COMPARATIVE ANALYSIS OF THE AVERAGE COST OF HEAT ENERGY PRODUCED IN BOILERS OF DIFFERENT POWER, TAKING INTO ACCOUNT THE ENVIRONMENTAL COMPONENT

Keywords: thermal energy, average cost of energy, life cycle, cleaning equipment, pollutant emissions, environmental tax

Abstract

The article deals with the dynamics of thermal power of heat generating sources of the district heating system with the analysis of the structure of the fuel balance of heating boilers to cover the need for heat energy for 2010–2017. To determine the efficiency of heat generation in boiler rooms, it is proposed to use a technique for determining the average cost of energy for the life age cost of energy for the life cycle, which has been improved for the thermal energy produced in boiler rooms, taking into account the costs of operation of treatment equipment and environmental tax. The average cost of life cycle energy for the three most common types of boilers operating on natural gas, coal and fuel oil, as well as domestic — on alternative fuels has been calculated, taking into account the environmental component. The expediency of further development of boiler equipment of different type for the needs of heat supply has been determined. Ref. 17, Fig. 1, Tab. 4.

Author Biographies

V.V. Stanytsina, The Institute of General Energy of the National Academy of Sciences of Ukraine, Kyiv

Candidate of Thechnical Sciences

G.O. Kuts, The Institute of General Energy of the National Academy of Sciences of Ukraine, Kyiv

Candidate of Thechnical Sciences

O.I. Teslenko, The Institute of General Energy of the National Academy of Sciences of Ukraine, Kyiv

Candidate of Technical Sciences

O.Ye. Malyarenko, The Institute of General Energy of the National Academy of Sciences of Ukraine, Kyiv

Candidate of Technical Sciences

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Published
2020-06-20
How to Cite
Stanytsina, V., Kuts, G., Teslenko, O., & Malyarenko, O. (2020). COMPARATIVE ANALYSIS OF THE AVERAGE COST OF HEAT ENERGY PRODUCED IN BOILERS OF DIFFERENT POWER, TAKING INTO ACCOUNT THE ENVIRONMENTAL COMPONENT. Energy Technologies & Resource Saving, (2), 55-62. https://doi.org/10.33070/etars.2.2020.07
Section
Environment protection