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首页> 外文期刊>Southern forests: a Journal of forest science >An irrigation control system with a web-based interface for the management of Eucalyptus planting stock in a nursery
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An irrigation control system with a web-based interface for the management of Eucalyptus planting stock in a nursery

机译:一种灌溉控制系统,具有基于Web的卫生术桉树种植股的界面

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Efficient nursery irrigation is a key factor for the production of high-quality forestry planting stock. Conventional timer-based irrigation systems used by most forestry nurseries have some drawbacks that, if not properly managed, can lead to over-irrigation and water wastage, leaching of nutrients and contribute to increased incidences of pests and/or diseases. A practical method to accurately measure media water content and control irrigation more carefully could prevent some of these issues. To evaluate the potential use of an automated irrigation system, commercially available Decagon EC-5 dielectric soil water content sensors were laboratory-calibrated against the gravimetric method using coir/pine bark/vermiculite, coir/perlite and pine bark media to measure water content of nursery seedling containers. Using Eucalyptus dunnii seedlings raised in polystyrene seedling containers to test the irrigation system, a datalogger was programmed to control irrigation for low (0.22-0.26 m(3) m(-3)), medium (0.26-0.32 m(3) m(-3)) and high (0.32-0.41 m(3) m(-3)) watering treatments. The measurements were displayed in near real-time using a web-based system, which allowed for system checking and from which data could be downloaded. The Decagon EC-5 sensors were successfully calibrated for all media (R-2 0.97) and provided a better estimation of media water content than the manufacturer-supplied calibration equation better-suited for soils. The automated irrigation system effectively maintained the specified media water content for E. dunnii seedlings. The high watering treatment seedlings had the highest growth rates, although this treatment also had increased leaching of nutrients. By contrast, the low watering treatment seedlings showed the lowest growth rates, although these seedlings seemed to be more robust and tolerant of water stress. This study showed that the automated irrigation system, based on measurements of the media water content, can be successfully used in scheduling irrigation for Eucalyptus seedlings, leading to potential water savings.
机译:高效的育苗灌溉是生产高质量林业种植股票的关键因素。大多数林业苗圃使用的传统基于定时器的灌溉系统具有一些缺点,如果没有正确管理,可能导致过度灌溉和水资源,源于养分,并有助于增加害虫和/或疾病的发病率增加。更仔细地测量介质水含量和控制灌溉的实用方法可以防止这些问题中的一些问题。为了评估自动灌溉系统的潜在用途,使用益官/松树皮/蛭石,益官/珍珠岩和松树皮媒体来测量含水量幼儿园幼苗容器。使用在聚苯乙烯幼苗容器中饲养的桉树幼苗幼苗来测试灌溉系统,将数据记录器编程为低温(0.22-0.26m(3)m(-3)),培养基(0.26-0.32m(3)m( -3))和高(0.32-0.41 m(3)m(-3))浇水处理。使用基于Web的系统在近实时显示测量,该系统允许系统检查,并且可以从中下载数据。为所有介质(R-2& 0.97)成功校准了二聚体EC-5传感器,并提供比制造商提供的校准方程更好地估计介质水含量,而是适合土壤的制造商提供的校准方程。自动灌溉系统有效地保持了E. Dunnii幼苗的指定介质水含量。幼苗的高浇水治疗幼苗最高的增长率,尽管这种治疗也增加了营养素的浸出。相比之下,低浇水处理幼苗显示出最低的生长速率,尽管这些幼苗似乎是更稳健和耐水胁迫的耐受性。本研究表明,基于介质水含量的测量,自动灌溉系统可以成功地用于桉树幼苗的调度灌溉,导致潜在的水资源。

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