THE FUEL ECONOMICITY OF COHENERATION- HEAT PUMP TECHNOLOGIES ON THE BASIS OF GAS TURBINE INSTALLATIONS IN MEDIUM CAPACITY BOILER-HOUSES
Keywords:
boiler-house, two-pipe system of heat supply, cogeneration and heat pump technology, gas turbine unit, waste heat boiler, heat pum
Abstract
The scheme of the high power boiler- house with cogeneration heat pumping plants for the two-tube system of heat supply is proposed. The application of cogeneration heat pumping technology without production of goods electrical power provides for the considerable economy of gas and increases the reliability of heat supply.
References
1. Bileka B.D., Cergienko R.V, Kabkov V.Ya. Cost- effectiveness of cogeneration and combined cogeneration- heat pump plants with gas piston and gas turbine engines. Aerospace machinery and technology, 7 (74), 2010. P. 1-3 (Ukr)
2. Patent of Ukraine for Utility Model No. 78343. Hot water supply system with high power boiler. Bileka B.D., Garkusha L.K., Babak S.V., 11.03.2013, Bul. NO 5 (Ukr)
3. Snezhkin Yu.F., Ulanov M.M., Chalayev D.M. Heat Pump Technologies - an Effective Way of Energy Saving. Promyshlennaya teplotehnika [Industrial Heat Engineering], NO. 7, 2013 (Ukr)
4. The catalog of power equipment. "Turbines and Diesels", 2007, «Turbomashiny», Russian, Rybinsk, 351 P.
2. Patent of Ukraine for Utility Model No. 78343. Hot water supply system with high power boiler. Bileka B.D., Garkusha L.K., Babak S.V., 11.03.2013, Bul. NO 5 (Ukr)
3. Snezhkin Yu.F., Ulanov M.M., Chalayev D.M. Heat Pump Technologies - an Effective Way of Energy Saving. Promyshlennaya teplotehnika [Industrial Heat Engineering], NO. 7, 2013 (Ukr)
4. The catalog of power equipment. "Turbines and Diesels", 2007, «Turbomashiny», Russian, Rybinsk, 351 P.
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Published
2018-02-15
How to Cite
Bileka, B., & Garkusha, L. (2018). THE FUEL ECONOMICITY OF COHENERATION- HEAT PUMP TECHNOLOGIES ON THE BASIS OF GAS TURBINE INSTALLATIONS IN MEDIUM CAPACITY BOILER-HOUSES. Thermophysics and Thermal Power Engineering, 40(1), 51-55. https://doi.org/https://doi.org/10.31472/ihe.1.2018.07
Section
District and Industrial Heat Power
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