孙文峰, 王艳花, 王腾, 侯守印, 种保中. 滚移式喷灌机喷头优选及水力性能优化[J]. 农业工程学报, 2017, 33(3): 99-106. DOI: 10.11975/j.issn.1002-6819.2017.03.013
    引用本文: 孙文峰, 王艳花, 王腾, 侯守印, 种保中. 滚移式喷灌机喷头优选及水力性能优化[J]. 农业工程学报, 2017, 33(3): 99-106. DOI: 10.11975/j.issn.1002-6819.2017.03.013
    Sun Wenfeng, Wang Yanhua, Wang Teng, Hou Shouyin, Chong Baozhong. Spray head selection and hydraulic performance optimization of roll wheel line move sprinkling irrigation machine[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2017, 33(3): 99-106. DOI: 10.11975/j.issn.1002-6819.2017.03.013
    Citation: Sun Wenfeng, Wang Yanhua, Wang Teng, Hou Shouyin, Chong Baozhong. Spray head selection and hydraulic performance optimization of roll wheel line move sprinkling irrigation machine[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2017, 33(3): 99-106. DOI: 10.11975/j.issn.1002-6819.2017.03.013

    滚移式喷灌机喷头优选及水力性能优化

    Spray head selection and hydraulic performance optimization of roll wheel line move sprinkling irrigation machine

    • 摘要: 为解决滚移式喷灌机水力性能差的问题,拟通过单喷头试验、模拟计算和比较分析,选择出适合于滚移式喷灌机的喷头,从根本上改善机组的水力性能。同时对影响滚移式喷灌机水力性能的结构与工作参数进行优化试验,采用二次回归正交旋转中心组合优化试验方法,以喷头工作压力、喷头间距、喷洒间距为影响因素,喷灌均匀系数和喷灌强度为评价指标,得到模型回归方程。在评价指标满足设计要求的条件下获得该机组工作效率较高的参数组合:喷头工作压力0.4 MPa,喷头间距10 m,喷洒间距18 m,此时滚移式喷灌机喷灌均匀系数为0.91,喷灌强度为10.43 mm/h,喷灌效果较好。与现存的12 m?12 m的滚移式喷灌机相比,喷灌单位面积土地需要移动机组的次数减少了33.3%,工作效率大幅度提高,且减少劳动力。研究可为滚移式喷灌机的进一步发展提供参考,也可为其他喷灌设备中摇臂式喷头的选型提供理论依据。

       

      Abstract: Abstract: Roll wheel line move sprinkling irrigation machine is a kind of important sprinkler irrigation equipment and it is one of the suitable systems for large area of the north China management pattern and level of productivity. However, the hydraulic performance of roll wheel line move sprinkling irrigation machine, which are put into use currently, is poor, limiting the development of roll wheel line move sprinkling irrigation machine. In order to solve these problems, the spray heads of roll wheel line move sprinkling irrigation machine were selected, and the optimal combination of the structure and working parameters of roll wheel line move sprinkling irrigation machine were investigated. Six kinds of popular spray heads including 30PS type, 2000S type, DY-1 type, ZY-2 type, FPY-1 type and 8034D type were used. Then the single spray head hydraulic performance tests were conducted. The test spray heads were mounted vertically on the car of 1-m height, rain gauges were arranged radically with 6 rows and centered on the spray head. During the test, the time taken for each revolution of the spray head and the water depth in the rain gauges were recorded. The spray stability, radial water distribution and rectangular combination sprinkler irrigation uniformity were determined. The suitable sprinkler head for GYP-300 type roll wheel line move sprinkling irrigation machine was chosen. The results showed that the 8034D type spray head had the advantages of high spraying stability, and well combination sprinkler irrigation performance, improving the hydraulic performance of roll wheel line move sprinkling irrigation machine fundamentally. At the same time, the method of 3 factors 5 levels quadratic regression orthogonal rotation center combined was applied to find the optimum parameters combination of roll wheel line move sprinkling irrigation machine. Working pressure of 8034D type spray head, spray head spacing, and spraying distance were selected as the influencing factors, and irrigation uniformity and application intensity were selected as the objective functions. The results showed that the contribution rate on irrigation uniformity was highest for the spraying distance, followed by working pressure and spray head spacing. The contribution rate on irrigation intensity was highest for the spraying distance, followed by spray head spacing and working pressure. The optimum parameter combination that could met the design requirements and had high working efficiency was the working pressure of 0.4 MPa, spray head spacing of 12 m, spraying distance of 18 m. In this condition, the irrigation uniformity could reach 0.91 and application intensity could reach 10.43 mm/h. By comparing with the existing 12 m ? 12 m roll wheel line move sprinkling irrigation machine, the numbers moving units per unit area was decreased by 33.3%, the work efficiency was greatly improved and the labor force was reduced. The study can provide valuable information for the further development of roll wheel line move sprinkling irrigation machine.

       

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