基于谐波分析和有限元法的喷灌配水和均匀性评估

IF 4.4 1区 农林科学 Q1 AGRICULTURAL ENGINEERING Biosystems Engineering Pub Date : 2024-11-22 DOI:10.1016/j.biosystemseng.2024.11.010
Xiaofang Chen , Rui Chen , Jian Wang , Hong Li , Weibin Zhang
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引用次数: 0

摘要

基于谐波分析,提出了描述单个固定喷洒板喷灌机(FSPS)水量分布的模型。建立了压头、喷嘴直径、平均喷灌深度和振幅之间的关系。通过引入加权系数,建立了多喷头组合喷灌均匀系数的分析评估模型。结合喷灌系统的有限元水力计算模型,评估了管道直径、喷头数量和喷头间距对系统能量损失、压头和喷灌系统均匀性的影响。结果表明,在不同压力和喷头直径条件下,单个 FSPS 喷灌深度测量值与拟合平均值之间的卡马戈和森特哈斯系数(c)大于 0.99,而测量值与拟合振幅值之间的系数约为 0.93。在喷头、压头和喷头间距的不同组合下,54 个喷灌均匀度组合的测量值、推导值和计算值基本一致。在 0.01 水平下,喷头直径、管道直径、喷头间距和入口压头对线性移动喷灌系统下的综合 FSPS 的均匀性有显著影响。在 0.05 水平上,喷头数量也有明显影响。这项研究的结果可作为正确设计直线运动喷灌系统的理论基础。
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Evaluation of water distribution and uniformity of sprinkler irrigation based on harmonic analysis and finite element method
A model that describes the water distribution of a single fixed spray plate sprinkler (FSPS) based on the harmonic analysis was proposed. The relationship between the pressure head, nozzle diameter, mean sprinkler irrigation depth, and amplitude was established. An analytical model for evaluating the sprinkler irrigation uniformity coefficient of a multi-sprinkler combination was developed by introducing a weighting coefficient. In conjunction with the sprinkler irrigation system's finite element hydraulic calculation model, the impact of the pipe diameter, sprinkler number, and sprinkler spacing on system energy loss, pressure head, and sprinkler irrigation system uniformity was assessed. The results demonstrated that under varying pressures and nozzle diameters, the Camargo and Sentelhas coefficient (c) between the measured and fitted mean value of the sprinkler irrigation depth of a single FSPS was greater than 0.99, while the c between the measured and fitted amplitude value was approximately 0.93. Under different combinations of nozzle, pressure head, and sprinkler spacings, the measured, derived, and calculated values of 54 sprinkler irrigation uniformity combinations were basically consistent. The uniformity of the combined FSPS under a linear-move sprinkler system was significantly affected by nozzle diameter, pipe diameter, sprinkler spacing, and inlet pressure head at 0.01 level. The number of sprinklers also had a significant impact at 0.05 level. The findings of this study could serve as a theoretical foundation for the proper design of linear-move sprinkler irrigation systems.
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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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