水电厂液压泵系统设计

Dewn Innajie, Coolen Laure, Mecandily Gercia
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引用次数: 0

摘要

这项研究的目标是开发一种小容量发电机,可作为家庭使用的替代能源,特别是在农村地区。液压柱塞泵作为延长涡轮机和发电机发电持续时间的关键部件被纳入设计中,这是通过创新工程实现的。在液压柱塞泵的制造过程中,有三个测试变量,包括每个泵的进气管道长度(2.6m),输出管道高度(2.5m, 3.2m和3.7m)和出口管道直径(3/4”)。由于这些发现,本研究中具有液压柱塞泵系统的水力发电厂的平均最大性能在水库高度为2.7 (m)时实现,电压为7.3(伏)(伏)。涡轮直径为46厘米,进气管直径为3/4厘米,涡轮进口流量为每分钟7.2升,发电机可以产生7.3千瓦时(伏特)的电能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydroelectric Power Plant Design with Hydraulic Pump System
The goal of this research is to develop a small-capacity power generator that may be used as an alternative energy source for home use, particularly in rural regions. The hydraulic ram pump was included in the design as a critical component for extending the duration of power production by turbines and generators, which was achieved via innovative engineering. During the manufacturing of hydraulic ram pumps, there are three test variants, which are comprised of the intake pipe length (2.6m), the output pipe height (2.5m, 3.2m, and 3.7m), and the outlet pipe diameter (3/4") of each pump. As a consequence of these findings, the average maximum performance of the hydroelectric power plant with the hydraulic ram pump system in this research was achieved at a reservoir height of 2.7 (m), with a voltage resulting in 7.3 (volts) (volts). With a turbine diameter of 46 cm, an intake pipe diameter of 3/4 cm, and a turbine inlet discharge of 7.2 liters per minute, the generator can produce electrical energy to the tune of 7.3 kilowatt hours (volts).
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