Analysis And Comparative Study for Photovoltaic Solar Cooling System Between Two Geographical Regions

Journal Title: IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE) - Year 2018, Vol 15, Issue 5

Abstract

Our basic motive is to regulate the operating power in solar cooling system. This project presents the results of an experimental investigation carried out to minimize the power consumption of a solar cooling running at various loads. The experiments have been carried out for a total of three loads that is low, medium and high. We carried out speed control by minimizing the input current at multiple speeds with the help of resistors. For high speed, we have connected a couple of resistors in series whereas for medium speed a couple of resistors were connected in parallel and for low speed a single resistor was used. We have used AC motor which is traditional coolers with Permanent Magnet. PM AC motor is highly efficient since no electrical energy is used or losses incurred for developing or maintaining motor’s magnetic field. The concept of pump is integrated with copper pipe mechanism to the cooler setup. Water is made to flow from a higher potential to lower potential making the grass and pipe wet. Integration copper pipes to the pump increases the cooling effect equivalent to the air-conditioning. We have proposed an alternative methodology to the air-conditioning where we used compressor based approach for cooling system. By this we proposed an alternative low cost air cooling system which saves substantial amount of money spend on air-conditioning and on energy. Comparison and analysis has been conducted on the power consumption and cooling factors. Extensive study was conducted by comparing PV solar thermal cooling system.

Authors and Affiliations

G Durga Bhavani, Kedaranath M

Keywords

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  • EP ID EP438555
  • DOI 10.9790/1684-1505032235.
  • Views 50
  • Downloads 0

How To Cite

G Durga Bhavani, Kedaranath M (2018). Analysis And Comparative Study for Photovoltaic Solar Cooling System Between Two Geographical Regions. IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE), 15(5), 22-35. https://europub.co.uk/articles/-A-438555