How to differentiate between coastal cooling and upwelling events on SST images?

E. Esiukova, I. Chubarenko, A. O. Sinyukhin
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引用次数: 5

Abstract

We aim to find on MODIS (Aqua, Terra) SST-pictures of the South-Eastern Baltic those characteristic features, which allow to distinguish the differential coastal cooling from the coastal upwelling events, even though their manifestations look much alike. The basis is data of MODIS (Aqua, Terra) spectroradiometers for 2000–2013. We analyze horizontal SST-profiles above coastal slopes under conditions of autumnal cooling and during well known upwelling events. The SST profiles above slopes are formed as a result of joint contribution of heat exchange with the atmosphere and horizontal transport of heat from the sea. Satellite images of October-November, corresponding to the periods of well pronounced decrease in air temperature (with time rate of change as large as 0.86–2.54 C/day) were analyzed. Typical shape of the profiles, demonstrating the presence of differential coastal cooling over the distance of 10–20 km from the shore, allows for allocation of the region where thermocline meets the slope, what gives (for the given bathymetry) an information on current thickness of the upper mixed layer (UML). Shape of the SST profile is quite conservative, not sensitive to both the steepness of the bottom slope, bathymetry peculiarities, and intensity of cooling and even wind conditions, indicating that sea-shelf heat exchange is in general close to the steady state. The SST drop from open to coastal area is about 2–3 °C and does not depend on the thickness of the UML or the steepness of the slope. On the other hand, about 90 events of coastal upwelling in May-November 2000–2013 in South-Eastern Baltic were selected and the features of the horizontal SST-profiles above the same coastal slopes were analyzed. It appeared that the shape of the SST-profiles demonstrates the presence of upwelling quite definitely, what allows for effective differentiation from the coastal cooling effects.
如何区分海温图像上的海岸冷却和上升流事件?
我们的目标是在波罗的海东南部的MODIS (Aqua, Terra)海温图像上找到这些特征,这些特征可以区分沿海冷却和沿海上升流事件的差异,尽管它们的表现看起来非常相似。依据是MODIS (Aqua, Terra)光谱仪2000-2013年的数据。我们分析了在秋季降温和众所周知的上升流期间沿海斜坡上的水平海温剖面。斜坡上的海温剖面是与大气的热交换和来自海洋的热量水平输送共同作用的结果。分析了气温明显下降时期(时间变化率高达0.86-2.54℃/d)的10 - 11月卫星图像。剖面的典型形状表明,在距离海岸10-20公里的距离上存在不同的海岸冷却,允许分配温跃层与斜坡相交的区域,这(对于给定的测深)提供了上层混合层(UML)当前厚度的信息。海温剖面的形状相当保守,对底部坡度的陡度、水深特性、冷却甚至风条件的强度都不敏感,表明陆架热交换总体上接近稳定状态。从开放区到沿海区海温下降约为2-3°C,不取决于UML的厚度或坡度的陡峭程度。另一方面,选取2000-2013年5 - 11月波罗的海东南部近90次海岸上升流事件,分析了同一岸坡上水平海温剖面特征。海温剖面的形状似乎非常明确地证明了上升流的存在,这使得与沿海冷却效应的有效区分成为可能。
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