OPTIMIZATION AND APPLICATION OF IRRIGATION SCHEDULING BASED ON HYDRUS-2D AND STEWART MODEL IN A SEMI-ARID AREA OF CHINA

IF 0.6 Q4 AGRICULTURAL ENGINEERING INMATEH-Agricultural Engineering Pub Date : 2023-04-30 DOI:10.35633/inmateh-69-45
Haihua Jing, Jing Zhang, Kebao Dong, Jiaqi Ma, Zexu Jin
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Abstract

Water scarcity has been a critical constraint to economic development in semi-arid areas of China, so optimizing irrigation scheduling has become essential. This study obtained quantitative relationships between crop yield, crop water consumption, and irrigation quantity based on the Hydrus-2D and Stewart models. Different irrigation scheduling scenarios were evaluated to obtain the best irrigation scheduling based on the principle of simultaneous water conservation and crop productivity improvement with the evaluation indicators of crop yield, water use efficiency (WUE), irrigation water use efficiency (IWUE), and Critic-Topsis method. Taking drip irrigation under mulch as an example, the problem of optimizing the irrigation scheduling for different typical years was calculated. The optimization results showed that in the wet, normal, dry, and very dry years the annual irrigation quantity should be 49.68 mm, 49.68 mm, 85.38 mm, and 123.72 mm, when the WUE as well as IWUE, increases significantly, which had less impact on the crop yield and can save irrigation quantity by 30.00%, 30.00%, 35.00%, 27.00%. This study used Hydrus-2D to make a new attempt in irrigation scheduling optimization, giving full play to the model's high accuracy in soil water transport simulation and flexibility in boundary condition simulation. The optimization results can provide a reference for achieving accurate control of irrigation quantity during the crop growth period and reasonable irrigation scheduling formulation for regional crops.
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基于HYDRUS-2D和STEWART模型的半干旱地区灌溉调度优化及应用
缺水已成为制约我国半干旱地区经济发展的重要因素,优化灌溉调度已成为当务之急。本研究基于Hydrus-2D和Stewart模型获得了作物产量、作物耗水量和灌溉量之间的定量关系。采用作物产量、水分利用效率(WUE)、灌溉用水效率(IWUE)和Critic-Topsis方法等评价指标,基于节水和提高作物生产力同时进行的原则,对不同灌溉调度方案进行了评价,以获得最佳灌溉调度。以膜下滴灌为例,计算了不同典型年份的灌溉调度优化问题。优化结果表明,在丰水、正常、干旱和极干年份,当WUE和IWUE显著增加时,年灌溉量应分别为49.68mm、49.68mm和85.38mm和123.72mm,对作物产量的影响较小,可节约灌溉量30.00%、30.00%、35.00%,27.00%。本研究利用Hydrus-2D在灌溉调度优化方面进行了新的尝试,充分发挥了该模型在土壤水分运移模拟中的高精度和在边界条件模拟中的灵活性。优化结果可为实现作物生长期灌溉量的精确控制和区域作物灌溉调度的合理制定提供参考。
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来源期刊
INMATEH-Agricultural Engineering
INMATEH-Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
1.30
自引率
57.10%
发文量
98
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