不同间距和布局下大型喷灌喷头水量分布特性研究

Zakaria Issaka, Mohammed Issah, P. Yamba
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引用次数: 1

摘要

影响大型加农炮喷头灌溉性能的相关因素包括喷头直径、操作压力、布置形式、重叠距离等,在无风条件下进行了研究。流量系数为0.96 ~ 0.99。建立了抛掷半径的数学模型,决定系数为0.9765。各水量分布格局的施用量在喷头附近较低,在4 ~ 6 m抛射半径范围内最高。平均施用量随操作压力的增加而降低。平均施用量随喷嘴直径的增大而增大。在相同压力变化范围内,小喷嘴直径下平均施用量的增减幅度大于大喷嘴直径下的增减幅度。在不同喷嘴直径和不同布置下,最大CU值随压力的增大而增大。三角形布局比正方形布局具有更高的均匀性。提出了不同布置方式、压力和喷嘴直径下大型火炮喷头的最优CU值和间距系数。提交时间:06/04/2018接收时间:18/04/2018发布时间:25/05/2018
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Water Distribution Characteristics for Large Cannon Irrigation Sprinkler under different Spacing and Layouts
DOI: 10.15580/GJSETR.2018.1.040618056 Relevant factors affecting the irrigation performance of large cannon sprinkler include the nozzle diameter, operating pressure, layout form, and overlapping distance, which were studied under no wind conditions. The discharge coefficient ranged from 0.96 to 0.99. A mathematical model of radius of throw was regressed and the coefficient of determination was 0.9765. The application rate was lower near the sprinkler, and the highest value occurred under the radius of throw from 4 to 6 m for each water distribution pattern. The average application rate decreased with increase in operating pressure. The average application rate increased with the increase in nozzle diameter. The increased or decreased in magnitude of average application rate under small nozzle diameter was larger than the large nozzle diameter for the same range pressure variations. The maximum CU values increased with increase in pressure under different nozzle diameter or different layouts. Triangular layout gave higher uniformities compared with square layout. The optimal CU values and spacing coefficients of large cannon sprinkler with different layouts, pressure and nozzle diameter were proposed. Submitted: 06/04/2018 Accepted: 18/04/2018 Published: 25/05/2018
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