流图和连贯集表征居住时间和连通性在泻湖和珊瑚礁:红海的情况

M. Doshi, C. S. Kulkarni, W. Ali, A. Gupta, Pierre FJ Lermusiaux, P. Zhan, I. Hoteit, O. Knio
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引用次数: 6

摘要

为了了解泻湖和珊瑚礁等海洋生态系统的动态和健康状况,以及了解人类活动对这些系统的影响,预测水团的停留时间和海洋域之间的连通性是必不可少的。在目前的工作中,我们考虑红海的原始泻湖和珊瑚礁作为这种敏感生态系统的一个例子,其中有大量的海洋物种,其中许多是该地区独有的。为了研究停留时间和连通性模式,我们利用偏微分方程的动态三维拉格朗日分析的最新进展。具体来说,我们扩展并应用了我们新颖的高效流图组成方案来预测任何特定水团离开感兴趣的区域(即泻湖)所需的时间,以及任何特定水团进入该区域所需的时间。这些时空停留时间场与有限时间李雅普诺夫指数(FTLE)场等四维拉格朗日度量一起,提供了对红海泻湖拉格朗日路径和连接模式的定量描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flow Maps and Coherent Sets for Characterizing Residence Times and Connectivity in Lagoons and Coral Reefs: The Case of the Red Sea
To understand the dynamics and health of marine ecosystems such as lagoons and coral reefs as well as to understand the impact of human activities on these systems, it is imperative to predict the residence times of water masses and connectivity between ocean domains. In the present work, we consider the pristine lagoons and coral reefs of the Red Sea as an example of such sensitive ecosystems, with a large number of marine species, many of which are unique to the region. To study the residence times and connectivity patterns, we make use of recent advances in dynamic three-dimensional Lagrangian analyses using partial differential equations. Specifically, we extend and apply our novel efficient flow map composition scheme to predict the time needed for any particular water parcel to leave the domain of interest (i.e. a lagoon) as well as the time for any particular water parcel to enter that domain. These spatiotemporal residence time fields along with four-dimensional Lagrangian metrics such as finite time Lyapunov exponent (FTLE) fields provide a quantitative description of the Lagrangian pathways and connectivity patterns of lagoons in the Red Sea.
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