Research Article

Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance

Volume: 24 Number: 5 October 1, 2020
EN

Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance

Abstract

A thermoelectric generator system has a potential to transform waste heat into electricity. Equate to other technologies of waste heat recover, usage of thermoelectric generators (TEGs) in a waste heat recovery system has many attractive features, for example quite operation, no moving parts, small size and endurance In addition to, thermoelectric generators are environmentally friendly materials that convert thermal energy directly into electricity by Seebeck effect. In work presented, a heat pipe assisted thermoelectric generator system is designed to generate electricity from the waste heat. Usage of heat pipes can latently decrease the thermal resistance and pressure losses in the system as well as temperature regulation of the TEGs and enhanced design flexibility. The designed system is suitable for the heat recovery from the piped systems such as the exhaust and the cylindrical chimney systems. The power performance of the designed thermoelectric generator system has been determined both theoretically and experimentally.

Keywords

References

  1. X. Liu, C. Li., Y.D. Deng. and C.Q. Su., “An energy-harvesting system using thermoelectric power generation for automotive application”, Electrical Power and Energy Systems, vol. 67 pp.510–516, 2015.
  2. M.A. Elsheikh., D.A., Shnawah., M.F.M. Sabri, B.M. Said, M.H. Hassan, M.B.A. Bashir and M. Mohamad, “A review on thermoelectric renewable energy: Principle parameters that affect their performance”. Renewable and Sustainable Energy Reviews, vol. 30, pp. 337–355, 2014.
  3. D. Champier, “Thermoelectric generators: A review of applications”, Energy Conversion and Management vol. 140, pp. 167–181, 2017.
  4. M.F. Remeli, A. Date, B. Orr, L.C. Ding, B. Singh, N.D.N. Affandi and A. Akbarzadeh, “Experimental investigation of combined heat recovery and power generation using a heat pipe assisted thermoelectric generator system”, Energy Conversion and Management, vol. 111, pp.147–157, 2017.
  5. Z. Tian, S. Lee and G. Chen, “Heat transfer in thermoelectric materials and devices”, Journal of Heat Transfer, vol. 135, pp. 1-14, 2013.
  6. B. Orr, A. Akbarzadeh, M. Mochizuki and L. Singh, “A review of car waste heat recovery systems utilising thermoelectric generators and heat pipes”, Applied Thermal Engineering, vol. 101, pp. 490–495, 2016.
  7. B. Orr, A. Akbarzadeh. and P. Lappas, “An exhaust heat recovery system utilising thermoelectric generators and heat pipes”, Applied Thermal Engineering, vol. 126, pp. 1185–1190, 2017.
  8. B. Orr, B. Singh, L. Tan and A. Kbarzadeh, “Electricity generation from an exhaust heat recovery system utilising thermoelectric cells and heat pipes”, Applied Thermal Engineering, vol. 73, pp. 588-597, 2014.

Details

Primary Language

English

Subjects

Mechanical Engineering

Journal Section

Research Article

Publication Date

October 1, 2020

Submission Date

March 5, 2020

Acceptance Date

June 23, 2020

Published in Issue

Year 2020 Volume: 24 Number: 5

APA
İslamoğlu, Y., Taymaz, İ., Parmaksızoğlu, C., Özsoy, M., & Aslan, E. (2020). Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance. Sakarya University Journal of Science, 24(5), 872-881. https://doi.org/10.16984/saufenbilder.699176
AMA
1.İslamoğlu Y, Taymaz İ, Parmaksızoğlu C, Özsoy M, Aslan E. Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance. SAUJS. 2020;24(5):872-881. doi:10.16984/saufenbilder.699176
Chicago
İslamoğlu, Yaşar, İmdat Taymaz, Cem Parmaksızoğlu, Murat Özsoy, and Erman Aslan. 2020. “Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance”. Sakarya University Journal of Science 24 (5): 872-81. https://doi.org/10.16984/saufenbilder.699176.
EndNote
İslamoğlu Y, Taymaz İ, Parmaksızoğlu C, Özsoy M, Aslan E (October 1, 2020) Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance. Sakarya University Journal of Science 24 5 872–881.
IEEE
[1]Y. İslamoğlu, İ. Taymaz, C. Parmaksızoğlu, M. Özsoy, and E. Aslan, “Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance”, SAUJS, vol. 24, no. 5, pp. 872–881, Oct. 2020, doi: 10.16984/saufenbilder.699176.
ISNAD
İslamoğlu, Yaşar - Taymaz, İmdat - Parmaksızoğlu, Cem - Özsoy, Murat - Aslan, Erman. “Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance”. Sakarya University Journal of Science 24/5 (October 1, 2020): 872-881. https://doi.org/10.16984/saufenbilder.699176.
JAMA
1.İslamoğlu Y, Taymaz İ, Parmaksızoğlu C, Özsoy M, Aslan E. Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance. SAUJS. 2020;24:872–881.
MLA
İslamoğlu, Yaşar, et al. “Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance”. Sakarya University Journal of Science, vol. 24, no. 5, Oct. 2020, pp. 872-81, doi:10.16984/saufenbilder.699176.
Vancouver
1.Yaşar İslamoğlu, İmdat Taymaz, Cem Parmaksızoğlu, Murat Özsoy, Erman Aslan. Design of Heat Pipe Assisted Thermoelectric Generator and Experimental Investigaton of the Power Performance. SAUJS. 2020 Oct. 1;24(5):872-81. doi:10.16984/saufenbilder.699176

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