微型洒水喷头灌溉肯特树的土壤湿度和树木密度计采样

F. Hahn
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引用次数: 2

摘要

墨西哥是全球主要的芒果出口国,需要优化产量;水质和用水。由于气候变化导致的缺水会增加果实落差和大小,从而影响产量和质量。在2018-2020年期间,降雨事件减少导致芒果产量下降。持续亏缺灌溉(SDI)技术已在世界范围内得到应用,通过微喷灌系统,在每棵树上挖四个孔来湿润。获取树木周围土壤含水量,并与树干周围灌溉的土壤含水量进行比较。树枝上的树木密度计测量也有助于了解树木内部的水动力学;枝条吸水性好,产量高。研究发现,根部更靠近表面,而树枝下的干燥土壤无法提供足够的水分来生产超过350克的芒果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil Moisture and Dendrometer Sampling of Kent Trees Irrigated with Micro-Sprinklers
Mexico is the leading mango exporter worldwide and requires to optimize yield; quality and water use. Water shortage due to climatic changes can affect yield production and quality by increasing fruit drop and size. In the period 2018-2020 decrease in raining events reduced mango yields. Sustained deficit irrigation (SDI) techniques have been applied worldwide and four holes were dig to wet each tree by means of a micro-sprinkler irrigation system. Soil moisture content around the trees were acquired and compared against those irrigated all around the tree trunk. Also dendrometer measurements at the branches help to understand water dynamics within the tree; and high yields were obtained when branches had good water uptake. It was found that roots are closer to the surface and that dry soil areas beneath branches did not provided enough water to produce mangoes over 350 grams.
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