There are almost one billion people around the world who are bound to survive without electricity as they are unable to afford the electricity. It is a global challenge to provide affordable clean energy to everyone. One of the ways of energy generation is its extraction from moving water in which k
Design Analysis and Fabrication of Water Turbine for Slow Moving Water
There are almost one billion people around the world who are bound to survive without electricity as they are unable to afford the electricity. It is a global challenge to provide affordable clean energy to everyone. One of the ways of energy generation is its extraction from moving water in which kinetic energy is first converted into mechanical energy and then to electrical energy. The aim of this project is to design and fabricate a prototype of a turbine for energy extraction from slow-moving water. This water rotor is meant to harvest green energy in slow-moving waters. The design is environment-friendly and doesn’t cause any harm to the sea creatures as well.
| A final deliverable has a fully functioned water turbine which will extract green energy from the slow moving water. The turbine design will be much efficient to power basic electrical equipment. The design will be safe for the environment and the water bodies. The design will be capable of generating more torque from low-velocity water. |
A final deliverable has a fully functioned water turbine which will extract green energy from the slow moving water. The turbine design will be much efficient to power basic electrical equipment. The design will be safe for the environment and the water bodies. The design will be capable of generating more torque from low-velocity water.
| Elapsed time in (days or weeks or month or quarter) since start of the project | Milestone | Deliverable |
|---|---|---|
| Month 1 | Literature review | Theoretical |
| Month 2 | Literature review | Theoretical |
| Month 3 | Analytical design | Design parameters |
| Month 4 | Analytical design | Design parameters |
| Month 5 | Simulation | Data that was used in ANSYS and MATLAB to analyze the model |
| Month 6 | Material selection | Theoretical |
| Month 7 | Fabrication | Model |
| Month 8 | Testing and refinements | Model |
| Month 9 | Testing and refinements | Model |
| Month 10 | Refined model | Final report and thesis with prototype |
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