采用fao-aquacrop模型评价盐碱地和非盐碱地覆盖、氮肥和灌溉一体化条件下玉米水分生产力

M. Zoghdan
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引用次数: 0

摘要

使用2019年和2020年夏季在北三角洲(Sakha和el - hamul地区)进行的两次现场试验数据对AquaCrop模型(版本5)进行了验证。研究亏缺灌溉、施氮和覆盖对玉米水分生产力的影响。在此基础上,利用决定系数(r2)、归一化均方根误差(NRMSE)、一致性度(D)和效率(E)等统计指标对AquaCrop模型进行了验证。结果表明,在北三角洲不同的灌溉制度、施氮水平和覆盖条件下,AquaCrop软件能够较好地模拟作物水分生产力(WP)。其中,非盐碱地条件下(萨哈位置)的R2、NRMSE、D和E分别为0.88、0.36、0.98和0.99%。在盐碱地条件下,r2、NRMSE、D和E分别为0.85、16.5%、0.62和0.87%。在非盐碱地条件下,种植后灌水40 d灌水,再以土壤有效水枯竭80%灌水、不限制施氮和覆膜的方式灌水,可获得最高的WP值。在盐碱地条件下,植后灌溉30 d灌溉,然后以土壤有效水分枯竭60%灌溉,接近最优施氮量和覆膜可获得最佳WP值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EVALUATION OF MAIZE WATER PRODUCTIVITY BY FAO-AQUACROP MODEL USING INTEGRATION OF MULCHING, NITROGEN FERTILIZATION AND IRRIGATION IN SALINE AND NON-SALINE SOILS
: The AquaCrop model (version 5) was validated using data from two field experiments carried out during the summer seasons of 2019 and 2020 in the North Delta (Sakha and El-Hamoul Districts). To research the impact of deficit irrigation, nitrogen fertilization and soil mulching on the productivity of maize water. Then, using such results, the AquaCrop model was validated by various statistical indicators such as determination coefficient(R 2 ), normalized root means square error (NRMSE), degree of agreement (D) and efficiency (E). Results showed that under different irrigation regimes, nitrogen fertilization levels and mulching application in the North Delta, AquaCrop software was able to simulate well the crop water productivity (WP). Where R2, NRMSE, D and E were respectively0.88,0.36, 0.98 and 0.99 percent under non-saline soil conditions (Sakha location) values. While, under saline soil conditions, such values were 0.85, 16.5, 0.62 and 0.87 % for R 2 , NRMSE, D and E respectively. Data also, showed that, under non saline soil, the highest value of WP was obtained by irrigation at 40 days after post planting irrigation, then irrigation at 80 % depletion from soil available water, non-limiting nitrogen fertilization and using plastic mulching. While, under saline soil conditions, irrigation at 30 days after post planting irrigation, then irrigation at 60 % depletion from soil available water, near optimal nitrogen fertilization and plastic mulching gave the best value of WP.
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