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首页> 外文期刊>Agricultural Water Management >Automatic irrigation system based on dual crop coefficient, soil and plant water status for Vitis vinifera (cv Godello and cv Mencia)
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Automatic irrigation system based on dual crop coefficient, soil and plant water status for Vitis vinifera (cv Godello and cv Mencia)

机译:基于双重作物系数,土壤和植物水分状况的葡萄自动灌溉系统(Cv Godello和Cv Mencia)

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摘要

This research aims at testing an automatic control irrigation system, using a wireless sensor network, in traditional Galician vineyards of Vitis vinifera (L.) cv. 'Godello' and cv. 'Mencia' to determine the threshold values of soil water potential at which plant stress begins, calibrating crop coefficients, building soil-water characteristics curves and measuring plant water status. In the cv. 'Godello' trial, rain-fed and two irrigations systems (surface and subsurface drip irrigation) were conducted over two growing seasons (2012-2013); during the same seasons cv 'Mencia' was also studied, but only under rain-fed conditions. The SIMDualKc model, which estimates soil water balance by means of the dual K-C, approach, was used to estimate crop evapotranspiration (ETc) by calibrating the full basal crop coefficient for the vine and cover crop K-cb full), which represents the transpiration component of ETC, and a soil evaporation coefficient (K-e). The model was calibrated and validated by comparing model simulations with TDR observed soil water content data. Granular matrix sensor (GMS) was linked in a wireless sensor network; soil water potential measured with GMS, was used to correlate with TDR data. Leaf water potentials (LWP) - midday and stem - allowed us to obtain plant water status. A good fit was obtained between SIMDualKc model and TDR (r(2) > 0.74), TDR and LWP (r(2) > 0.65), TDR and GMS (r(2) > 0.81), showing that continuous measures with GMS permit establishing a threshold value related with leaf water potential (midday or stem). For both cultivars, the threshold was Psi(soil) = -0.1 MPa. The process applied in this study proved to be useful for managing water in real-time in a vineyard; triggering the irrigation system when the threshold value was reached. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项研究旨在使用无线传感器网络,在Vitis vinifera(L.)cv的传统加利西亚葡萄园中测试自动控制灌溉系统。 'Godello'和简历。 “ Mencia”确定植物胁迫开始时土壤水势的阈值,校准作物系数,建立土壤-水特征曲线并测量植物水状况。在简历中。在两个生长季节(2012-2013年)进行了“ Godello”试验,雨水灌溉和两种灌溉系统(地面和地下滴灌);在同一季节,还研究了“ Mencia”简历,但仅在雨天条件下进行。 SIMDualKc模型通过双重KC方法估算土壤水分平衡,用于通过校准葡萄的基础作物全系数和覆盖作物的K-cb全值来估算作物的蒸散量(ETc),代表蒸腾作用ETC的成分,以及土壤蒸发系数(Ke)。通过将模型模拟与TDR观测到的土壤含水量数据进行比较,对模型进行了校准和验证。颗粒矩阵传感器(GMS)连接在无线传感器网络中;用GMS测得的土壤水势与TDR数据相关。叶片水势(LWP)-中午和茎期-使我们能够获取植物水的状态。在SIMDualKc模型与TDR(r(2)> 0.74),TDR和LWP(r(2)> 0.65),TDR和GMS(r(2)> 0.81)之间获得了很好的拟合,表明使用GMS进行连续测量可以建立与叶水势(午间或茎干)相关的阈值。对于两个品种,阈值为Psi(土壤)= -0.1 MPa。事实证明,这项研究中使用的过程对于实时管理葡萄园中的水非常有用。达到阈值时触发灌溉系统。 (C)2014 Elsevier B.V.保留所有权利。

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