the shallow coastal ocean, sufficiently far off shore that the land-ocean boundary does not significantly affect the flow behavior. This will be done using a large-eddy simulation (LES) method; solving the governing Navier-Stokes equations over a finite grid designed to capture the large, energy containing turbulent scales, and modeling the smaller, sub-grid scales.;The simulations to be presented feature combinations of coastal forcing mechanisms which are either presently unexplored or the analysis of which has been hindered by the complexity of field measurements and the challenge of isolating independent causes of turbulent motion. This will include surface heat fluxes, tidal forcing and Langmuir (or wave) forcing, acting both in isolation and in conjunction with each other, in order to bridge existing gaps in knowledge and provide a more complete understanding of the generation of full-depth turbulent structures in this shallow coastal water column.
机译:在较浅的陆架区域,湍流运动会对沿海过程产生重大影响,包括生态系统功能,地表气体交换和沉积物再悬浮。造成这种动荡的因素很多。风力和波浪强迫,表面热通量引起的浮力和潮汐强迫都在该浅层区域产生垂直混合中起关键作用。除了这些独立的湍流源外,它们的组合还可能导致全深度湍流结构从平均流量开始起作用,并导致整个水柱的垂直混合增强。现场和实验室实验通常证明是昂贵且耗时的,再现或维持现实世界中海洋流动的复杂流动动力学是对这些研究方法的持续挑战。因此,那些对开发现实和有用的海洋环境模型以进一步了解其行为感兴趣的人通常依赖于3D数学建模和模拟。在本文中,将对代表沿海浅海地区的湍流和相关的垂直混合进行模拟,该区域离海岸足够远,陆地-海洋边界不会显着影响流动行为。这将使用大涡模拟(LES)方法完成;在有限网格上求解控制的Navier-Stokes方程,该网格旨在捕获包含能量的大湍流尺度,并对较小的子网格尺度进行建模。;要进行的模拟具有目前尚未探索的沿海强迫机制的组合野外测量的复杂性以及孤立找出湍流独立原因的挑战阻碍了对这一分析的分析。这将包括表面热通量,潮汐强迫和Langmuir(或波浪)强迫,它们既相互独立又相互配合起作用,以弥合现有的知识鸿沟,并提供对全深度湍流产生的更完整理解。浅水沿海水柱中的建筑物。

著录项

  • 作者

    Walker, Rachel.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Marine and Ocean.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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