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The Red Sea: An Arena for Wind-Wave Modeling in Enclosed Seas

机译:红海:封闭海洋中风波建模的竞技场

摘要

Wind and waves play a major role in important ocean dynamical processes, such as the exchange of heat, momentum and gases between atmosphere and ocean, that greatly contributes to the earth climate and marine lives. Knowledge on wind and wave weather and climate is crucial for a wide range of applications, including oceanographic studies, maritime activities and ocean engineering. Despite being one of the important world shipping routes, the wind-wave characteristics in the Red Sea are yet to be fully explored. Because of the scarcity of waves data in the Red Sea, numerical models become crucial and provide very powerful tools to extrapolate wind and wave data in space, and backward and forward in time. Unlike open oceans, enclosed basins wave have different characteristics, mainly because of their local generation processes. The complex orography on both sides of the Red Sea makes the local wind, and consequently wave, modeling very challenging. This thesis considers the modeling of wind-wave characteristics in the Red Sea, including their climate variability and trends using state-of-the-art numerical models and all available observations. Different approaches are investigated to model and understand the general and unusual wind and wave conditions in the basin using standard global meteorological products and customised regional wind and wave models. After studying and identifying the main characteristics of the wind-wave variability in the Red Sea, we demonstrate the importance of generating accurate atmospheric forcing through data assimilation for reliable wave simulations. In particular, we show that the state-of-the-art physical formulation of wave models is not suitable to model the unique situation of the two opposing wind-waves systems in the Red Sea Convergence Zone, and propose and successfully test a modification to the input and white-capping source functions to address this problem. We further investigate the climate variability and trends of wind and waves in the Red Sea using high-resolution wind and wave reanalyses that have been generated as part of this thesis. An innovative spectral partition technique is first applied to distinguish the dominant wave systems. Our analysis demonstrates that winds, and consequently waves, exhibit a decreasing trend in the Red Sea. This is mainly attributed to a remarkable weakening of the winds protruding from the Mediterranean Sea. We also use these highresolution reanalyses to assess the potential for harvesting wind and wave energy from the Red Sea.
机译:风和波浪在重要的海洋动力学过程中起着重要作用,例如大气与海洋之间的热,动量和气体交换,这极大地促进了地球气候和海洋生物。有关风浪天气和气候的知识对于包括海洋学,海洋活动和海洋工程在内的广泛应用至关重要。尽管它是世界上重要的航运路线之一,但红海中的风浪特征仍有待充分探索。由于红海中海浪数据的稀缺性,数值模型变得至关重要,并提供了非常强大的工具来推断空间中的风和海浪数据,以及在时间上向前和向后的推论。与开放海洋不同,封闭盆地波具有不同的特征,这主要是由于它们的局部生成过程。红海两岸的地形复杂,使当地的风向和海浪产生了很大的挑战。本文考虑使用最新的数值模型和所有可用观测资料对红海中的风波特征进行建模,包括其气候变异性和趋势。使用标准的全球气象产品和定制的区域风浪模型,研究了各种方法来模拟和了解流域的一般和异常风浪条件。在研究并确定了红海中风浪变率的主要特征之后,我们证明了通过数据同化产生准确的大气强迫对于可靠的波浪模拟的重要性。特别是,我们显示出最新的波浪模型物理公式不适用于对红海收敛区中两个相对的风浪系统的独特情况进行建模,并提出并成功测试了对输入和白色上限源功能可解决此问题。我们使用高分辨率风和浪再分析作为本文的一部分,进一步研究了红海中的气候变异性和风和浪的趋势。首先应用一种创新的频谱划分技术来区分主导波系统。我们的分析表明,在红海中,风以及随之而来的海浪呈现出下降的趋势。这主要归因于从地中海吹出的风的明显减弱。我们还使用这些高分辨率的再分析方法来评估从红海收获风能和波能的潜力。

著录项

  • 作者

    Langodan Sabique;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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