通过改变仰角优化喷射冲击式喷灌机的水力性能:与非撞击式喷灌机的比较研究

IF 4.4 1区 农林科学 Q1 AGRICULTURAL ENGINEERING Biosystems Engineering Pub Date : 2024-07-03 DOI:10.1016/j.biosystemseng.2024.06.011
Yue Jiang, Zixin Wang, Hong Li, Lisha Wang
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引用次数: 0

摘要

设计了一种新型喷射撞击洒水器,以取代旋转洒水器中通常使用的附加散水装置,从而适应低压条件下的性能。利用主喷嘴和副喷嘴的非对称撞击模式,该设计优先考虑了副喷嘴的仰角。在一级和二级喷射动量率之间建立了理论表达式。在中压和低压条件下进行了水力性能实验,检查了不同仰角下的施水量、润湿半径和克里斯琴森均匀系数。高速摄影(HSP)实验阐明了水力性能的差异,显示撞击式喷流的最大喷水率通常较低,但与非撞击式喷流相比,其分布更为平滑。通过使用 "标准间相关性重要度"(CRITIC)方法,综合评分突出显示了 34.5° 二级喷嘴仰角的最佳布置,说明了在低压下的卓越性能。润湿半径和克里斯琴森均匀性系数之间的比较分析表明,喷射撞击牺牲了润湿半径,但却提高了均匀性。然而,这种效率会随着射流撞击效应的增强而降低。HSP 实验验证了理论计算,射流偏转角和射流破裂长度的相对误差小于 4%。非线性曲线拟合确定了射流破裂长度、平均观察到的射流偏转角、工作压力和润湿半径之间的关系。计算值和测量值的相对误差在 5%以内,这证明所开发的方程适用于预测喷射撞击喷头的润湿半径。
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Optimising the hydraulic performance of a jet impingement sprinkler by varying elevation angle: A Comparative study with a non-impingement sprinkler

A novel jet impingement sprinkler was designed to replace the additional water-dispersing devices usually used in rotating sprinklers to adapt performance for low-pressure conditions. Utilising the asymmetric impingement mode of primary and secondary jets, the design prioritises the secondary nozzle elevation angle. Theoretical expressions were establish between the primary and secondary jet momentum rates. Hydraulic performance experiments, were conducted under intermediate and low-pressure conditions, examining water application rate, wetted radius, and Christiansen's uniformity coefficient at various elevation angles. High-speed photography (HSP) experiments elucidate differences in hydraulic performance, revealing that the impingement jet generally featured a lower maximum water application rate but a smoother distribution compared to its non-impingement counterpart. Using the CRiteria Importance Through Intercriteria Correlation (CRITIC) method, comprehensive scores highlight an optimal arrangement with a 34.5° secondary nozzle elevation angle, illustrating superior performance under low pressure. Comparative analyses between the wetted radius and Christiansen's uniformity coefficient uncover a trade-off, with jet impingement sacrificing wetted radius for increased uniformity. However, this efficiency diminished as jet impingement effects intensify. HSP experiments validate theoretical calculations, with a relative error of less than 4% for jet deflection angle and jet breakup length. Non-linear curve fitting establishes relationships between jet breakup length, mean observed jet deflection angle, operating pressure, and wetted radius. Calculated and measured values exhibited a relative error within 5%, affirming the applicability of the developed equation for predicting wetted radius in jet impingement sprinklers.

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来源期刊
Biosystems Engineering
Biosystems Engineering 农林科学-农业工程
CiteScore
10.60
自引率
7.80%
发文量
239
审稿时长
53 days
期刊介绍: Biosystems Engineering publishes research in engineering and the physical sciences that represent advances in understanding or modelling of the performance of biological systems for sustainable developments in land use and the environment, agriculture and amenity, bioproduction processes and the food chain. The subject matter of the journal reflects the wide range and interdisciplinary nature of research in engineering for biological systems.
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