注入肥料对双翼横向移动喷灌系统混合模式的影响

IF 1.6 4区 农林科学 Q2 AGRONOMY Irrigation and Drainage Pub Date : 2024-04-03 DOI:10.1002/ird.2958
Yisheng Zhang, Jie Li, Huiliang Wang
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引用次数: 0

摘要

在灌溉系统中,管道内的水肥混合深刻影响着施肥过程和施肥策略的制定。本文以灌溉机管道为研究对象,采用数值模拟方法研究了在稳定振荡流施肥模式下,不同注入位置、角度、流量(Q)和施肥比(δ)下管道内水肥混合分布规律。增加流速最初会增加侧向管道中的肥料浓度,但进一步增加主线中心注入流速会显著降低侧向管道中的浓度。当 δ = 2% 时,将 Q 值从 6 m3/h 提高到 8 m3/h,侧管中的平均肥料浓度增加了 0.4%。然而,随后将 Q = 10 m3/h 提高到 10 m3/h 会导致浓度降低 1%。在左侧喷射时,与喷射管位于同一侧的横向管道中的肥料浓度远远高于相反一侧的管道。在中央注水中,倾斜角度越大,侧管肥料浓度越高,而在左侧注水中,60°向下注水的侧管肥料浓度最高。上述结果可为横向移动喷灌系统注入口的设计提供有价值的启示。
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The effect of fertilizer injection on the mixing patterns of lateral-move sprinkler irrigation systems with double wings

In irrigation systems, water–fertilizer mixing within pipelines profoundly affects the fertilization process and strategy development. Taking irrigation machine pipelines as the research object, a numerical simulation method is used to investigate the mixing and distribution patterns of water and fertilizer in pipelines under a steady oscillatory flow fertilization mode with different injection positions, angles, flow rates (Q) and fertilization ratios (δ). Increasing the flow rate initially increased the fertilizer concentration in the lateral pipes, but further increasing the mainline central injection flow rate significantly reduced the concentration in the lateral pipes. For δ = 2%, elevating Q from 6 to 8 m3/h increased the average fertilizer concentration in the lateral pipes by 0.4%. However, a subsequent increase to Q = 10 m3/h led to a 1% decrease. In left-side injection, lateral pipes on the same side as the injection pipe had considerably higher concentrations than those on the opposite side. In central injection, larger inclination angles increase the lateral pipe fertilizer concentration, while in left-side injection, 60°-downward injection results in the best lateral pipe fertilizer concentration. The above-mentioned results can provide valuable insights for the design of injection ports on lateral-move sprinkler irrigation systems.

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来源期刊
Irrigation and Drainage
Irrigation and Drainage 农林科学-农艺学
CiteScore
3.40
自引率
10.50%
发文量
107
审稿时长
3 months
期刊介绍: Human intervention in the control of water for sustainable agricultural development involves the application of technology and management approaches to: (i) provide the appropriate quantities of water when it is needed by the crops, (ii) prevent salinisation and water-logging of the root zone, (iii) protect land from flooding, and (iv) maximise the beneficial use of water by appropriate allocation, conservation and reuse. All this has to be achieved within a framework of economic, social and environmental constraints. The Journal, therefore, covers a wide range of subjects, advancement in which, through high quality papers in the Journal, will make a significant contribution to the enormous task of satisfying the needs of the world’s ever-increasing population. The Journal also publishes book reviews.
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Issue Information ASSESSING IMPACT OF IRRIGATION PROJECTS Issue Information Transboundary aspects of agricultural water management Climate-driven runoff variability in semi-mountainous reservoirs of the Vietnamese Mekong Delta: Insights for sustainable water management
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