An investigation of thermal transfer in thermal energy regeneration transducer

Journal Title: International Research Journal of Applied and Basic Sciences - Year 2014, Vol 8, Issue 9

Abstract

A thermal energy regeneration transducer, directly changes the wasted thermal energy to mechanical energy using the expansion of liquids in a closed circle. Being exposed to temperature differences of the environment, the machine cause both liner and circular motion due to expansion & contraction of the liquid inside which is one of the unique properties of the machine. Using liquids with different boiling points, the machine is one of the most practical ones in various temperature differences. The pressure due to transference of heat into the liquid inside makes the piston move. As the rack on the piston transfers the motion to the moving gears around the central axis, both the piston and cylinder move from the hot to the cool. Point with their circulatory motion. When the liquid loses heat, the system goes back to the starting position with the reverse procedure taking place. The procedure goes on while there exists a temperature difference. After a brief introduction to the machine, this article investigates the thermal transfer in the machine and calculates the overall thermal transfer coefficient of the cylinders. The thermal transfer rate and the efficiency of the finned cylinders. It is the worth mentioning that the first sample of the machine has been designer, produced and registered.

Authors and Affiliations

Alireza Babaei jondabeh| University of Applied Science & Technology Harand Branch, Technical Vocational Training Center Harand, Mohsen Aghajani| University of Applied Science & Technology Harand Branch, Technical Vocational Training Center Harand

Keywords

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  • EP ID EP6720
  • DOI -
  • Views 258
  • Downloads 10

How To Cite

Alireza Babaei jondabeh, Mohsen Aghajani (2014). An investigation of thermal transfer in thermal energy regeneration transducer. International Research Journal of Applied and Basic Sciences, 8(9), 1297-1305. https://www.europub.co.uk/articles/-A-6720