Design and Retrofitting of Irrigation Pumping System for the Middle Ogun Irrigation Project Using Hydrokinetic Technology

Babatunde, M.A., Ojediran, J.O., Okekunle, P.O.
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Abstract

High cost of irrigation pumping by use of fossil fuel has negatively impacted irrigation efficiency on the Middle Ogun Irrigation scheme. Efficient irrigation pumping would improve agricultural productivity and food production on the irrigation scheme.  Many attempts have been made by stakeholders to seek alternative energy sources for powering irrigation pumping. This study aimed at the design and retrofitting of the irrigation water pumping system on the Middle Ogun Irrigation scheme using hydrokinetic technology. Hydrological modelling of the catchment was carried out using MapWindow Soil and Water Assessment Tool to determine the annual gross and recoverable hydrokinetic potential of the water resource from the river. A Savonius hydrokinetic turbine system was developed and tested on the river.  The mean voltage output at selected streamflow depths were determined to derive a power curve. Results showed that retrofitting the irrigation pumping system with an array of twenty units (20) of selected submersible irrigation pumps powered by twenty-two (22) units of an array of Savonius hydrokinetic turbines would satisfactorily deliver irrigation water into night storage and irrigate the pilot field of 100 ha of farmland on plot 2 and 5 on the scheme.
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利用水动力技术设计和改造中奥贡灌溉项目的灌溉抽水系统
使用化石燃料进行灌溉抽水的高成本对中奥贡河灌溉计划的灌溉效率产生了负面影响。高效的灌溉抽水将提高灌溉计划的农业生产力和粮食产量。 利益相关者已多次尝试寻找替代能源,为灌溉抽水提供动力。本研究旨在利用水动力技术对中奥贡灌溉计划的灌溉抽水系统进行设计和改造。利用 MapWindow 水土评估工具对集水区进行了水文建模,以确定河流水资源的年总动能和可回收动能。开发了萨沃尼尔斯水动力涡轮机系统,并在河上进行了测试。 确定了选定水流深度下的平均电压输出,从而得出了功率曲线。结果表明,使用由二十二(22)台萨沃尼尔斯水动力涡轮机驱动的二十(20)台选定的潜水灌溉泵组成的阵列来改造灌溉抽水系统,可以将灌溉水输送到夜间储水库,并灌溉该计划中 2 号和 5 号地块的 100 公顷试验田。
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