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Potential of High Spatial and Temporal Ocean Color Satellite Data to Study the Dynamics of Suspended Particles in a Micro-Tidal River Plume

机译:利用高空和时空海洋彩色卫星数据研究微潮河羽中悬浮颗粒的动力学

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Ocean color satellite sensors are powerful tools to study and monitor the dynamics of suspended particulate matter (SPM) discharged by rivers in coastal waters. In this study, we test the capabilities of Landsat-8/Operational Land Imager (OLI), AQUA&TERRA/Moderate Resolution Imaging Spectroradiometer (MODIS) and MSG-3/Spinning Enhanced Visible and Infrared Imager (SEVIRI) sensors in terms of spectral, spatial and temporal resolutions to (i) estimate the seawater reflectance signal and then SPM concentrations and (ii) monitor the dynamics of SPM in the Rh?ne River plume characterized by moderately turbid surface waters in a micro-tidal sea. Consistent remote-sensing reflectance (Rrs) values are retrieved in the red spectral bands of these four satellite sensors (median relative difference less than ~16% in turbid waters). By applying a regional algorithm developed from in situ data, these Rrs are used to estimate SPM concentrations in the Rh?ne river plume. The spatial resolution of OLI provides a detailed mapping of the SPM concentration from the downstream part of the river itself to the plume offshore limits with well defined small-scale turbidity features. Despite the low temporal resolution of OLI, this should allow to better understand the transport of terrestrial particles from rivers to the coastal ocean. These details are partly lost using MODIS coarser resolutions data but SPM concentration estimations are consistent, with an accuracy of about 1 to 3 g·m ?3 in the river mouth and plume for spatial resolutions from 250 m to 1 km. The MODIS temporal resolution (2 images per day) allows to capture the daily to monthly dynamics of the river plume. However, despite its micro-tidal environment, the Rh?ne River plume shows significant short-term (hourly) variations, mainly controlled by wind and regional circulation, that MODIS temporal resolution failed to capture. On the contrary, the high temporal resolution of SEVIRI makes it a powerful tool to study this hourly river plume dynamics. However, its coarse resolution prevents the monitoring of SPM concentration variations in the river mouth where SPM concentration variability can reach 20 g·m ?3 inside the SEVIRI pixel. Its spatial resolution is nevertheless sufficient to reproduce the plume shape and retrieve SPM concentrations in a valid range, taking into account an underestimation of about 15%–20% based on comparisons with other sensors and in situ data. Finally, the capabilities, advantages and limits of these satellite sensors are discussed in the light of the spatial and temporal resolution improvements provided by the new and future generation of ocean color sensors onboard the Sentinel-2, Sentinel-3 and Meteosat Third Generation (MTG) satellite platforms.
机译:海洋彩色卫星传感器是研究和监测沿海水域河流排放的悬浮颗粒物(SPM)动态的强大工具。在这项研究中,我们在频谱,空间方面测试了Landsat-8 /运营性陆地成像仪(OLI),AQUA&TERRA /中分辨率成像光谱仪(MODIS)和MSG-3 /自旋增强可见光和红外成像仪(SEVIRI)传感器的功能和(i)估算海水反射率信号,然后估算SPM浓度的时间分辨率;(ii)监测罗纳河羽流中SPM的动态,其特征是微潮海中地表水呈中等浑浊。在这四个卫星传感器的红色光谱带中检索到一致的遥感反射率(Rrs)值(在浑浊的水中,中位数相对差异小于〜16%)。通过应用根据现场数据开发的区域算法,这些Rrs可用于估算罗纳河羽流中的SPM浓度。 OLI的空间分辨率可提供从河流下游部分到羽状近海界限的SPM浓度的详细映射,并具有明确定义的小尺度浊度特征。尽管OLI的时间分辨率很低,但是这应该可以更好地了解从河流到沿海海洋的陆地颗粒运输。这些细节在使用MODIS较粗分辨率数据时会部分丢失,但SPM浓度估算是一致的,对于250 m至1 km的空间分辨率,在河口和羽流中的精度约为1至3 g·m?3。 MODIS时间分辨率(每天2张图像)允许捕获河羽的每日至每月动态。然而,尽管罗纳河羽流处于微潮环境,但仍显示出明显的短期(每小时)变化,主要受风和区域环流控制,MODIS时间分辨率未能捕获。相反,SEVIRI的高时间分辨率使其成为研究这种每小时时空羽流动力学的有力工具。但是,其粗略的分辨率阻止了在SEVIRI像素内部SPM浓度变化可达到20 g·m?3的河口监测SPM浓度变化。然而,考虑到与其他传感器和原位数据的比较低估了约15%–20%,其空间分辨率足以再现羽状形状并在有效范围内检索SPM浓度。最后,根据Sentinel-2,Sentinel-3和Meteosat第三代(MTG)上新一代和未来的海洋颜色传感器提供的空间和时间分辨率的改进,讨论了这些卫星传感器的功能,优势和局限性。 )卫星平台。

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