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Mapping soil hydraulic conductivity and matric potential for water management of cranberry: Characterisation and spatial interpolation methods

机译:蔓越莓水管理的土壤导水率和基质势图绘制:表征和空间插值方法

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Spatial interpolation methods are required for analysing the effects of soil hydraulic properties on irrigation management. This study was conducted to determine which interpolation methods are best suited to map these properties. During the summer of 2012 we mapped the spatial variability of soil physical properties, soil matric potential, water table depth and yield of two cranberry fields located near Quebec City, Canada. Three spatial interpolation methods, inverse distance weighting (IDW), thin plate splines (TPS) and kriging with external drift (KED), were compared by means of cross-validation. The best interpolation method for a given property was used to produce maps and perform HYDRUS 1D simulations for the purpose of irrigation management. Results show that even in highly constructed fields, such as for cranberries, spatial patterns of soil hydraulic properties exist. The TPS method was the best interpolation method based on the cross-validation analyses and generated maps. Spatial variability of crop yield showed a strong relationship with soil hydraulic properties and simulations suggest that irrigation can be reduced by 75% when accounting for the spatial variability of soil hydraulic properties. (C) 2014 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:需要空间插值方法来分析土壤水力特性对灌溉管理的影响。进行这项研究是为了确定哪种插值方法最适合于映射这些属性。在2012年夏季,我们绘制了位于加拿大魁北克市附近的两个酸果蔓田的土壤物理性质,土壤基质势,地下水位深度和产量的空间变异性。通过交叉验证比较了三种空间插值方法:反距离权重(IDW),薄板样条(TPS)和带外部漂移的克里金法(KED)。给定属性的最佳插值方法用于制作地图并执行HYDRUS 1D模拟,以进行灌溉管理。结果表明,即使在高度建设的领域,例如蔓越莓,土壤水力特性的空间格局也存在。基于交叉验证分析和生成的图,TPS方法是最好的插值方法。作物产量的空间变异性与土壤水力特性密切相关,模拟表明,考虑土壤水力特性的空间变异性,灌溉量可减少75%。 (C)2014年。由Elsevier Ltd.出版。保留所有权利。

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