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Remote sensing and in situ observations of marine slicks associated with inhomogeneous coastal currents

机译:与非均匀沿海水流有关的海洋浮油的遥感和原位观测

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Field observations co-located and simultaneous with satellite radar imagery of biogenic slick bands on the sea surface aimed to study relation between slicks and marine stream currents were carried out in the coastal zone of the Black Sea. Measurements of the current velocities at different depths were performed using an acoustic Doppler current profiler (ADCP) and surface floats. Samples of surfactant films inside/outside slick bands were collected from the water surface with nets. The sampled films were reconstructed in laboratory conditions and measurements of the damping coefficient of gravity-capillary waves and the surface tension were carried out using an original parametric wave method. It is obtained that the banded slicks are characterized by enhanced concentration of surfactants due to their compression by convergent current components. The slicks are revealed to be oriented along the stream currents and are located in the zones of current shears. Small convergent transverse velocity components are observed near slick boundaries and are responsible for slick formation in stream shear currents. Different examples of slicks formed by stream shear current are described. Results of a case study of two streams of different directions merging and forming a banded slick in a shear zone with convergent transverse current components are presented. Another case study is when a flow below a thermocline coming to the shore meets a bottom slope and a vertical current occurs resulting in horizontal divergence and convergence on the surface.
机译:在黑海沿岸地区进行了现场观测,并与卫星雷达成像同时进行了海面生物浮带的研究,目的是研究浮油与海流之间的关系。使用声学多普勒电流剖面仪(ADCP)和表面浮标对不同深度处的流速进行了测量。用网从水表面收集在光滑带内部/外部的表面活性剂膜样品。在实验室条件下对采样的薄膜进行了重建,并使用原始的参数波方法对重力-毛细管波的阻尼系数和表面张力进行了测量。可以看到,带状的浮油的特征在于由于会聚的电流组分对表面活性剂的压缩,从而增加了表面活性剂的浓度。浮油被揭示为沿着水流方向,并且位于电流剪切带中。在光滑边界附近观察到较小的会聚横向速度分量,它们是在流剪切流中形成光滑的原因。描述了由流剪切电流形成的浮油的不同示例。给出了两个不同方向的流合并并在具有横向电流分量会聚的剪切带中形成带状浮油的案例研究的结果。另一个案例研究是,当热线以下的水流到达岸边时遇到底部倾斜,并且出现垂直电流,从而导致表面水平扩散和收敛。

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