Assessment of using ponds as a nature-based solution on the optimal irrigation management of paddy fields

Water Supply Pub Date : 2024-01-31 DOI:10.2166/ws.2024.014
S. Janatrostami
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Abstract

The water availability to supply agricultural water requirements plays an important role in the performance of agricultural products. Paddy fields depend heavily on water during cultivation, making this issue particularly important. In such cases, nature-based solutions, such as ponds, can be a suitable method to address water shortages for irrigation purposes. This study aims to develop a water allocation optimization model to evaluate the impact of two scenarios in ponds. In the scenario of increasing the ponds' depth, the hydraulic connection between the ponds and the groundwater level was taken into consideration. Based on this perspective, the scenario of increasing the depth resulted in a 0.33 million m3 increase in the volume of ponds, leading to an average percentage increase of 0.23% in the supply of irrigation requirements. The optimized model results in the pond dredging scenario showed a 2.03 million m3 increase in the volume of available water compared to the existing conditions, and a 1.70 million m3 increase compared to the pond deepening scenario. The results show that dredging ponds have a greater impact on increasing available water volume. It is also important to consider the hydraulic connection between ponds and groundwater levels in the pond-deepening approach.
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将池塘作为水田灌溉优化管理的自然解决方案的评估
能否满足农业用水需求对农产品的性能起着重要作用。稻田在耕作过程中对水的依赖程度很高,因此这一问题尤为重要。在这种情况下,池塘等基于自然的解决方案是解决灌溉缺水问题的合适方法。本研究旨在开发一个水资源分配优化模型,以评估两种池塘方案的影响。在增加池塘深度的方案中,考虑了池塘与地下水位之间的水力联系。基于这一观点,增加水深的方案导致池塘容积增加 33 万立方米,使灌溉需求的供应量平均增加 0.23%。池塘清淤方案的优化模型结果显示,与现有条件相比,可用水量增加了 203 万立方米,与池塘加深方案相比,增加了 170 万立方米。结果表明,疏浚池塘对增加可用水量的影响更大。在池塘加深方案中,考虑池塘与地下水位之间的水力联系也很重要。
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