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Improvement of energy efficiency and environmental safety of thermal energy through the implementation of contact energy exchange processes

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Energy efficiency improvement and ecological safety of heat power plants are urgent problems, which require scientifically grounded approaches and solutions. These problems can be solved partly within the presented heat-and-power cycles by including contact energy exchange equipment in the circuits of existing installations. A significant positive effectis obtained in the contact energy exchange installations, such as gas-steam installation ‘Aquarius’ and the contact hydrogen heat generator that also can use hydrogen as a fuel. In these plants, the efficiency increases approximately by 10–12% in comparison with traditional installations, and the concentration of toxic substances, such as nitrogen oxides and carbon monoxide in flue gas can be reduced to 30 mg/m3 and to 5 mg/m3, respectively. Moreover, the plants additionally ‘generate’ the clean water, which can be used for technical purposes.
Rocznik
Strony
127–--137
Opis fizyczny
Bibliogr. 10 poz., rys., tab.
Twórcy
  • National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, 03056 Kyiv, Pobedy 37, Ukraine
  • National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, 03056 Kyiv, Pobedy 37, Ukraine
autor
  • National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, 03056 Kyiv, Pobedy 37, Ukraine
autor
  • National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, 03056 Kyiv, Pobedy 37, Ukraine
  • National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, 03056 Kyiv, Pobedy 37, Ukraine
Bibliografia
  • [1] Dikiy N., Koloskova N., Shklyar V., Dubrovskaya V.: Development and investigation of a condenser of a mixing type with a porous packing. Prom. Heat Engineering 13(1992), 1-3, 11-15.
  • [2] Dikiy N., Dubrovskaya V., Shklyar V.: Investigation of the contact capacitor for the heat recovery circuit of the KG PTU. Prom. Heat Engineering 23(2001), 4-5. 81-83.
  • [3] Dikiy N., Uvarichev O., Solomakha A.: The newest gas and steam turbine technology ‘Aquarius’ for the production of mechanical (electric) and thermal energy and its implementation in the energy complex of Ukraine. Energetics, Economics, Technologies, Ecology 1(2009), 16-19.
  • [4] Varlamov, G., Romanova K., Daschenko O., Ocheretyanko M., Kasyanchuk S.: The use of contact heat generators of the new generation for heat production. Eastern-European J. Enterprise Technologies 84(2016), 52-58.
  • [5] Gubarev A., Kuleshov M., Pogonin A.: Increasing the efficiency of autonomous heat supply systems when using heat-generators of condensation type. Energy and Heat Engineering Processes and Equipment 8(2012), 117-125.
  • [6] Dikiy N., Solomakha A., Suzdal E.: Gas and steam turbine technology ‘Aquarius’ for joint production of electric and thermal energy. Energy Technology and Resource Saving 3(2012), 30-33.
  • [7] Kapustyansky A., Misak Y.: Results of expert tests of the boiler TPP-210A Trypillya TPP at combustion of solid fuel with the addition of a combustion catalyst. Power Engineering and Electrification 12(2012), 3-8.
  • [8] Kapustiansky A.: Influence of the addition of the combustion catalyst on the efficiency and economy of the operation of boilers during coal combustion. Energy Manage. 1(2013), 20-21.
  • [9] Varlamov G., Dashchenko O., Kasyanchuk S., Ocheretyanko M.: The principle of ecological balance as a guarantee of the growth of environmental safety. In: ‘Balanced Development – 21st Century: Management, Technologies, Models’ (I. Khlobystova, Ed.). WSEH, Cherkasy 2015, 153-158.
  • [10] Varlamov G., Dashchenko O., Romanova K., Vovchenko D., Code D.: Realization of the new energy-ecological paradigm is the basis of sustainable development of the country in harmony with nature. In: Proc. 13th Int. Scientific Practical Conf. ‘Ecological safety: problems and solutions’, Kharkiv, September 11-15, 2017.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-77faf28a-f7a4-46cf-a510-c7ebff395797
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