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Synergy of satellite remote sensing and numerical modeling for monitoring of suspended particulate matter

机译:卫星遥感与数值模拟协同监测悬浮颗粒物

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摘要

Monitoring and modeling of the distribution of suspended particulate matter (SPM) is an important task, especially in coastal environments. Several SPM models have been developed for the North Sea. However, due to waves in shallow water and strong tidal currents in the southern part of the North Sea, this is still a challenging task. In general there is a lack of measurements to determine initial distributions of SPM in the bottom sediment and essential model parameters, e.g., appropriate exchange coefficients. In many satellite-borne ocean color images of the North Sea a plume is visible, which is caused by the scattering of light at SPM in the upper ocean layer. The intensity and length of the plume depends on the wave and current climate. It is well known that the SPM plume is especially obvious shortly after strong storm events. In this paper a quasi-3-D and a 3-D SPM transport model are presented. Utilizing the synergy of satellite-borne ocean color data with numerical models, the vertical exchange coefficients due to currents and waves are derived. This results in models that for the first time are able to reproduce the temporal and spatial evolution of the plume intensity. The SPM models consist of several modules to compute ocean dynamics, the vertical and horizontal exchange of SPM in the water column, and exchange processes with the seabed such as erosion, sedimentation, and resuspension. In the bottom layer, bio-turbation via benthos and diffusion processes is taken into account.
机译:悬浮颗粒物(SPM)分布的监视和建模是一项重要任务,尤其是在沿海环境中。已经为北海开发了几种SPM模型。然而,由于北海南部的浅水波和强大的潮流,这仍然是一项艰巨的任务。通常,缺乏确定底部沉积物中SPM的初始分布和基本模型参数(例如适当的交换系数)的测量方法。在北海的许多人造卫星海洋彩色图像中,可以看到羽状流,这是由于上层海洋中SPM处的光散射所致。羽流的强度和长度取决于波浪和当前的气候。众所周知,强风暴事件发生后不久,SPM羽流尤为明显。本文提出了准3维和3维SPM传输模型。利用卫星传播的海洋颜色数据与数值模型的协同作用,得出了由于水流和波浪引起的垂直交换系数。这导致模型首次能够再现羽流强度的时间和空间演变。 SPM模型由几个模块组成,这些模块可计算海洋动力学,水柱中SPM的垂直和水平交换以及与海床的交换过程,例如侵蚀,沉积和重悬浮。在底层,考虑了通过底栖生物和扩散过程引起的生物扰动。

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