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Design and fabrication of perpetual motion hydroelectric power Generator

    Authors

    • Rajiv Selvam 1
    • Mohammed Shajahan Omar 2
    • Vishal Mohanan Jyotsna 2
    • Chaganti Sainath 3
    • Manas Manoj 3
    • Neil Jokhi 3
    • Clifton Stephen 3

    1 Associate Professor, Department of Mechanical Engineering, Manipal Academy of Higher Education, Dubai International Academic City, Dubai, UAE

    2 Department of Mechanical Engineering, Manipal Academy of Higher Education, G-04 Dubai International Academic City, Dubai, UAE

    3 Department of Mechanical Engineering, Manipal Academy of Higher Education, G-04 Dubai International Academic City, Dubai, U.A.E

,

Document Type : Research Article

10.47392/irjash.2019.01
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Abstract

Perpetual Motion Hydroelectric Generators is a system which generates electricity by using the potential energy of falling water under two circumstances, firstly for power generation and secondly for recirculation of water. These types of systems can be extremely useful in rural regions where there is a shortage of electricity as well as a limited supply of water. This paper describes the design and fabrication of a hydroelectric generator as well as a hydraulic ram pump. Emphasis is given to the calculation of power produced, discharge and the efficiency of the ram pump. The results obtained are validated with respect to standard fluid mechanics calculations.

Keywords

  • Recirculation
  • Hydroelectric generator
  • Hydraulic ram
  • Power
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References
[1] Rohan.D.Balgude, Swapnil.P.Rupanavar, Pradeep.S.Bagul, “Designing of Hydraulic Ram Pump”, International Journal of Engineering and Computer Science, vol. 4, issue 5, (2015), pp 11966 – 11971.
[2] S.N.Mohammed, “Design and Construction of a Hydraulic Ram Pump”, Leonardo Electronic Journal of Practices and Technologies, No. 11, (2007), pp 59 – 70.
[3] Gregory.D.Jennings, “Hydraulic Ram Pumps”, North Carolina Cooperative Extension Service.
[4] O.B.Nganga, G.N.Nyakoe, W.Kabecha, N.O.Abongu, “An Experimental Prototype for Low Head Small Hydropower Generation using Hydram”, pp – 174-186.
[5] Sampath SS, SawanShetty, Allan Mathew, WaleedJavaid, ChithiraiPonSelvam M, “Estimation of Power and Efficiency of Hydraulic Ram Pump with Recirculation System”, International Journal of Computer aided Mechanical Design and Implementation, vol. 1, No. 1, (2015), pp 7 – 18.
[6] Rajiv S.,Shanmuga Sunadarm and Pablo Pasquale (2011). A Study and Analysis on Electromagnetic Compression Forming Processed Aluminium Alloy Tubes. Advanced Materials Research (337), 560-563.
[7] S.U.Patel, Prashant.N.Pakale, “Study on Power Generation by using Cross Flow www.rspsciencehub.com Volume 01 Issue 01 May 2019 e-ISSN: 2582-4376 International Research Journal on Advanced Science Hub (IRJASH) (online) 9 Water Turbine in Micro Hydro Power Plant”, International Journal of Research in Engineering and Technology, vol 4, issue 5, pp 1 – 4.
[8] Davis S and Corrie L, “Micro Hydro Clean Power from Water”, New Society Publishers, (2003).
[9] C.A.Nwosu and T.C.Madueme, “Recycled Micro-Hydro Power Generation using Hydraulic Ram Pump”, International Journal of Research in Engineering and Technology, vol 1, No. 3, (2013), pp 1 –10.
[10] R.N.Mbiu, S.M.Marenga and M.Mwai, “Performance Testing and Hydraulic Ram Pump”, Sustainable Research and Innovation (SRI) Conference, (2015), pp 6 – 8.
[11] O.D.Thapar “Small/Mini Hydro Power Technology Research and Education”, UNESCP Regional Working Group Meeting Colombo, (1883), pp 1 – 7.
[12] O.A.Nnene, I.O.Koye and J.C.Ajunwamba, “Design and Construction of a water Conservation System”, Research Gate, (2009), pp 1 – 13.
[13] G.Maruthi Prasad Yadhav, H.Raghavendra, K.VijayBhasakar Reddy, H.Ashok, K.Chakridhas Reddy, P.S.G Chandra Sekhar Reddy, “An Experimental Prototype of Micro Hydro Power Generator”, International Journal of Mechanical and Industrial Technology, vol 3, issue 1, (2015), pp 1 – 5.
[14] D.Tsaousis, “Perpetual Motion Machine”, Journal of Engineering Science and Technology, (2008), pp 53 – 57.
[15] Seemin Sheikh, C.C.Honda, A.P.Ninawe, “Design Methodology for Hydraulic Ram Pump (Hydram)”,International Journal of Mechanical Engineering and Robotics Research ,vol 2, No. 4, (2013).
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International Research Journal on Advanced Science Hub
Volume 1, Issue 1
May 2019
Page 1-9
Files
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  • PDF 622.15 K
History
  • Receive Date: 02 May 2019
  • Revise Date: 18 May 2019
  • Accept Date: 25 May 2019
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Statistics
  • Article View: 2,799
  • PDF Download: 1,339

APA

Selvam, R. , Omar, M. S. , Jyotsna, V. M. , Sainath, C. , Manoj, M. , Jokhi, N. and Stephen, C. (2019). Design and fabrication of perpetual motion hydroelectric power Generator. International Research Journal on Advanced Science Hub, 1(1), 1-9. doi: 10.47392/irjash.2019.01

MLA

Selvam, R. , , Omar, M. S. , , Jyotsna, V. M. , , Sainath, C. , , Manoj, M. , , Jokhi, N. , and Stephen, C. . "Design and fabrication of perpetual motion hydroelectric power Generator", International Research Journal on Advanced Science Hub, 1, 1, 2019, 1-9. doi: 10.47392/irjash.2019.01

HARVARD

Selvam, R., Omar, M. S., Jyotsna, V. M., Sainath, C., Manoj, M., Jokhi, N., Stephen, C. (2019). 'Design and fabrication of perpetual motion hydroelectric power Generator', International Research Journal on Advanced Science Hub, 1(1), pp. 1-9. doi: 10.47392/irjash.2019.01

CHICAGO

R. Selvam , M. S. Omar , V. M. Jyotsna , C. Sainath , M. Manoj , N. Jokhi and C. Stephen, "Design and fabrication of perpetual motion hydroelectric power Generator," International Research Journal on Advanced Science Hub, 1 1 (2019): 1-9, doi: 10.47392/irjash.2019.01

VANCOUVER

Selvam, R., Omar, M. S., Jyotsna, V. M., Sainath, C., Manoj, M., Jokhi, N., Stephen, C. Design and fabrication of perpetual motion hydroelectric power Generator. International Research Journal on Advanced Science Hub, 2019; 1(1): 1-9. doi: 10.47392/irjash.2019.01

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