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Evaluation of an experimental system of soil moisture registration for irrigation management in potted vineyard (Vitis vinifera L. CV Bobal) of multi-depth temperature compensation based in resistivity measurements

机译:基于电阻率测量的多深度温度补偿的盆栽葡萄园(Vitis vinifera L. CV Bobal)灌溉管理的土壤水分配准实验系统的评估

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摘要

Measurement of soil moisture is a fundamental parameter for irrigation scheduling. In order to determine this parameter, many types of sensors are employed. Some of these sensors for soil moisture measurements are based on electric resistivity. Measurements are affected by many factors including soil temperature, length of probes, amongst others, that can cause incorrect determination of soil moisture levels. Consequently, this can lead to inappropriate or unnecessary irrigation. The main objective of this paper is the presentation of results of several experiments focused on determining adequate temperature compensation for a simple soil moisture measurement and registration system based on resistivity measurements (Wenner compensation). Moreover, a comparison between the data obtained by this device and a reference sensor is included. The device was calibrated in a plot with potted vineyards (Vitis vinifera L. cv Bobal on 110R) under drip irrigation and additional conditions. Results are adequate and include a method of compensation of measured values based in a rolling average model of soil temperature with a good agreement. A simple weighed combination of box temperature of the device and 14cm deeper temperatures can provide a useful level of Wenner compensation. Additionally, this device has a competitive price and is adequate for water management in crops. (C) 2014 Elsevier B.V. All rights reserved.
机译:土壤水分的测量是灌溉计划的基本参数。为了确定该参数,采用了多种类型的传感器。这些用于土壤湿度测量的传感器中有些是基于电阻率的。测量受许多因素的影响,包括土壤温度,探头长度等,这些因素可能导致对土壤水分含量的错误确定。因此,这可能导致不适当或不必要的灌溉。本文的主要目的是介绍几个实验的结果,这些实验的重点是为基于电阻率测量的简单土壤水分测量和记录系统确定适当的温度补偿(温纳补偿)。此外,还包括该设备和参考传感器获得的数据之间的比较。在滴灌和其他条件下,在盆栽葡萄园(Vitis vinifera L. cv Bobal于110R)上对该设备进行校准。结果是足够的,并且包括基于土壤温度的滚动平均模型且具有良好一致性的补偿测量值的方法。将设备的盒子温度和更深的14cm的温度进行简单的称重组合即可提供有用的Wenner补偿水平。另外,该设备具有竞争力的价格,足以用于农作物的水管理。 (C)2014 Elsevier B.V.保留所有权利。

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