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A Thermoelectrical Approach To The Waste Energy Thrown By Chimneys

Yıl 2009, Cilt: 1 Sayı: 1, 16 - 18, 15.01.2009

Öz

Gases occurred at the end of combustion based on fossil fuels are thrown by means of chimney through the atmosphere because of negative pressure. The height of chimneys and temperature of the combusting gases seem as significant  parameters in the case of thrown gases. Recovery heat energy thrown from the chimneys is aimed using the Method of Thermoelectric Converter (TEC) in terms of electrical energy in this work. For this purpose, a model based on a thermoelectric converting system was thought and a related prototype was developed. In the model, the energy converting system was mounted just on the chimney in order not to affect flow of the gases. It was concerned that the energy thrown from the chimney as a lost energy would be recovered by a converting system in terms of electrical energy in some quantity. The experimental data based on the prototype was obtained related to the waste energy recovery.

Kaynakça

  • [1]- F.A.Di Bela, J.Gwiazda, A new concept for integrating a thermal air power tube with solar energy and alternative, wastee heat energy sources and large natural or man-made, geo-physical phenomenon, Renewable Energy, Volume 30, Issue 2, 2005, pp. 131-143. [2]- J. W. Blackburn, Effect of swine wastee concentration on energy production and profitability of erobic thermophilic processing, Biomass and ioenergy, Volume 21, Issue 1, (2001), pp. 43-51. [3]- N. J. Lamfon, M. Akyurt, Y. S. H. Najjar, Wastee heat recovery using looped heat pipes for air cooling, Heat Recovery Systems and CHP, Volume 14, Issue 4, (1994) , pp. 365-376. [4]- R.C. Schlichtig, J.A. Morris Jr., Thermoelectric and mechanical conversion of solar power, Solar Energy, Volume 3, Issue 2, (1959), pp.14-18. [5]- S.A. Omer, D.G. Infield, Design optimization of thermoelectric devices for solar power generation, Solar Energy Materials and Solar Cells, 53(1998), pp. 67-82. [6]- A.F. Ioffe, Semiconductor Thermoelements and Thermoelectric Cooling, Infosearch, London, 1957. [7]- I.B. Cadoff, E. Miller, Thermoelectric Materials and Devices, Material Technology Series, Chapman and Hall, London, 1960. [8]- D.D. Pollock, Thermoelectricity, Theory Thermometry Tool, ASTM, Wiley, New York, 1985. [9]- H.J. Goldsmid, Bismuth Telluride, in:C.A. Hogarth (Ed.), Materials used in Semiconductors Devices, Interscience, New York, 1965. [10]- J.P.Dismukes, F.D. Rossi, GeSi alloys for thermoelectric power generation-a review, A.I.CH.E. Int. Chem. Eng. Symp. Series, 5, 1965. [11]- G.L. Bennet, Application of thermoelectric in space, in D.M. Rowe (ed.), CRC Handbook of Thermoelectric, CRC Pres, Boca Raton, 1995. [12]- J. Eakburanawat, I. Boonyaroonate, Development of a thermoelectric battery-charger with microcontroller-based maximum power point tracking technique, Applied Energy, Volume 83, Issue 7, (2006), pp. 687-704.
Yıl 2009, Cilt: 1 Sayı: 1, 16 - 18, 15.01.2009

Öz

Kaynakça

  • [1]- F.A.Di Bela, J.Gwiazda, A new concept for integrating a thermal air power tube with solar energy and alternative, wastee heat energy sources and large natural or man-made, geo-physical phenomenon, Renewable Energy, Volume 30, Issue 2, 2005, pp. 131-143. [2]- J. W. Blackburn, Effect of swine wastee concentration on energy production and profitability of erobic thermophilic processing, Biomass and ioenergy, Volume 21, Issue 1, (2001), pp. 43-51. [3]- N. J. Lamfon, M. Akyurt, Y. S. H. Najjar, Wastee heat recovery using looped heat pipes for air cooling, Heat Recovery Systems and CHP, Volume 14, Issue 4, (1994) , pp. 365-376. [4]- R.C. Schlichtig, J.A. Morris Jr., Thermoelectric and mechanical conversion of solar power, Solar Energy, Volume 3, Issue 2, (1959), pp.14-18. [5]- S.A. Omer, D.G. Infield, Design optimization of thermoelectric devices for solar power generation, Solar Energy Materials and Solar Cells, 53(1998), pp. 67-82. [6]- A.F. Ioffe, Semiconductor Thermoelements and Thermoelectric Cooling, Infosearch, London, 1957. [7]- I.B. Cadoff, E. Miller, Thermoelectric Materials and Devices, Material Technology Series, Chapman and Hall, London, 1960. [8]- D.D. Pollock, Thermoelectricity, Theory Thermometry Tool, ASTM, Wiley, New York, 1985. [9]- H.J. Goldsmid, Bismuth Telluride, in:C.A. Hogarth (Ed.), Materials used in Semiconductors Devices, Interscience, New York, 1965. [10]- J.P.Dismukes, F.D. Rossi, GeSi alloys for thermoelectric power generation-a review, A.I.CH.E. Int. Chem. Eng. Symp. Series, 5, 1965. [11]- G.L. Bennet, Application of thermoelectric in space, in D.M. Rowe (ed.), CRC Handbook of Thermoelectric, CRC Pres, Boca Raton, 1995. [12]- J. Eakburanawat, I. Boonyaroonate, Development of a thermoelectric battery-charger with microcontroller-based maximum power point tracking technique, Applied Energy, Volume 83, Issue 7, (2006), pp. 687-704.
Toplam 1 adet kaynakça vardır.

Ayrıntılar

Bölüm Makaleler
Yazarlar

Şerafettin Erel Bu kişi benim

Yayımlanma Tarihi 15 Ocak 2009
Gönderilme Tarihi 16 Ekim 2017
Yayımlandığı Sayı Yıl 2009 Cilt: 1 Sayı: 1

Kaynak Göster

APA Erel, Ş. (2009). A Thermoelectrical Approach To The Waste Energy Thrown By Chimneys. International Journal of Engineering Research and Development, 1(1), 16-18.
Tüm hakları saklıdır. Kırıkkale Üniversitesi, Mühendislik Fakültesi.