首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Thermocline characterisation in the Cariaco basin: A modelling study of the thermocline annual variation and its relation with winds and chlorophyll-a concentration
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Thermocline characterisation in the Cariaco basin: A modelling study of the thermocline annual variation and its relation with winds and chlorophyll-a concentration

机译:Cariaco盆地的温跃层特征:温跃层年变化及其与风和叶绿素a浓度的关系的模型研究

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The spatial and temporal evolution of the thermocline depth and width of the Cariaco basin (Venezuela) is analysed by means of a three-dimensional hydrodynamic model. The thermocline depth and width are determined through the fitting of model temperature profiles to a sigmoid function. The use of whole profiles for the fitting allows for a robust estimation of the thermocline characteristics, mainly width and depth. The fitting method is compared to the maximum gradient approach, and it is shown that, under some circumstances, the method presented in this work leads to a better characterisation of the thermocline. After assessing, through comparison with independent in situ data, the model capabilities to reproduce the Cariaco basin thermocline, the seasonal variability of this variable is analysed, and the relationship between the annual cycle of the thermocline depth, the wind field and the distribution of chlorophyll-a concentration in the basin is studied. The interior of the basin reacts to easterly winds intensification with a rising of the thermocline, resulting in a coastal upwelling response, with the consequent increase in chlorophyll-a concentration. Outside the Cariaco basin, where an open ocean, oligothrophic regime predominates, wind intensification increases mixing of the surface layers and induces therefore a deepening of the thermocline. The seasonal cycle of the thermocline variability in the Cariaco basin is therefore related to changes in the wind field. At shorter time scales (i.e. days), it is shown that other processes, such as the influence of the meandering Caribbean current, can also influence the thermocline variability. The model thermocline depth is shown to be in good agreement with the two main ventilation events that took place in the basin during the period of the simulation.
机译:利用三维流体动力学模型分析了Cariaco盆地(委内瑞拉)温跃层深度和宽度的时空演化。通过将模型温度曲线拟合到S型函数来确定温度跃迁的深度和宽度。使用整个轮廓进行拟合可对热跃线特性(主要是宽度和深度)进行可靠的估算。将拟合方法与最大梯度方法进行了比较,结果表明,在某些情况下,本文提出的方法可以更好地表征温跃层。通过与独立的原位数据进行比较,评估了再现Cariaco盆地温跃层的模型能力,分析了该变量的季节变化,以及温跃层深度的年周期,风场和叶绿素分布之间的关系。 -研究盆地中的浓度。盆地内部对逆风的增强反应有温跃层的上升,导致沿海上升流响应,因此叶绿素-a浓度增加。在Cari​​aco盆地之外,这里是大洋,寡液状态的主要地区,风势增强会增加表层的混合,从而引起温跃层的加深。因此,Cariaco盆地中的温跃层变化的季节周期与风场的变化有关。结果表明,在较短的时间范围内(即几天),其他过程(例如蜿蜒的加勒比海流的影响)也会影响温跃层的变化。结果表明,模型的温度跃层深度与模拟期间盆地中发生的两个主要通风事件高度吻合。

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