DESIGN AND FABRICATION OF TREADMILL CYCLE
Abstract & Details
Research Area
MECHANICAL ENGINEERING
Keywords
Exercise
Treadmill
Battery
Belt
Gait efficiency
Treadmill cycle
Generator
Abstract
Exercise is inevitable to keep health in good status. In this project we study the treadmill exercise outdoor and their effect on health. Also we enlisted the advantages and disadvantages of treadmill cycle exercise. One of the most popular types of home as well as outdoor exercise equipment is the treadmill cycle, which provides a straightforward, efficient aerobic workout. For many, treadmills are a good choice to begin a new exercise routine because walking is well tolerated by most individuals regardless of fitness level and for most back conditions. As strength and endurance are developed, the treadmill bicycle can be used for jogging or for interval training. The modern challenge faced with the global energy situation is the growing energy demand and the strong dependence on unsustainable fossil fuels. Another concurrent issue is the adverse health and socio-economic implications of adult obesity. Human Power Generation, which uses metabolized human energy to generate electrical power, could potentially address both these challenges. The treadmill, one of the most popular exercise machines, presently consumes large amounts of energy while dissipating a majority as heat. The purpose of this thesis project was to design and develop a human powered treadmill generator and determine its power generation potential. A heavy duty rechargeable battery pack was used to store the generated energy and additional components to measure the generated power were included. The power generating potential of the generator was determined for varying belt speeds and angles of inclination, and compared with the American College of Sports Medicine (ACSM) metabolic walking and running prediction equations to determine efficiency. The generator was able to deliver 140W peak power for a short period of time. Regression equations related the power generated to the belt speed, covering values ranging from an average 10.8±0.36W at 1.83±0.045m/s to 90.3±3.04W at 2.38±0.054m/s. The angle of inclination did not have a significant impact on energy generation. The max average efficiency obtained for the system in this study was 37.9±2.63%, assuming 25% gait efficiency. Possible applications for this concept include energy saving equipment in a gym, low-cost, simple to operate, and low maintenance solutions for developing nations, and as a tool to educate energy conservation. Also, the need for exercise in space with low gravity makes the treadmill generator a possible source for secondary power in future extraterrestrial environments.
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Prof. P. R. Gajbhiye | K. D. K. College of Engineering |
| 2 | Prof. Dhananjay D. Dange | K. D. K. College of Engineering |
| 3 | Shubham. C. Hingnekar | K. D. K. College of Engineering |
| 4 | Raunak. V. Kondalwar | K. D. K. College of Engineering |
| 5 | Nazeefuddin Jamal | K. D. K. College of Engineering |
| 6 | Mohit. G. Sonwane | K. D. K. College of Engineering |
| 7 | Mohit. G. Shete | K. D. K. College of Engineering |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Gajbhiye, Prof. P. R., Dange, Prof. Dhananjay D., Hingnekar, Shubham. C., Kondalwar, Raunak. V., Jamal, Nazeefuddin, Sonwane, Mohit. G., & Shete, Mohit. G. (2017). DESIGN AND FABRICATION OF TREADMILL CYCLE. International Journal of Advance Research and Innovative Ideas In Education, 3(2), 1597-1604.
MLA Style
Gajbhiye, Prof. P. R., et al. "DESIGN AND FABRICATION OF TREADMILL CYCLE." International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 2, 2017, pp. 1597-1604.
IEEE Style
Prof. P. R. Gajbhiye, Prof. Dhananjay D. Dange, Shubham. C. Hingnekar, Raunak. V. Kondalwar, Nazeefuddin Jamal, Mohit. G. Sonwane, and Mohit. G. Shete, "DESIGN AND FABRICATION OF TREADMILL CYCLE," International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 2, pp. 1597-1604, 2017.
Vancouver Style
Gajbhiye Prof. P. R., Dange Prof. Dhananjay D., Hingnekar Shubham. C., Kondalwar Raunak. V., Jamal Nazeefuddin, Sonwane Mohit. G., et al. DESIGN AND FABRICATION OF TREADMILL CYCLE. International Journal of Advance Research and Innovative Ideas In Education. 2017;3(2):1597-1604.
Harvard Style
Gajbhiye, Prof. P. R., Dange, Prof. Dhananjay D., Hingnekar, Shubham. C., Kondalwar, Raunak. V., Jamal, Nazeefuddin, Sonwane, Mohit. G., & Shete, Mohit. G. (2017) 'DESIGN AND FABRICATION OF TREADMILL CYCLE', International Journal of Advance Research and Innovative Ideas In Education, 3(2), pp. 1597-1604.
Chicago Style
Gajbhiye, Prof. P. R., et al. "DESIGN AND FABRICATION OF TREADMILL CYCLE." International Journal of Advance Research and Innovative Ideas In Education 3, no. 2 (2017): 1597-1604.
Turabian Style
Gajbhiye, Prof. P. R., et al. "DESIGN AND FABRICATION OF TREADMILL CYCLE." International Journal of Advance Research and Innovative Ideas In Education 3, no. 2 (2017): 1597-1604.
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