Using Lagrangian coherent structures to investigate upwelling and physical process in the Gladstone coastal region

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Marine Systems Pub Date : 2022-06-01 DOI:10.1016/j.jmarsys.2022.103731
Anusmriti Ghosh , Kabir Suara , Tarmo Soomere , Richard J. Brown
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引用次数: 2

Abstract

Coastal upwelling plays an important role in the exchange of nutrients and pollutants. Understanding of upwelling and its predictors allows for important management of nutrient-enriched coastal waters. This study presents an analysis of coastal upwelling with a focus on Gladstone, Queensland (Australia). Particularly, Lagrangian coherent structures (LCSs) are used to quantify the spatio-temporal variability of upwellings, and to reveal the relationships between the surface mixing and physical properties of water masses and oceanographic activity in the Gladstone region. Four different seasonal selections of water surface velocity data (for summer, autumn, winter and spring) are compared with wind, sea surface temperature (SST), sea surface salinity and density data to investigate the coastal upwelling area. The surface mixing is calculated based on the backward Finite-Time Lyapunov Exponent (FTLE) diagnostic approach of LCSs. The strong seasonality of upwelling largely follows seasonal patterns of winds. Results highlight how upwelling behaviour varied with the intensity of cyclones. The core conclusion is that upwelling dynamics, estimated using classic means such as SST, have a strong correlation with the FTLE metric of LCSs. The potential upwelling hotspot shows that on average, it has 17.3% of its area above the FTLE threshold, compared to a non-upwelling area which has a corresponding percentage of 0.64%. This relationship makes it possible to define different upwelling locations, and properties of upwellings (e.g., seasonal variability, cyclone effect) as a function of FTLE, a derivative of the surface velocity field. Therefore, LCSs can be used to predict surface mixing and upwelling behaviour in coastal water systems.

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利用拉格朗日相干结构研究格莱斯顿海岸地区的上升流和物理过程
沿海上升流在营养物和污染物的交换中起着重要作用。了解上升流及其预测因素有助于对富营养化沿海水域进行重要管理。本研究以澳大利亚昆士兰州格拉德斯通为重点,对沿海上升流进行了分析。利用拉格朗日相干结构(LCSs)量化了上升流的时空变化,揭示了格拉德斯通地区表面混合、水团物理性质与海洋活动之间的关系。利用夏、秋、冬、春4个不同季节选择的海面速度资料,与风、海温、盐度和密度资料进行对比,对沿海上升流区进行调查。基于lcs的后向有限时间李雅普诺夫指数(FTLE)诊断方法计算了表面混合。上升流的强烈季节性很大程度上遵循风的季节性模式。结果强调了上升流的行为如何随气旋强度的变化而变化。核心结论是,使用海温等经典方法估计的上升流动力学与lcs的FTLE度量具有很强的相关性。潜在上升流热点区平均超过FTLE阈值的面积为17.3%,而非上升流热点区平均超过FTLE阈值的面积为0.64%。这种关系使得可以将不同的上升流位置和上升流的性质(例如,季节变化、气旋效应)定义为FTLE的函数,FTLE是表面速度场的导数。因此,lcs可以用来预测沿海水系统的表面混合和上升流行为。
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来源期刊
Journal of Marine Systems
Journal of Marine Systems 地学-地球科学综合
CiteScore
6.20
自引率
3.60%
发文量
81
审稿时长
6 months
期刊介绍: The Journal of Marine Systems provides a medium for interdisciplinary exchange between physical, chemical and biological oceanographers and marine geologists. The journal welcomes original research papers and review articles. Preference will be given to interdisciplinary approaches to marine systems.
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