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Deficit irrigation and irrigation methods as on-farm strategies to maximize crop water productivity in dry areas

机译:干旱灌溉和灌溉方法作为农田策略,可最大限度提高干旱地区的农作物水分生产率

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An in situ field study on two types of irrigation methods and three irrigation regimes was conducted in a sandy loam soil located at King Saud University, Riyadh, Saudi Arabia in 2015 and 2016. The study was to assess the effects of different irrigation methods on physiological and yield responses of tomato crops under water shortage conditions. The tested irrigation methods were surface drip irrigation (SDI) and subsurface drip irrigation (SSDI) systems. Irrigation treatments consisted of three strategies: (1) plants were irrigated with a water depth of 100% of the full irrigation supply; (2) plants were irrigated with a water depth of 80% of the full irrigation supply; and (3) plants were irrigated with a water depth of 60% of the full irrigation supply. Results indicated that water shortage significantly affected yield and quality response for each season. Over a 2-year average, yield increase was greatest in T1-SSDI followed by T2-SSDI and then T1-SDI. The yield response factor was 0.95 and 1.05 for SSDI and SDI, respectively. The highest water use efficiency values were obtained in T2-SSDI (16.3 kg m(-3)) and T1-SSDI (15.6 kg m(-3)), and the lowest ones, those estimated in T1-SDI (10.9 kg m(-3)) and T3-SDI (9.5 kg m(-3)).
机译:2015年和2016年,在沙特阿拉伯利雅得金沙特大学的沙壤土上对两种灌溉方式和三种灌溉方式进行了现场调查。该研究旨在评估不同灌溉方式对生理的影响。缺水条件下番茄的产量和产量响应测试的灌溉方法为地表滴灌(SDI)和地下滴灌(SSDI)系统。灌溉处理包括以下三种策略:(1)用总灌溉水量的100%的水深灌溉植物; (2)以总灌溉水量的80%的水深灌溉植物; (3)用总灌溉量的60%的水深灌溉植物。结果表明,缺水显着影响每个季节的产量和质量响应。在过去两年的平均水平上,T1-SSDI的产量增幅最大,其次是T2-SSDI,然后是T1-SDI。 SSDI和SDI的产量响应系数分别为0.95和1.05。在T2-SSDI(16.3 kg m(-3))和T1-SSDI(15.6 kg m(-3))中获得最高用水效率值,而在T1-SDI(10.9 kg m)中获得最低的用水效率值。 (-3))和T3-SDI(9.5 kg m(-3))。

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