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Analysis of Possibility of Utilisation of Geothermal Resource in Stargard Szczeciński for Construction of Binary Power Station

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EN
In the paper presented have been the results of the analysis of effectiveness of operation of binary power station supplied by a flowrate of geothermal water in the amount of 100 m3/h and temperature ranging from 80 to 100 C, i.e. water available in Poland. Analysis has been applied to the possibility of application of various low-boiling point liquids with respect to a most effective utilization of geothermal energy. In the assessment of operation of the binary power station utilised have been quantities characteristic to the Clausius-Rankine cycle.
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autor
  • Szczecin University of Technology Department of Heat Engineering
  • Szczecin University of Technology Department of Heat Engineering
  • Szczecin University of Technology Department of Heat Engineering
Bibliografia
  • [1] International Geothermal Association, strony www.
  • [2] Shulman G.: Low temperature flashed steam power generation, Proceedings of the World Geothermal Congress, Florence, Italy,1995.
  • [3] Gawlik K., Hassani V.: Advanced binary cycles: Optimum working fluids, Geothermal Resources Council, Annual Meeting, California, USA,1998.
  • [4] Chodkiewicz R., Hanusek P., Porochnicki J.: Acquisition of electricity from geothermal resources, Cieplne Maszyny Przepływowe, No.120, 2001.
  • [5] Nowak W., Sobański R., Kabat M., Kujawa T.: Systems of acquisition and utilisation of geothermal energy, Wyd. Politechniki Szczecińskiej, 2000.
  • [6] Nowak W., Borsukiewicz-Gozdur A.: Analysis and assessment of the effectiveness of operation of binary power plant utilising geothermal water with a medium enthalpy, Transaction of IFFM, No. 114, Gdańsk 2003.
  • [7] Bonca Z., Butrymowicz D., Dambek D., Depta A., Targańsk, W.: Handbook: Refrigeration fluids and heat carriers, IPPU Masta, 1998.
  • [8] Gutkowski K.M.: Refrigeration and airconditioning, WNT, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD5-0007-0010
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