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SMOSREX: A long term field campaign experiment for soil moisture and land surface processes remote sensing

机译:SMOSREX:一项针对土壤湿度和土地表面过程遥感的长期野外实验

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The primary goal of the SMOS mission is to deliver global fields of sea surface salinity and surface soil moisture using L-band (1.4 GHz) radiometry. Within the context of the preparation of SMOS activities over land, a field campaign, SMOSREX (Surface Monitoring Of the Soil Reservoir EXperiment), has been in operation since January 2001 in Mauzac, near Toulouse in France. Continuous ground measurements of meteorological variables, soil moisture and temperature profiles have been taken over bare soil and a grass plot left fallow. Since January 2003, SMOSREX has been providing accurate field measurements of dual polarized L-band brightness temperature up-welling from both bare soil and fallow plots, together with multi-spectral (from visible to infrared frequencies) remote sensing surface data. The scientific objectives are presented in this paper and the corresponding experimental design is described. The experimental concept is totally new since (i) SMOSREX combines land-surface-atmosphere observations, passive microwave measurements and VIS to NIR remote sensing, (ii) SMOSREX is based on highly accurate L-band measurements carried out by a radiometer specifically designed for the experiment, and (iii) SMOSREX provides a unique continuous data set of L-band measurements over several years. The characteristics of the L-band emission are presented at diurnal, seasonal and annual temporal scales, and the emissions are compared over bare soil and natural grass. The surface emissions over bare soil and fallow area are shown to be counter-phased at the diurnal scale due to small variations in vegetation water content and bare soil surface moisture. Innovative long term results using L-band measurements for both bare soil and natural grass are presented in this paper, and the relationship between the surface emission at L-band and surface bare soil moisture is shown to be suitable for a long term period (19 months). Soil freezing is shown to be drastically different for bare soil and vegetation covered plots, with a large threshold effect on microwave surface emission. (c) 2006 Elsevier Inc. All rights reserved.
机译:SMOS任务的主要目标是使用L波段(1.4 GHz)辐射测量技术来提供全球海域盐度和表层土壤湿度的领域。在准备SMOS在陆地上的活动的范围内,自2001年1月起在法国图卢兹附近的Mauzac开展了一场名为SMOSREX(土壤水库试验表面监测)的野外活动。在裸露的土地和一块闲置的草地上对气象变量,土壤湿度和温度剖面进行了连续的地面测量。自2003年1月以来,SMOSREX一直提供从裸土图和休耕图到双极化L波段亮度温度上升的准确现场测量结果,以及多光谱(从可见光到红外频率)遥感表面数据。本文提出了科学目标,并描述了相应的实验设计。实验概念是全新的,因为(i)SMOSREX结合了陆地-地面-大气观测,无源微波测量和VIS到NIR遥感;(ii)SMOSREX基于高度精确的L波段测量,该测量由专门设计用于实验,以及(iii)SMOSREX提供了多年来唯一的L波段测量的连续数据集。 L波段发射的特征按日,季节和年度时间尺度表示,并在裸露的土壤和天然草地上比较发射。由于植被含水量和裸露的土壤表层水分的微小变化,裸露的土壤和休耕区的地表排放在昼夜尺度上是反相的。本文介绍了使用L波段测量的裸土和天然草的创新性长期结果,并且表明L波段表面发射与表面裸土水分之间的关​​系适合长期使用(19个月)。对于裸露的土壤和植被覆盖的土地,土壤冻结表现出极大的不同,对微波表面发射具有较大的阈值影响。 (c)2006 Elsevier Inc.保留所有权利。

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