首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >Use of geostationary satellite thermal infrared data to monitor surface exchanges at local scale over heterogeneous landscape: Application to meteosat 8 data.
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Use of geostationary satellite thermal infrared data to monitor surface exchanges at local scale over heterogeneous landscape: Application to meteosat 8 data.

机译:利用地静止卫星热红外数据在非均质景观中以局部刻度监测表面交换:应用于Meteosat 8数据的应用。

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A SVAT calibration methodology based on the optimization of surface brightness temperature has been developed (Coudert et al., 2006a; 2006b, 2007) and validated at field scale in the framework of the Alpilles-ReSeDA ([1]; http://www.avignon.inra.fr/reseda/base/) experiment. This methodology has been extended at regional scale and applied to MSG/Meteosat8 thermal infrared data. MSG/SEVIRI instrument provides the Land Surface Temperature (LST) every 15mn with a spatial resolution of about 3kmx5km over France. A model spatialization is proposed, based on a Geographic Information System in order to estimate the surface temperature at the MSG pixel scale from local SVAT simulation. The estimation of the surface water and energy fluxes and of the soil water content at a finer resolution are provided from the calibration methodology applied at the MSG pixel scale to the the spatialized model. These methods have been applied in the framework of the CITRAM experimental program in order to monitor soil water content and irrigation in agricultural zones. A comparison between methodologies is presented. The validation is done with local soil moisture measurements acquired in different instrumented fields over the region and with high spatial resolution surface temperature estimation from ASTER/TERRA satellite data.
机译:基于表面亮度温度的优化的一种SVAT校准方法已经被开发(高特等人,2006年; 2006年b,2007)和在框架在字段规模验证莱萨尔皮耶-木犀草([1]; HTTP:// WWW .avignon.inra.fr /木犀草/碱/)实验。这种方法已在区域范围被扩展并应用到MSG / Meteosat8热红外数据。 MSG / SEVIRI仪器提供地表温度(LST)约3kmx5km超过法国的空间分辨率每1,500万。模型空间化,提出了基于地理信息系统,以便估计的表面温度在从本地SVAT模拟MSG像素规模。从在所述MSG像素规模施加到空间化的模型中的校准方法被设置在表面的水和能量通量,并在更精细的分辨率的土壤水分含量的估计。这些方法已经在CITRAM实验方案的框架,以监测农业区土壤含水量和灌溉得到了应用。方法之间的比较给出。验证与在上方的区域不同仪表领域,并与来自ASTER / TERRA卫星数据高的空间分辨率的表面温度推定获取本地土壤湿度测量完成。

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