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Scheduling Supplementary Irrigation for Maize Production: Analysis of the Requirements for Climate Smart Farming for Rural Development

机译:玉米生产调度补充灌溉:农村发展气候智能农业要求分析

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The erratic rainfall pattern in sub Saharan Africa is a major threat to rainfed agriculture by consistently reducing yield due to water deficit and threatening food security. In order to address this problem, supplementary irrigation during the raining season is increasingly being encouraged to reduce water deficits during dry spells. The aim of this study is to design a supplementary irrigation for maize cropping during the raining season by using climatic data and water from surface runoff from a nearby catchment area. Climatic data for the study area was used to analyse the water requirement of maize during the rainy season and to propose an irrigation schedule. The results indicated that, out of 620.00 mm (3100 m3) water requirement for the entire growing cycle of maize on a 0.5 ha field, the supplementary irrigation water requirement represents more than a third of the water need of maize during periods of dry spell in the maize crop cycle. With a reservoir volume of 600.00 m3 and a net irrigation application of 60 mm (300 m3), about 5 irrigation applications (with a flow rate of 25.00 m3/hr for 6 hours a day) is required to supplement the irrigation water requirement of maize that can help alleviate soil moisture stress and increase crop yield during critical growth stages.
机译:撒哈拉以南非洲的不稳定的降雨模式是通过持续减少由于水资源赤字和威胁粮食安全而降低收益的主要威胁。为了解决这个问题,在下雨季节期间的补充灌溉越来越受到在干燥法术期间减少水赤字。本研究的目的是通过使用从附近的集水区从表面径流的气候数据和水来设计玉米种植的补充灌溉。研究领域的气候数据用于分析雨季玉米的水需求,并提出灌溉计划。结果表明,在0.5公顷的玉米整个生长循环的情况下为620.00毫米(3100 m3)水需求,补充灌溉水需求代表玉米期间的玉米水中需要的多分子需求玉米作物周期。储层体积为600.00 m3,净灌溉施用为60毫米(300 m 3),需要约5个灌溉应用(每天6小时的流速为25.00 m3 / hr),以补充玉米的灌溉用水需求这可以帮助缓解土壤水分胁迫并在临界生长阶段增加作物产量。

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