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Paper Title
Advanced Hybrid Multi-Power Station Turbine Structure for Efficient Power Generation
  Mr. Amit D. Landge,  Mr. N. M. Bante

As per the technical evolution and technical trends taken into consideration so we have created a “Advanced Hybrid Multi-power Station Turbine Structure for Efficient Power Generation.This system uses an advanced savonius hybrid turbine which will rotate over multiple natural resources water force, wind power and related things having efficiency greater than aerodynamic turbine. The advancement of this turbine is that, this turbine not only rotate over multiple natural resources and artificial resources but also having capability of resources settlement into it according to multiple savonius blade structure. The advantages of this project as compared to other system is that, on one single Savonius structure unit we can able to rotate multiple power substation and other power station uses single turbine which will rotate only single generator. So power output is more efficient than that normal. This project we can able to implement at industries, factories, agricultural areas, home, airport, hill station and artificial creations.This is not a simple structure like simple turbine. This is advanced technical structure created specially taken vision over multiple natural resources and artificial resources. This structure having natural resources settlement and re-utilization capacity, that means this structure not only uses multiple resources i.e. wind power, water force and other but also settle them to re utilization so that this turbine rotate with more toque and able to create more output so that we can able to charge battery within minimum time.

Publication Details
Unique Identification Number - IJEDR1602244
Page Number(s) - 1370-1377
Pubished in - Volume 4 | Issue 2 | June 2016
DOI (Digital Object Identifier) -   
Publisher - IJEDR (ISSN - 2321-9939)
Cite this Article
  Mr. Amit D. Landge,  Mr. N. M. Bante,   "Advanced Hybrid Multi-Power Station Turbine Structure for Efficient Power Generation", International Journal of Engineering Development and Research (IJEDR), ISSN:2321-9939, Volume.4, Issue 2, pp.1370-1377, June 2016, Available at :http://www.ijedr.org/papers/IJEDR1602244.pdf
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