首页> 外文期刊>South African Journal of Plant and Soil >Validation and downscaling of Advanced Scatterometer (ASCAT) soil moisture using ground measurements in the Western Cape, South Africa
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Validation and downscaling of Advanced Scatterometer (ASCAT) soil moisture using ground measurements in the Western Cape, South Africa

机译:南非西开普省使用地面测量的先进散射计(ASCAT)土壤水分的验证和缩小

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摘要

Satellite-based remote sensing of soil water content (SWC) is a promising technology for hydrological applications to overcome large spatiotemporal variabilities of SWC. This study investigated the performance of the Advanced Scatterometer (ASCAT) soil moisture product on METOP satellite (-12.5 km and downscaled to -1 km resolution), against ground measurements of SWC taken with a Hydrosense II probe along transects of 360-820 m on agricultural and natural land at locations in the Western Cape. The ASCAT products estimated fairly accurately seasonal trends of SWC; performance was better on lower slopes {R2 = 0.66) and uniform vegetation. ASCAT 12.5 km performed better in estimating SWC than the downscaled product (average concordance coefficient = 0.60 and 0.39, and R2 = 0.84 and 0.74, respectively). ASCAT 12.5 km was more responsive to rainfall events, whilst the downscaled product was more sensitive to vegetation characteristics (normalised difference vegetation index and land surface temperature). In situations with ground measurement networks and data availability constraints, remote sensing could be a feasible alternative to monitor SWC for hydrological applications at the meso-scale (regional scale).
机译:土壤含水量(SWC)基于卫星的遥感是用于克服SWC的大型时空变量的水文应用的有希望的技术。本研究调查了先进散射仪(ASCAT)土壤水分产品对梅普卫星(-12.5 km和折叠至-1km分辨率)的性能,采用沿着360-820米的横断面采用Hydrousense II探针进行的SWC的地面测量。在西开普省地区的农业和自然土地。 ASCAT产品估计了SWC的相当准确的季节性趋势;下滑性{R2 = 0.66)和均匀的植被均更好。 ASCAT 12.5 km在估计SWC时比缩小产品更好(平均一致系数= 0.60和0.39,以及R2 = 0.84和0.74)。 ASCAT 12.5公里更加敏感到降雨事件,而较低的产品对植被特征更敏感(归一化差异植被指数指数和陆地温度)。在地面测量网络和数据可用性约束的情况下,遥感可能是监控中间尺度(区域尺度)的水文应用的SWC的可行替代方案。

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