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End Suction Centrifugal Pump Operating in Turbine Mode for Microhydro Applications

机译:在微型水力应用中以涡轮模式运行的端吸离心泵

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This paper reviews the current research works on the end suction centrifugal pump coupled with induction generator running in turbine mode for microhydro application. The information can be used by practicing engineers, researchers, and plant managers to understand the potential of pump running as turbine. Review on experimental and simulation works was carried out encompassing end suction single stage low specific speed which is less than 10 kW. This is followed by review of their efficiency improvement through modifications. The results show that centrifugal pump can operate in turbine modes without any modification on mechanical components. However, to achieve the best efficiency point (BEP), it requires higher flow rate and head than pumping rating. Efficiency improvement is viable through geometric modification to improve hydraulic characteristic. The studies also show that pump as turbine (PAT) can be directly coupled with modified induction motor as generator by adding capacitor and electric control system, regulating voltage and frequency at the output terminal. It was found that PAT offers the best low cost solution for microhydro application especially for third world countries that do not have local microhydro manufacturer.
机译:本文回顾了目前在端吸式离心泵和感应发电机上以涡轮模式运行的微水应用的研究工作。执业的工程师,研究人员和工厂经理可以使用该信息来了解泵作为涡轮机运行的潜力。进行了包括端吸单级低比转速(小于10 kW)在内的实验和仿真工作审查。接下来是通过修改审查其效率改进。结果表明,离心泵可以在涡轮模式下运行,而无需对机械组件进行任何修改。但是,要达到最佳效率点(BEP),它需要比泵浦额定值更高的流量和扬程。通过几何修改来改善水力特性是可行的。研究还表明,通过添加电容器和电气控制系统,调节输出端子的电压和频率,可以将泵式涡轮机(PAT)与改进型感应电动机作为发电机直接耦合。人们发现,PAT为微水应用提供了最佳的低成本解决方案,特别是对于没有本地微水制造商的第三世界国家。

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