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Design And Cost Analysis Of Low Head Simple Reaction Hydro Turbine For Remote Area Power Supply

机译:偏远地区供电低水头简易反应水轮机的设计与成本分析

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This paper is aimed at exploring the performance characteristics of a simple reaction hydro turbine for power generation. Using principles of conservation of mass, momentum and energy, the governing equations have been identified for an ideal case of no frictional losses. The paper also describes the conception of a cross-pipe rotor for remote area electricity production. Using the ideal governing equations an optimized geometry of the rotor was selected for the working head of 5 m. Theoretical analysis of the self-governing characteristics has been presented. Experiments were carried out for 2,3,4 and 5 m head and evaluated against theoretical results. Split pipe turbine model is presented with detail layout, while different methods of experimentation are explored for different output requirements with varied heads. Various losses in the system are discussed, quantified and included in the graphical format. It is also demonstrated that the experimental power outputs do not have the same tendencies as theoretical predictions and decreases due to jet interference beyond a certain rotational speed as it passes the maximum power point.
机译:本文旨在探讨用于发电的简单反应水轮机的性能特征。使用质量,动量和能量守恒的原理,已经确定了无摩擦损耗的理想情况下的控制方程。本文还介绍了用于偏远地区电力生产的横管转子的概念。使用理想的控制方程,为5 m的工作头选择了最佳的转子几何形状。提出了对自治特征的理论分析。对2、3、4和5 m的水头进行了实验,并根据理论结果进行了评估。提出了具有详细布局的分体式涡轮机模型,同时针对不同的输出功率和不同的扬程,探索了不同的实验方法。讨论,量化并以图形格式包括系统中的各种损失。还证明了实验功率输出不具有与理论预测相同的趋势,并且由于射流干扰超过某个旋转速度而超过了最大功率点,因此实验功率输出降低了。

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