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The use of thermionic emission phenomenon as support for renewable energy sources

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Języki publikacji
EN
Abstrakty
EN
Energy converters using the phenomenon of thermionic emission to generate electricity and their applications related to renewable energy sources (RES) have been presented. Taking into account new technical solutions, hybrid systems combining thermionic energy converters (TEC) with other energy generators, e.g. with PV cells, the Stirling engine, improving the efficiency of the entire electric energy generating system, have been described. Leading technologies related to thermionic energy conversion and TEC hybrid systems powered by solar radiation have been shown in the tables. The dynamic development of TEC technology in recent years, in our opinion, will contribute to the wider interest of research communities to use the thermionic emission phenomenon to generate electricity.
Twórcy
autor
  • Politechnika Lubelska, Katedra Automatyki i Metrologii, ul. Nadbystrzycka 38A, 20-618 Lublin
autor
  • Politechnika Lubelska, Katedra Automatyki i Metrologii, ul. Nadbystrzycka 38A, 20-618 Lublin; tel. 81 538 43 04
Bibliografia
  • [1] B. Sørensen, A history of renewable energy technology, Energy Policy, vol. 1, pp. 8-12, 1991.
  • [2] J. B. Gálvez, S. M. Rodríguez, E. Delyannis, V. G. Belessiotis, S. C. Bhattacharya and S. Kumar, Solar Energy Conversion And Photoenergy Systems: Thermal Systems and Desalination Plants-Volume I, EOLSS Publications, pp. 366-370, 2010.
  • [3] L. E. Chaar, L. A. Lamont and N. E. Zei, Review of photovoltaic technologies, Renewable and Sustainable Energy Reviews, vol. 5, pp. 2165-2175, 2011.
  • [4] D. B. Go, J. R. Haase, J. George, J. Mannhart and R. Wanke, Thermionic energy Conversion in the Twenty-first Century: Advances and Opportunities for Space and Terrestrial Applications, Frontiers in Mechanical Engineering, pp. 1-17, 2017.
  • [5] O. W. Richardson, Thermionic phenomena and the laws which govern them, Nobel Lecture, 1929.
  • [6] B. Kania, Termoemisyjne generatory energii elektrycznej - problemy, rozwiązania, zastosowania, Trendy i rozwiązania technologiczne - odpowiedź na potrzeby współczesnego społeczeństwa, tom 2, Lublin, Wydawnictwo Naukowe TYGIEL, 2017.
  • [7] N. Rasor, The cesium vapor thermionic converter. I. Limitations imposed by emission processes, Advan. Energy Conversion, 1962.
  • [8] D. B. King, L. P. Sadwick and B. R. Wernsman, Microminiature Thermionic Converters. USA Patent US 6,294,858 B1, 2001.
  • [9] D. B. King, K. R. Zavadil and J. A. Ruffner, Results from the microminiature thermionic converter demonstration testing program, Collection of Technical Papers. 35th Intersociety Energy Conversion Engineering Conference and Exhibit (IECEC), pp. 272-282, 2000.
  • [10] J. W. Schwede, I. Bargatin, D. C. Riley, B. E. Hardin, S. J. Rosenthal, Y.Sun, F. Schmitt, P. Pianetta, R. T. Howe, Z. Shen and N. A. Melosh, Photon-enhanced thermionic emission for solar concentrator systems, Nature Materials, p. 762-767, 1 August 2010.
  • [11] M. Ghashami, S. K. Cho and K. Park, Near-field enhanced thermionic energy conversion for renewable energy recycling, Journal of Quantitative Spectroscopy and Radiative Transfer, vol. 198, pp. 59-67, 2017.
  • [12] G. Xiao, G. Zheng, M. Qiu, Q. Li, D. Li and M. Ni, Thermionic energy conversion for concentrating solar power, Applied Energy, pp. 1318-1342, 2017.
  • [13] G. Segev, Y. Rosenwaks and A. Kribus, Limit of efficiency for photon-enhanced thermionic emission vs. photovoltaic and thermal conversion, Solar Energy Materials & Solar Cells, vol. 140, p. 464-476, 1 May 2015.
  • [14] A. Datas, Hybrid thermionic-photovoltaic converter, Appl. Phys. Lett., pp. 1040-1055, 2016.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7f2b44af-338a-4ef2-8d33-08659cffefc4
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