首页> 外文期刊>International journal of remote sensing >Monitoring the maximum turbidity zone and detecting fine-scale turbidity features in the Gironde estuary using high spatial resolution satellite sensor (SPOT HRV, Landsat ETM+) data
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Monitoring the maximum turbidity zone and detecting fine-scale turbidity features in the Gironde estuary using high spatial resolution satellite sensor (SPOT HRV, Landsat ETM+) data

机译:使用高空间分辨率卫星传感器(SPOT HRV,Landsat ETM +)数据监测吉伦特河口的最大浊度区并检测细尺度的浊度特征

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This study concerns the quantification of suspended particulate matter in the highly turbid estuarine waters of the Gironde, France, from high spatial resolution remotely sensed data, SPOT (Satellite Pour l'Observation de la Terre) High Resolution Visible (HRV), Landsat Enhanced Thematic Mapper Plus (ETM + ). The methodology is based on calibration relationships established between the remote sensing reflectance (R_(rs)) signal and suspended particulate matter concentration (SPM), from in situ optical measurements. These relationships are valid in the long term as R_(rs) ratios between near-infrared (NIR) and visible wavebands are relatively independent of the particle grain-size and mineralogy. Consequently, they can be applied to satellite images, even if no simultaneous in situ measurements are carried out concurrently with the satellite overpass. Selected satellite sensor data are corrected for atmospheric effects using radiative transfer code, then converted into surface water SPM concentrations according to the established calibration relationships. Resulting SPM maps are presented for different river flow and tidal conditions. These maps are used to locate the maximum turbidity zone and observe its tidal and seasonal movements. The high spatial resolution of SPOT HRV and Landsat ETM + satellite sensor data also shows detailed turbidity features in the estuary, resulting from re-suspension phenomena over banks and turbulent currents.
机译:这项研究涉及法国吉伦特省高浊度河口水中悬浮颗粒物的定量分析,该数据来自高分辨率空间遥感数据,SPOT(卫星观测卫星)高分辨率可见(HRV),Landsat增强主题Mapper Plus(ETM +)。该方法基于在原位光学测量中在遥感反射率(R_(rs))信号与悬浮颗粒物浓度(SPM)之间建立的校准关系。从长远来看,这些关系是有效的,因为近红外(NIR)和可见波段之间的R_(rs)比相对独立于颗粒大小和矿物学。因此,即使没有与卫星立交桥同时进行原位测量,也可以将其应用于卫星图像。使用辐射转移码对选定的卫星传感器数据进行大气影响校正,然后根据已建立的校准关系将其转换为地表水SPM浓度。给出了针对不同河流流量和潮汐条件的所得SPM图。这些地图用于定位最大浊度区并观察其潮汐和季节运动。 SPOT HRV和Landsat ETM +卫星传感器数据的高空间分辨率还显示了河口的详细浊度特征,这是由于堤岸上的重悬现象和湍流引起的。

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