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Optimal Irrigation Water Allocation Using a Genetic Algorithm under Various Weather Conditions

机译:遗传算法在不同天气条件下的最优灌溉水分配

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Growing water scarcity, due to growing populations and varying natural conditions, puts pressure on irrigation systems, which often are the main consumptive water users. Therefore, water resources management to improve the allocation of limited water supplies is essential. In this study, a non-linear programming optimization model with an integrated soil/water balance is developed to determine the optimal reservoir release policies and the optimal cropping pattern around Doroudzan Dam in the South-West of Iran. The proposed model was solved using a genetic algorithm (GA). Four weather conditions were identified by combining the probability levels of rainfall, evapotranspiration and inflow. Moreover, two irrigation strategies, full irrigation and deficit irrigation were modeled under each weather condition. The results indicate that for all weather conditions the total farm income and the total cropped area under deficit irrigation were larger than those under full irrigation. In addition, our results show that when the weather conditions and the availability of water changes the optimal area under corn and sugar beet decreases sharply. In contrast, the change in area cropped with wheat is small. It is concluded that the optimization approach has been successfully applied to Doroudzan Dam region. Thus, decision makers and water authorities can use it as an effective tool for such large and complex irrigation planning problems.
机译:由于人口增长和自然条件的变化,水资源短缺问题日益严重,给灌溉系统带来了压力,而灌溉系统往往是主要的用水户。因此,水资源管理对改善有限供水的分配至关重要。在这项研究中,建立了具有土壤/水平衡的非线性规划优化模型,以确定伊朗西南部Doroudzan大坝周围的最优水库释放策略和最优种植方式。提出的模型使用遗传算法(GA)求解。通过结合降雨,蒸散和入渗的概率水平,确定了四种天气条件。此外,在每种天气条件下都模拟了两种灌溉策略,即完全灌溉和亏缺灌溉。结果表明,在所有天气条件下,亏缺灌溉下的总农业收入和总种植面积都大于满灌条件下的。此外,我们的结果表明,当天气条件和可用水量发生变化时,玉米和甜菜下的最佳面积急剧减少。相反,小麦播种面积的变化很小。结论是,该优化方法已成功地应用于Doroudzan大坝地区。因此,决策者和水务部门可以将其用作解决如此大而复杂的灌溉计划问题的有效工具。

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