Modifikasi Sudu-sudu Blower Sentrifugal yang Diaplikasikan pada Turbin Pico Hydro

Zulfikar, Dean Corio
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Abstract

The water turbine must be specially designed according to the calculation of its energy potential, proportional to the height of the falling water and the discharge. This research is conducted to study the solution fluid engine that functions as a pico hydro water turbine, namely a centrifugal blower with a simple construction, operating at low head, small discharge, easy installation and operation and low price. The blower used in this test is a blower that is already on the market with an impeller diameter of 15 cm, inlet size of 2 inches. The test was carried out at a constant head (falling water height) of 5 m. The working principle of the blower is reversed, that is, water from a certain height flows through the rapid pipe and enters the exhaust side of the blower until the water moves the blower and exits through the blower inlet to the draftube. The purpose of this study was to determine the effect of modification of the blades on the increase in efficiency of the picohydro turbine. This study uses an analytical method with testing parameters based on calculating the value of water discharge, water power, torque, turbine mechanical power and turbine efficiency. To increase the power and efficiency of the blower as a turbine, modifications are made to the blower blades. With the modification of the blower blades, the turbine efficiency increases by 10% from before the modification.
水轮机必须根据其能量势的计算进行专门设计,与落水高度和流量成正比。本文研究的是一种具有微型水轮机功能的溶液流体发动机,即结构简单、运行水头低、流量小、安装操作方便、价格低廉的离心鼓风机。本试验使用的鼓风机为市场上已有的鼓风机,叶轮直径为15厘米,进口尺寸为2英寸。试验在恒定水头(落水高度)为5米的情况下进行。鼓风机的工作原理是相反的,即水从一定高度流过快速管道,进入鼓风机的排气侧,直到水移动鼓风机,并通过鼓风机进口出口至引水管。本研究的目的是确定叶片改造对水轮机效率提高的影响。本研究在计算水流量、水力、转矩、水轮机机械功率和水轮机效率的基础上,采用测试参数解析的方法。为了增加作为涡轮的鼓风机的功率和效率,对鼓风机叶片进行了修改。风机叶片经过改造后,涡轮效率比改造前提高了10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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