首页> 外文期刊>Journal of irrigation and drainage engineering >Development of a Low-Cost Solar-Powered Water Supply System for Small-Scale Drip Irrigation Farms in Sub-Saharan Africa: Dosing Tank and Bell Siphon Perspective
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Development of a Low-Cost Solar-Powered Water Supply System for Small-Scale Drip Irrigation Farms in Sub-Saharan Africa: Dosing Tank and Bell Siphon Perspective

机译:撒哈拉以南非洲小型滴灌农场低成本太阳能供水系统的开发:计量罐和贝尔虹吸管的观点

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A substantial amount of work has been done concerning the use of siphons to automatically start and stop the discharge of fluid in many applications, except for application as a water supply system for smallholder drip irrigation systems. Thus, the main aim of this study was to develop a siphon apparatus and apply it to regulate the low-flow-rate water supply from a solar-powered pump as intermittent doses to pressurize small-scale drip irrigation farms in Sub-Saharan Africa (SSA). A siphon apparatus was assembled from polyvinyl chloride (PVC) pipes and installed in a 210-L tank. A drip irrigation system covering an area of 500m2 was connected to the tank containing the siphon, and water was lifted into the tank by a low-capacity 12-V pump that was powered by a 50-W solar panel. The siphon apparatus in the tank was tested over extended periods of time and was shown to work reliably and consistently by automatically and intermittently discharging water to pressurize the drip irrigation laterals, thus being able to irrigate while largely unattended. Test results showed that the inflow rate of 4.75Lmin-1 successfully caused the siphon to start, and the average coefficient of discharge for the siphon was found to be 0.35. Results from water application uniformity tests calculated using the method established by the American Society of Agricultural and Biological Engineers (ASABE) showed average to good discharge uniformity from emitters. The setup cost of the system was USD 415, whereas the net farm income obtained by accounting for all variable costs and annualized capital cost of the irrigation setup was USD 69. We conclude that it should be fairly easy and economically feasible to adapt the dosing siphon, low-flow-rate pump, and solar panel to other small-scale drip irrigation systems that are currently being promoted in SSA.
机译:在许多应用中,除了用作小农滴灌系统的供水系统外,在使用虹吸管自动启动和停止流体排放方面已经完成了大量工作。因此,这项研究的主要目的是开发一种虹吸装置,并将其用于调节间歇式剂量太阳能泵的低流量供水,从而为撒哈拉以南非洲的小型滴灌农场加压( SSA)。虹吸装置由聚氯乙烯(PVC)管组装而成,并安装在210升的水箱中。占地500平方米的滴灌系统连接到装有虹吸管的水箱上,水通过低容量12V泵提升到水箱中,该泵由50W太阳能电池板供电。储罐中的虹吸装置经过长时间的测试,通过自动间歇地排放水以对滴灌侧管加压,从而显示出可靠一致的工作状态,因此可以在无人值守的情况下进行灌溉。测试结果表明,4.75Lmin-1的流入速度成功地导致了虹吸管的启动,虹吸管的平均放电系数为0.35。使用美国农业和生物工程师协会(ASABE)建立的方法计算的水均匀性测试结果表明,排放源的排放均匀性良好。该系统的设置成本为415美元,而通过考虑所有可变成本和灌溉设置的年化资本成本所获得的农场净收入为69美元。我们得出结论,调整计量虹吸管应该相当容易并且在经济上可行,低流量泵和太阳能电池板用于SSA当前正在推广的其他小型滴灌系统。

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