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Improvement In Efficiency Of Water Floating Nano Turbine

Md Ali, Mohamad Fariq Azzad (2017) Improvement In Efficiency Of Water Floating Nano Turbine. Project Report. UTeM, Melaka, Malaysia. (Submitted)

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Renewable energy source has become a pursue for the modern world as the free energy is the goal for today’s people. Water Floating Nano Turbine is a turbine model that developed in smaller scale, supplying free electrical energy for small electrical appliances. From the natural sources, such as river, stream and ocean, it can actually generate the electricity without any problems and harmful to the people. The electricity produced can be used to recharging the electronics devices that possibly pulling them out of the emergency situation. The conversion of energy process from the natural sources to useful energy involves several steps, draws out kinetic energy from the water and transform into a form of mechanical energy at the rotor axis and changed into electrical energy. The processes in running this project includes several stages which are studying past researches about this project, designing harvesting mechanism, building new water floating mechanism, selecting turbine to be used, fabrication works and project testing session. The main aim of this project is to improve the voltage produced by the turbine. The redesign works for harvesting mechanism and water floating mechanism also based on getting the best flow for the turbine to generate best voltage. As the result, the new WFNT successfully achieved the main aim where it is get to produce 1089% increment from previous version of WFNT. The three improvements made on WFNT shows positive achievement in generating higher voltage.

Item Type: Monograph (Project Report)
Uncontrolled Keywords: Turbomachines, Turbines, Systems engineering
Subjects: T Technology > T Technology (General)
T Technology > TJ Mechanical engineering and machinery
Divisions: Library > Projek Sarjana Muda > FTK
Depositing User: Mohd Hannif Jamaludin
Date Deposited: 11 Dec 2018 09:05
Last Modified: 11 Dec 2018 09:05

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