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Soil moisture assessed by digital mapping techniques and its field validation

机译:通过数字测绘技术评估土壤湿度及其田间验证

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Digital techniques and tools can assist not only in the prediction of soil properties, such as soil moisture, but also in planning the use and management of areas for agriculture and, or, environmental purposes. In this sense, this work aimed to study wetness indexes methods, defining the spatial resolution and selecting the estimation method that best correlates with water content data measured in the field, evaluating even moisture at different soil depths and seasons. This study was developed in a landscape with strongly undulated relief and covered with Nitosols at the summit and upper middle third, and Argisols at the low middle third, ranging in altitude from 845 to 890 m, located in the southern state of Minas Gerais, Brazil. It were performed analyses of Pearson linear correlation between soil moisture determined in the field, at depths of 10, 20, 30, 40, 60 and 100 cm and the water storage in 0-100 cm depth, and the topographic and SAGA wetness indexes, TWI and SWI, respectively, obtained from digital elevation models at different spatial resolutions. In most studied conditions, the TWI with resolution of 10 m provided better results, particularly for the dry season. In this study, only the depth of 100 cm resulted in a significant and positive correlation, suggesting that the moisture levels are suitable for water dynamic studies in the subsurface, assisting in studies of hydrological dynamics and planning the soil use and management, especially for perennial plants with deeper root systems.
机译:数字技术和工具不仅可以帮助预测土壤特性(例如土壤湿度),还可以帮助规划农业和/或环境目的区域的使用和管理。从这个意义上讲,这项工作旨在研究湿度指数方法,定义空间分辨率并选择与田间测得的含水量数据最相关的估算方法,甚至评估不同土壤深度和季节的湿度。这项研究是在地形强烈起伏的景观中进行的,位于巴西米纳斯吉拉斯州南部,海拔高845至890 m,山顶和中上三分之一处有Nitosols,中下三分之一处有Argisols。 。进行了皮尔逊线性相关性分析,该线性关系是在田间确定的深度为10、20、30、40、60和100 cm的土壤水分与0-100 cm深度的储水量之间的关系,以及地形和SAGA湿度指数,从不同空间分辨率的数字高程模型分别获得TWI和SWI。在大多数研究条件下,分辨率为10 m的TWI提供了更好的结果,特别是在旱季。在这项研究中,只有100 cm的深度才产生显着正相关,这表明水分含量适用于地下水动力学研究,有助于进行水文动力学研究并规划土壤的使用和管理,尤其是多年生土壤根系较深的植物。

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