Performance Evaluation of Human Powered Air Conditioning System
Keywords:
Human Power, Pedal Power, VCR (Vapour Compression Refrigeration), HPACS (Human Power Air Conditioning System), COP (Coefficient of Performance), DBT (Dry Bulb Temperature), WBT (Wet Bulb Temperature). RPM (Revolutions Per Minute).Abstract
Human power is the earlier source of power. In present work use of human power is demonstrated to work as a prime mover to Vapour Compression Refrigeration (VCR) system to drive its compressor. A system is designed which is known as Human Powered Air Conditioning System (HPACS) which uses pedal power from bicycle to supply power to compressor with the help of chain drive mechanism. This system may be helpful for the people living in re-mote areas; those are suffering from non-availability of electricity, frequent power cuts for extended period of time. This system may help those peoples by providing cooled air in extreme summer conditions which uses their own efforts, also help them for their physical fitness. Performance of HPACS is evaluated by considering various aspects of air conditioning.
References
[1] David Gordon Wilson, Understanding Pedal Power, ISBN: 0 – 86619 – 268 – 9, 1986, Volunteers in Technical Assistance.
[2] J. P. Modak and S. D. Moghe. Design and Development of a Human Powered Machine for the manufacture of lime-flyash-sand bricks. Human power, VOL. 13 Number 2, Spring 1998.
[3] Kajogbola R. Ajao , Kadiri Mustapha , Modupe R. Mahamood and Muritala O. Iyanda. Design and Development of a Pedal Powered Soap Mixer. [New York Sci-ence Journal. 2010;3(1);6-9]. (ISSN; 1554-0200).
[4] Prasad A. Hatwalne, Sushil T. Ambadkar , R. V. Paropate , Vivek R. Gadhewar , A. M. Wankhade. Design and Development of Pedal Operated Flour Mill, [New York Science Journal 2011;4(5);74-77]. (ISSN;1554-0200)
[5] Umesh Bokade , Zakiuddin Syed Kazi and Girish D. Mehta. Design and Develop-ment of Manually Energized Water Distillation Device. International Journal of Mechanical Engineering and Robotics Research. ISSN 2278-0149 VOL. 2 , Num-ber 1 January 2013. www.ijmerr.com
[6] P. B. Khope and J. P. Modak. Development and Performance Evaluation of a Human Powered Flywheel Motor Operated Forge Cutter. International Journal of Scientific and Technology Research VOL. 2 , Issue 3 , March 2013.
[7] Sharad Kumar Chandrakar, Ankit Aditya , Ruchika Sinha , Saurabh Mohre , Vinod Dubey and Saurav Majumdar. Fabricatin and Experimental Study of Human Powered Mechanical Device for Battery Charging. Journal of Material Science and Mechan-ical Engineering (JMSME). Print ISSN; 2393-9095; Online ISSN; 2393-9109; Vol. 2 , Number 11 ; April-June , 2015. pp. 47-49 www.krishisanskriti.org/jmsme.html
[8] Sharad Kumar Chandrakar , Dhiraj lal Soni , Dhananjay Kumar Yadav and Lalit Kumar Sahu. Experimental Study of Animal Powered Mechanical Device for Home Lighting System. International Journal of Environmental Engineering and Management. ISSN 2231-1319, Vol. 4, Number 5 (2013), pp. 471-482 www.ripublication.com/ijeem.html
[9] K. K. Padghan, Prof. A. K. Pitale, Prof. J. P. Modak, A. P, Narkhedkar. Human Powerd Flywheel Motor – A Review. International Journal of Engineering Trends and Technology (IJETT) Vol. 8, Number 1, Feb. 2014
[10] J Abhilash , Mada Rukmini Sai Rupa Shri. Design, Analysis and Fabrication of a Human Powered Vehicle. International Journal of Engineering Sciences and Re-search Technology. ISSN 2277-9655 Scientific Journal Impact Factor: 3.449 (IS-RA) Impact Factor: 2.114 [Abhilash, 3(12): December 2014]
[11] Stefan Mocanu, Adrian Ungureanu, Radu Varvanescu. Bike Powered Electricity Generator. Asia Pecific Journal of Multidisciplinary Research, Vol. 3, Number 1, Feb. 2015. Date Received: November 29, 2014; Date Revised: February 10, 2015
[12] R. N. Dehankar, Dr. A. M. Langde, A. P. Ganorkar. An overview of Human Powered Paper Corrugation Machine. International Journal on Recent and Innova-tion Trends in Computing and Communication. Vol. : 3 Issue: 2. ISSN: 2321-8169. pp.- 99-103.
[13] Prasad A. Hatwalne, Mr. Prashant M. Balsanwar, Vishnu K. Mane, Sagar S. Dabre. Pedal Powered Technology – The Lost Opportunity. International Journal For Engineering Applications and Technology. AGNIPANKH -15, ISSN: 2321-8134. www.ijfeat.org
[14] M. P. Mohurle, D. S. Deshmukh, P. D. Patil. Human Power using Bicycle Mech-anism as an Alternative Energy Source: A Critical Review. International Confer-ence on Global Trends in Engineering, Technology and Management (ICGTETM- 2016). ISSN: 2231-5381 www.ijettjournal.org
[15] Akhilesh A. Nimje, Sneha Jethani, Shreyash Motghare, Vaibhav Marotkar, Ash-ish Madankar, Ashwini Sahare, Prajakta Khadse and Shruti Wankhede. Pedal Pow-ered Generator for Remote Villages. I J C T A, 9(18) 2016, pp. 9019-9025.
[16] Thierry Kazazian, Arjen Jansen. Eco-Design and Human-Powered Products.
[17] R. Prakash, R. Singh. Mathematical Modeling and Simulation of Refrigerating Compressors. International
[18] Compressor Engineering Conference, School of Mechanical Engineering (1974). http://docs.lib.purdue.edu/icec
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