Ditch rotation irrigation coupled with multi-scale ecological reservoir operation

IF 5.9 1区 农林科学 Q1 AGRONOMY Agricultural Water Management Pub Date : 2025-02-01 DOI:10.1016/j.agwat.2024.109271
Linhui Mu , Tao Bai , Dong Liu , Hongwei Ji , Mingjiang Deng , LiangPeng Hong
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Abstract

Aiming at the extensive ecological irrigation in arid regions, based on the theory of ditch rotation irrigation (DRI), this paper proposes a regulation method of water resources by coupling reservoir operation and Ditch rotation irrigation. Water demand of vegetation is met through combination of water saving and water supply, so that the ecosystem is adjusted to a new equilibrium state, to promote the coordinated development of aquatic ecology. Firstly, the DRI theoretical system is systematically expounded. Then, by establishing a coupling model of DRI and reservoir operation, the optimal operating scheme is proposed. Finally, the minimum limited water level suitable for DRI is proposed by irrigation effect. Results indicate that (1) DRI created a planar water delivery effect in the core area of riverbank vegetation, with a maximum irrigation area of 0.97 million m2 and water use efficiency of 84.9 %, to improve irrigation effect. (2) Through DRI implementation, the groundwater level in the experimental area rose by 0–0.97 m, and the vegetation coverage increased year by year. It indicates that the DRI improved the ecosystem's adapted ability under extreme drought conditions. (3) Through regulation method of water resources, the minimum limited water levels of reservoir before DRI were proposed, to provide sufficient ecological water for DRI in different periods. The research results have important theoretical value and practical significance for guiding the ecological protection and restoration of vegetation in riverbank.
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沟渠轮灌配合多尺度生态水库调度
针对干旱区广泛的生态灌溉,基于轮沟灌溉理论,提出了一种水库调度与轮沟灌溉耦合调度水资源的方法。通过节水与供水相结合,满足植被的需水量,使生态系统调整到新的平衡状态,促进水生生态的协调发展。首先,系统阐述了DRI的理论体系。然后,通过建立DRI与水库运行的耦合模型,提出了最优调度方案。最后根据灌溉效果,提出了适合DRI的最小限制水位。结果表明:(1)DRI在河岸植被核心区形成了平面输水效应,最大灌溉面积为0.97 万m2,水分利用效率为84.9 %,提高了灌溉效果;(2)通过实施DRI,实验区地下水位逐年上升0 ~ 0.97 m,植被覆盖度逐年增加。这表明DRI提高了生态系统对极端干旱条件的适应能力。(3)通过水资源调控方法,提出了DRI前水库的最低限制水位,为不同时期的DRI提供充足的生态用水。研究成果对指导河岸植被的生态保护与恢复具有重要的理论价值和现实意义。
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
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