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Root distribution with the use of drip irrigation on layered soils at greenhouses crops

机译:通过在温室作物中使用滴灌的滴灌灌溉的根本分布

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Greenhouse cultivation has proven to be an efficient solution to extra-early horticultural production, allowing the cycle of vegetable production to be closed throughout the year. This efficient solution depends on many factors, perhaps the main one being the localized irrigation system. On the other hand, the availability of water for irrigation will be one of the most limiting factors for the development of this agricultural practice. The permanent search for improving irrigation efficiency must be considered as one of the great challenges of sustainable agriculture and in the interest of environmental conservation. In this study, the distribution of the roots of the two main horticultural crops, tomato (Solanum lycopersicum L.) and peppers (Capsicum annuum L.), has been analyzed with the localized irrigation system. In addition, they have been studied for layered soils, which represent an advance in terms of resources, since they are artificial soils, where the natural soil does not allow a horticultural crop. It has been found for these stratified soils, that in pepper crop 90% of the root density is in the soil layer 0 to 9 cm. However, for tomato crops 90% of the root density is in the soil layer from 0 to 11 or 15.5 cm according to the type of soil, in other words filling almost all the added soil. The results obtained in this research allow the Hydrus 3D model for stratified soils to be calibrated. This work allows opening new perspectives in the efficient management of adding soils for new greenhouse construction and for localized irrigation of horticultural crops in general, tomato, and peppers in particular.
机译:大棚种植已被证明是一种有效的解决方案,以超早园艺生产,使蔬菜生产周期全年关闭。这有效的解决方案取决于许多因素,或许是其中最主要的局部灌溉系统。在另一方面,灌溉用水的供应将是最重要的限制因素,这种农业实践的发展方向之一。为提高灌溉效率永久搜查必须被视为农业可持续发展的巨大挑战之一,并在环境保护方面的利益。在这项研究中,两个主要园艺作物的根部的分布,番茄(番茄L.),辣椒(甜椒),已经分析了局部灌溉系统。此外,他们已经研究了层状土,代表提前在资源方面,因为它们是人造土壤,那里的自然土壤不允许园艺作物。已经发现对于这些分层的土壤,即在胡椒作物的90%的根密度的是在土壤层0〜9厘米。然而,对于番茄作物的90%的根密度的根据土壤的类型,换句话说填充几乎所有加入的土壤是在从0至11或15.5厘米土壤层。在这项研究中获得的结果允许分层土壤水蛇3D模型进行校准。这项工作在允许添加新的温室建设土壤的有效管理打开新的视角和在一般情况下,番茄园艺作物,特别是辣椒的局部灌溉。

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