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Analysis of water application with semi-portable big size sprinkler irrigation systems in semi-arid areas

机译:半干旱地区半便携式大尺寸喷水灌水系统用水量分析

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摘要

Sustainability of irrigated agriculture depends heavily on getting a high efficiency application for the irrigation. It is very important to understand the factors that affect to irrigation uniformity and discharge efficiency, especially using semi-portable big size sprinkler. There are not studies conducted with big size sprinklers which work on high flow rates and big layouts spacing. In this paper, the spray losses (L-s) and water distribution of sprinkler irrigation system with semi-portable big size sprinkler on semi-arid areas have been characterized. The factors affecting on discharge efficiency and irrigation uniformity were analysed (working pressure, irrigation layout and weather conditions). The field tests were conducted in outdoor conditions with a single sprinkler system. Six predictive equations were obtained to estimate drift and evaporation losses. The proposed equations use operating pressure, wind speed and vapour pressure deficit. The results show an increment of 3.26% for Ls for each increment of 1 ms(-1) of wind speed. Spray losses rise up to 22.7% at 450 kPa operating pressure when wind speed and vapour pressure deficit increased up to 4.2 m s(-1) and 6 kPa, respectively. A significantly effect of wind is appreciated on the spray losses and water distribution pattern under different conditions with regard for working pressure and sprinkler spacing. This behaviour is very similar to obtained with medium size sprinklers. Technical criteria can be used to optimize irrigation management according to the design factors and the climatic parameters. (C) 2015 Elsevier B.V. All rights reserved.
机译:灌溉农业的可持续性依赖于获得灌溉的高效申请。了解影响灌溉均匀性和放电效率的因素非常重要,特别是使用半便携式大尺寸洒水喷头。没有关于大尺寸喷头的研究,这些喷洒器在高流速和大布局间距上工作。在本文中,已经表现了一种在半干旱地区上具有半便携式大尺寸喷水器的喷雾损耗(L-S)和喷水系统的水分布。分析了影响放电效率和灌溉均匀性的因素(工作压力,灌溉布局和天气条件)。现场测试是在室外条件下进行,具有单个喷头系统。获得六个预测方程以获得估计漂移和蒸发损失。所提出的方程使用工作压力,风速和蒸气压缺损。对于1ms(-1)的风速,LS的增量显示为3.26%。当风速和蒸汽压力缺陷增加高达4.2M S(-1)和6kPa时,喷雾损失在450kPa工作压力下升高到22.7%。在不同条件下,在工作压力和喷洒间隔的不同条件下,对喷射损耗和水分配模式的显着影响。这种行为与中等大小洒水器获得非常相似。技术标准可用于根据设计因素和气候参数优化灌溉管理。 (c)2015 Elsevier B.v.保留所有权利。

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