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Experimental Design and Analysis of Pump as Turbine for Microhydro System

机译:微量系统汽轮机泵的实验设计与分析

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Pump as Turbine (PAT) is typically used as electromechanical components in microhydro systems, especially by rural communities in developing countries to reduce initial capital cost. The technology is readily available and easily accessible compared to commercially available turbines. The aim of this paper is to present the experimental design and analysis of PAT for microhydro systems over a range of rotational speeds. An end suction centrifugal pump was tested by inversing the flow across the pump. The rotational speed of the impeller was controlled by manipulating the braking force applied to the output shaft. The corresponding flow rate, pressure, and torque were recorded and presented. The experiment results show that the centrifugal pump can operate in turbine modes without any modification on mechanical components with the highest efficiency of 65.04%; however, at off-design operation, the efficiency decreases significantly due to unmatched flow velocity with the wall boundaries inside the pump.
机译:作为涡轮机(PAT)的泵通常用作微水系统中的机电组件,特别是发展中国家的农村社区,以减少初始资本成本。与市售的涡轮机相比,该技术易于获得且易于访问。本文的目的是介绍在一系列旋转速度下拍摄微量系统的实验设计和分析。通过反转穿过泵的流动来测试端部吸入离心泵。通过操纵施加到输出轴的制动力来控制叶轮的转速。记录和呈现相应的流速,压力和扭矩。实验结果表明,离心泵可以在涡轮机模式下运行,没有任何改变的机械部件,最高效率为65.04%;然而,在非设计操作时,由于泵内的壁边界,效率显着地降低。

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