Influence of the Coriolis Force on Spreading of River Plumes

Remote. Sens. Pub Date : 2023-07-04 DOI:10.3390/rs15133397
A. Osadchiev, Ivan Alfimenkov, V. Rogozhin
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Abstract

Wind is the main external force that governs the spreading of river plumes in the sea. Many previous studies demonstrated that the spreading direction of river plumes (especially small plumes) generally coincides with wind direction. At the same time, the majority of river plumes are strongly affected by the Coriolis force, which is also among the baseline knowledge about the plumes. In this study, we focus on the deflection of plumes from wind direction induced by the Coriolis force, which received little attention before. For this purpose, we analyzed an extensive set of Landsat 8 and Sentinel-2 satellite images of multiple small- and medium-sized river plumes at different parts of the World Ocean and synchronous wind reanalysis data. We demonstrated that the deflection angle is stable for individual river plumes for different wind directions, albeit with certain limitations related to wind speed and coastal morphology. Moreover, the deflection angle is similar for river plumes located at similar latitudes and varies from ~0° near the Equator to 15–25° in temperate zones and ~30° in polar zones. Finally, we derived a direct relation between latitude and the deflection angle. The obtained results contribute to our understanding of universal features of river plume dynamics, which is important for monitoring and forecasting of delivery and fate of fluvial water and river-borne matter in different coastal regions of the World Ocean.
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科里奥利力对河流羽流扩散的影响
风是控制河流羽流在海洋中扩散的主要外力。以往的许多研究表明,河流羽流(尤其是小羽流)的扩散方向通常与风向一致。与此同时,大多数河流羽流都受到科里奥利力的强烈影响,这也是关于羽流的基本知识之一。本文重点研究了在科氏力作用下羽流偏离风向的问题,这是以往很少关注的问题。为此,我们分析了一组广泛的Landsat 8和Sentinel-2卫星图像,其中包括世界海洋不同地区的多个中小型河流羽流和同步风再分析数据。我们证明了不同风向下单个河流羽流的偏转角度是稳定的,尽管与风速和海岸形态有关的某些限制。此外,位于相似纬度的河流羽流的偏转角度相似,从赤道附近的~0°到温带的15-25°和极地的~30°不等。最后,我们推导出了纬度与偏转角之间的直接关系。所得结果有助于我们了解河流羽流动力学的普遍特征,这对于监测和预测世界海洋不同沿海地区河流水和河载物质的输送和命运具有重要意义。
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