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首页> 外文期刊>Soil and Water Research >Delimitation of low topsoil moisture content areas in a vineyard using remote sensing imagery (Sentinel-1 and Sentinel-2) in a Mediterranean-climate region
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Delimitation of low topsoil moisture content areas in a vineyard using remote sensing imagery (Sentinel-1 and Sentinel-2) in a Mediterranean-climate region

机译:使用遥感图像(Sentinel-1和Sentinel-2)在地中海气候区域中的葡萄园中低表土水分含量区域的界定

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Irrigation can be responsible for salt accumulation in the root zone of grapevines when late autumn and winter precipitation is not enough to leach salts from the soil upper horizons, turning the soil unsuitable for grape production. The aim of this work is to present a novel methodology to outline areas, within a drip-irrigated vineyard, with a low soil moisture content (SMC) during, and after, an 11-month agricultural drought. Soil moisture (SM) field measurements were performed in two plots at the vineyard, followed by a geostatistical method (indicator kriging) to estimate the SM class probabilities according to a threshold value, enlarging the training set for the classification algorithms. The logistic regression (LR) and Random Forest (RF) methods used the features of the Sentinel-1 and Sentinel-2 images and terrain parameters to classify the SMC probabilities at the vineyard. Both methods classified the highest SMC probabilities above 14% that is located close to the stream at the lower altitudes. The RF method performed very well in classifying the topsoil zones with a lower SMC during the autumn-winter period. This delineation allows the prevention of the occurrence of areas affected by salinisation, indicating which areas will need irrigation management strategies to control the salinity, especially under climate change, and the expected increase in droughts.
机译:灌溉可以负责葡萄园根带中的盐积聚,当晚秋季和冬季沉淀不足以浸出来自土壤较高视野的盐盐,使土壤不适合葡萄生产。这项工作的目的是在滴灌的葡萄园内,在滴灌的葡萄园内具有概述地区的新方法,并且在一个11个月的农业干旱期间,以及之后的土壤水分含量低(SMC)。在葡萄园的两个地块中进行土壤湿度(SM)场测量,然后进行地质统计方法(指示灯克里格),以根据阈值估计SM类概率,放大分类算法的训练集。 Logistic回归(LR)和随机森林(RF)方法使用Sentinel-1和Sentinel-2图像和地形参数的特征来对葡萄园的SMC概率进行分类。两种方法分类为高于14%的最高SMC概率,该概率位于较低海拔地区的流靠近流。在秋冬期间,RF方法在将TOPSIL区域进行分类,在秋冬时期以较低的SMC进行分类。这种描绘允许预防受盐水影响影响的区域,表明哪些地区需要灌溉管理策略来控制盐度,特别是在气候变化下,以及干旱的预期增加。

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