直列管式水轮机的设计与分析

IF 0.9 Q3 ENGINEERING, MULTIDISCIPLINARY 3c Tecnologia Pub Date : 2020-04-30 DOI:10.17993/3ctecno.2020.specialissue5.63-73
Muhammad Talha, Atif Saeed, M. Jaffer, Hayyan Yousuf Khan, A. Haider, Wajahat Ali
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引用次数: 1

摘要

在当前的智能时代,电力被认为是发展的必需品,因为几乎所有的机械和电路都依靠电力运行。因此,电力生产是实现进步的必要条件。但如今,人们一直在为获得大型化石水库而斗争,可再生资源的开发也很缓慢。有一些创新发明,如风力涡轮机、水轮机、太阳能电池和许多其他可再生能源。这些资源在一定程度上减缓了化石燃料的消耗,但这些发明确实有其缺点,而且大多数可以利用能源的领域都没有得到解决。其中一个可能进行能量转换的领域是在水运系统中。为了利用该系统的电能,可以在管道上安装一台小型涡轮发电机,以利用管道中流动水的动能。因此,通过应用这一研究,开发了另一种可再生能源。
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Design and analysis of inline pipe turbine
In this current smart era, electricity is considered a necessity for development as almost all of machinery and circuitry runs on electrical power. Therefore, the production of electricity is a must for attaining progress. But nowadays, there is a constant struggle for access to large fossil reservoirs and the development for renewable resources is slow. There have been innovative inventions such as the wind turbines, water turbines, solar cells and many other renewable sources. These resources have slowed down the depletion of fossil fuels to a certain extent, but these inventions do have their shortcomings and most areas where energy harnessing is possible, are left unanswered. One such area where energy conversion is possible is in the water transportation system. To harness electrical energy from this system, a small turbine generator can be installed onto the pipelines to harness the kinetic energy of the flowing water in them. Hence forth by applying this research, another renewable energy resource is developed.
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来源期刊
3c Tecnologia
3c Tecnologia ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
16
审稿时长
12 weeks
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