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Development of an efficient off-grid pumping system and evaporation reduction strategies to increase access to irrigation for smallholder farmers in India

机译:开发有效的离网泵送系统和蒸发减少策略,以增加印度小农的灌溉渠道

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摘要

Due to the unavailability of electricity, about 85% of groundwater irrigation in eastern India employs fuel-powered surface pumps, which can have system efficiencies as low as 5%. As fuel prices continue to rise, impoverished smallholder farmers cannot afford the operation costs of their systems and, as a result, irrigate less land. This research aimed to develop a more efficient off-grid system that eliminates suction head while continuing to utilize a fuel engine on the surface. Design requirements included increased discharge, increased efficiency, portability, maintainability, availability of replacement parts, and affordability. Flow rates and efficiencies of Indian pumps at varying pressure heads were tested to establish baseline performance and test the hypothesis that removing suction lift reduces operation costs. It was found that eliminating suction head can decrease operation costs up to 44% for the farmers. Fuel-driven system options investigated include flexible shafts and telescoping shafts to transmit power from a surface engine to a submersible pump, fluid machinery such as semi-open hydraulic systems, jet pumps, compressed air motors, and air lifts, and off-grid electricity generation employing a household backup generator or automotive alternator. However, none of these alternatives met all the design requirements. Instead, a hybrid motorized-manual rope pump was prototyped and tested on a well in Ruitola, Jharkhand. Although this system does not meet all the design requirements, it has the added benefit of providing domestic water supply. The prototype discharged an average of 155.4 L/min in motorized mode and 17.2 L/min for men and 13.3 L/min for women in manual mode. The rope pump received positive feedback from the users and thus could be taken forward with several modifications to improve performance. To increase the available water resources, evaporation reduction strategies to limit water loss from farm tanks were explored. The strategies employed waste materials and included covering a water surface with waste PET bottles and floats comprised of PET waste bottles and old saris. While waste bottles proved promising in a preliminary test, data in a larger experiment has thus far proved inconclusive and further testing is needed.
机译:由于电力供应不足,印度东部地区约有85%的地下水灌溉使用了燃油驱动的地面泵,该泵的系统效率低至5%。随着燃料价格的持续上涨,贫穷的小农户无法负担其系统的运行成本,结果是减少了土地的灌溉。这项研究旨在开发一种更有效的离网系统,该系统可消除吸头,同时继续在地面上使用燃料发动机。设计要求包括增加排放量,提高效率,可携带性,可维护性,备件的可用性以及价格适中。对印度泵在不同压头下的流量和效率进行了测试,以建立基准性能,并测试了取消吸力提升降低了运营成本的假设。结果发现,消除吸头可为农民减少高达44%的运行成本。研究的以燃料为动力的系统选项包括:挠性轴和伸缩轴,用于将动力从地面发动机传输到潜水泵;流体机械,例如半开放式液压系统,喷射泵,压缩空气马达和气举;以及离网电力使用家用备用发电机或汽车交流发电机进行发电。但是,这些替代方法均不能满足所有设计要求。取而代之的是,在贾坎德邦鲁伊托拉的一口井上对混合动力手动绳泵进行了原型设计和测试。尽管此系统不能满足所有设计要求,但它具有提供生活用水的额外好处。在手动模式下,原型机的平均排放量为155.4 L / min,男性为17.2 L / min,女性为13.3 L / min。绳泵收到了用户的积极反馈,因此可以进行一些修改以提高性能。为了增加可用的水资源,探索了减少蒸发的策略以限制从农缸中流失的水分。这些策略采用了废料,包括用废PET瓶和由PET废瓶和旧纱丽组成的浮子覆盖水面。尽管废物瓶在初步测试中被证明是有希望的,但迄今为止,在更大的实验中获得的数据尚无定论,需要进一步测试。

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    Gorbaty Emily;

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  • 年度 2013
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  • 正文语种 eng
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