AquaCrop和crowat模型在埃塞俄比亚Metekel地区玉米作物需水量估算和灌溉调度中的应用

Demeke Tamene Mitiku, A. H. Tefera
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摘要

本研究的目的是比较AquaCrop模型和crowat模型对Metekel地区玉米作物需水量和灌溉调度的影响。并试图比较研究区域内不同情况下采用模型的效率。利用基于土壤、作物和气象数据的crowat模型对研究区玉米作物需水量和灌溉调度进行了估算。而AquaCrop模型是基于土壤、作物和气象数据,包括Co2、地下水、田间管理和肥力管理条件。研究结果表明,研究区参考蒸散量最大的地区为古巴,为7.1 mm/d,最小的地区为布伦,为2.9 mm/d。各区的经济效益指数在3月最高,在8月最低。利用CropWat测定了古巴区玉米的最大ETc值为702.4mm,布伦区玉米的最小ETc值为572.6mm,而温贝拉区玉米的有效降雨量为185mm。然而,使用AquaCrop模型,研究区灌溉玉米的最大ETc值在Guba为565 mm,最小ETc值在Wembera地区为425 mm。从研究中可以观察到,固定间隔10天,12次灌溉的灌溉计划效果最好。此外,结果表明,模拟值和观测值之间存在很强的关系和显著的关系,用于验证。模型性能指标表明,AquaCrop模型在考虑的所有参数中都得到了很好的模拟。因此,AquaCrop模型是最适合的土壤-水-作物-环境管理模型。因此,未来的研究应侧重于研究区不同田间管理条件下的亏缺灌溉策略,以提高研究区主要作物的灌溉农业水分生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of AquaCrop and CropWat Models for Estimating Crop Water Requirement and Irrigation Scheduling of Maize in Metekel Zone, Ethiopia
The objective of the study was to compare AquaCrop Model with CropWat Model to estimate crop water requirement and irrigation scheduling of maize in the Metekel Zone. It also tries to compare the efficiency of Models for adoption in different situations in the study area. Crop water requirement and irrigation scheduling of maize in the study area were estimated using the CropWat Model based on soil, crop, and meteorological data. However, AquaCrop Model wasbased on soil, crop, and meteorological data including Co2, groundwater, field management, and fertility management condition. From the study, it was observed that the maximum reference evapotranspiration in the study area was found to be 7.1 mm/day in Guba and the minimum reference evapotranspiration was 2.9 mm/day in the Bullen district. The maximum ETo in all districts was found to in March and the lowest in August. The maximum ETc of maize was foundto be 702.4mm in the Guba district and the minimum ETc was found to be 572.6mm in Bullen district using CropWat but the effective rainfall for maize was determined as 185mm in the Wembera district. However, using the AquaCrop Model the maximum ETc of 565 mm was recorded in Guba but 425 mm was recorded as a minimum in the Wembera district for irrigated maize in the study area. From the study, it was observed that irrigation scheduling with a fixedinterval of 10 days with 12 irrigation events performed best. Moreover, the result revealed that there was a strong relationship and a significant relation between the simulated and observed values for validation. The model performance indicators showed that AquaCrop Model was well simulated in all parameters considered. Therefore, AquaCrop Model was found to be the most suitable soil-water-crop-environment management Model. So future studies should focus onaddressing deficit irrigation strategy with different field management conditions to improve agricultural water productivity under irrigated agriculture for the study area for major crops.
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