Providing optimal cropping patterns and water consumption according to monitored and forecasted drought conditions

Farzaneh Khajehi, M. M. Moghimi, A. Zarei
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Abstract

Drought management in the agricultural sector requires monitoring and prediction of this phenomenon, as well as providing a suitable cropping pattern. In this study, the reconnaissance drought index (RDI) was used for drought monitoring in Fars Province, Iran. The status of water resources was predicted using a model that matches the time series of the RDI and the groundwater level. The optimal cropping pattern was obtained according to the predicted available water resources using a genetic algorithm. Generally, the actual and predicted changes in groundwater levels indicate the critical conditions of groundwater resources in the study area. Groundwater resource consumption should be lowered by implementing deficit irrigation scenarios that result in keeping crops with lower sensitivity to water deficit in cropping patterns such as barley, wheat, canola, forage corn and potato. The cropping pattern optimization results suggest an increase in the area allocated to more economical crops in the northern half of Fars Province due to the better temporal distribution of annual rainfall and better water resource conditions. However, with increasing water costs, the cultivation area and the optimal water reduction fraction of these plants decreased.
根据监测和预测的旱情提供最佳种植模式和用水量
农业部门的干旱管理需要对这一现象进行监测和预测,并提供合适的种植模式。在这项研究中,伊朗法尔斯省的干旱监测采用了勘测干旱指数(RDI)。利用与 RDI 和地下水位时间序列相匹配的模型预测了水资源状况。利用遗传算法,根据预测的可用水资源获得最佳种植模式。总体而言,地下水位的实际变化和预测变化表明研究区域的地下水资源处于临界状态。应通过实施亏缺灌溉方案降低地下水资源消耗,从而在种植模式中保留对缺水敏感性较低的作物,如大麦、小麦、油菜、饲用玉米和马铃薯。种植模式优化结果表明,由于年降雨量的时间分布更合理,水资源条件更好,法尔斯省北半部种植更经济作物的面积有所增加。然而,随着水成本的增加,这些植物的种植面积和最佳减水率都有所下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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