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Modelling soil salinity in Oued El Abid watershed, Morocco

机译:欧尔·埃尔·塞米德,摩洛哥乌尔比德水域造型土壤盐度

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摘要

Soil salinisation is a phenomenon considered to be a real threat to natural resources in semi-arid climates. The phenomenon is controlled by soil (texture, depth, slope etc.), anthropogenic factors (drainage system, irrigation, crops types, etc.), and climate factors. This study was conducted in the watershed of Oued El Abid in the region of Beni Mellal-Khenifra, aimed at localising saline soil using remote sensing and a regression model. The spectral indices were extracted from Landsat imagery (30 m resolution). A linear correlation of electrical conductivity, which was calculated based on soil samples (ECs), and the values extracted based on spectral bands showed a high accuracy with an R2 (Root square) of 0.80. This study proposes a new spectral salinity index using Landsat bands B1 and B4. This hydro-chemical and statistical study, based on a yearlong survey, showed a moderate amount of salinity, which threatens dam water quality. The results present an improved ability to use remote sensing and regression model integration to detect soil salinity with high accuracy and low cost, and permit intervention at an early stage of salinisation.
机译:土壤盐碱化是认为是在半干旱气候对自然资源的真正威胁的现象。该现象是由土壤(纹理,深度,坡度等),人为因素(排水系统,灌溉,作物类型等),和气候因素的控制。本研究是在在贝尼迈拉勒-海尼夫拉,着眼于利用遥感和回归模型本地化盐土的区域中的流域干河阿比德的进行。频谱指数是从陆地卫星图像(30米分辨率)萃取。的导电性,这是基于土壤样品(ECS)来计算,并且这些值提取基于频谱带的线性相关性显示出与0.80的R2(均方根)的高精确度。这项研究提出了利用陆地卫星频带B1和B4一个新的光谱盐度指数。这水化学和统计学研究的基础上,持续一年的调查,结果显示适量的盐分,从而威胁到大坝的水质。结果呈现给使用遥感和回归模型集成到检测精度高,成本低,并允许干预土壤盐分在盐碱化的早期阶段的改进的能力。

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