Modelling the Combined Heat and Power Plants with Steam Turbines in the Study of Energy Security Problems

Author:

Piskunova Victoria12,Krupenev Dmitry12,Krupenev Egor12,Pyatkova Natalia1

Affiliation:

1. Melentiev Energy Systems Institute of Siberian Branch of the Russian Academy of Sciences , Irkutsk, Lermontov Str., 130 , Russian Federation

2. Irkutsk National Research Technical University , Irkutsk, Lermontov Str., 83 , Russian Federation

Abstract

Abstract The paper considers the development of mathematical models of combined heat and power plants that are to be used while modelling the fuel and energy complex. Consideration is given to three methods of combined heat and power plant (CHP) modelling: The first method provides for the simplified modelling based on CHP aggregation in one energy zone; the second method is based on modelling the individual CHP using the accurate parameters of their equipment operation; the third method is based on the use of standard regime diagrams for modelling individual CHP. Analysis of the presented methods of CHP modelling revealed that the third method out of the three methods proposed is most appropriate for mathematical models of fuel and energy complex for studying the fuel and power supply reliability. The experimental part of the paper describes the process of deriving the analytical dependencies of electricity and heat generation versus fuel used by CHP that is obtained by the third method proposed.

Publisher

Walter de Gruyter GmbH

Subject

General Environmental Science,Renewable Energy, Sustainability and the Environment

Reference33 articles.

1. [1] Bushuyev V., Voropai N., Masterpanov A., Shafranik Yu. Energeticheskaja bezopasnostj Rossii (Energy security of Russia.). Moscow: 1998. (in Russian)

2. [2] Pyatkova N., Senderov S., Cheltsov M. Application of a two-level technology for research in solving energy security problems. Izvestiya RAN. Power Engineering 2000:6:31–39.

3. [3] Smirnova E., Senderov S. Energy security problems at the regional level: situation analysis and main trends. E3S Web Conferences 2019:77:01009 https://doi.org/10.1051/e3sconf/2019770100910.1051/e3sconf/20197701009

4. [4] Voropai N. I. Sistemnie issledovanija v energetike. Retrospektiva nauchnih napravlenij (Energy Systems Institute schools of thought in hindsight.). Novosibirsk: Nauka, 2010. (in Russian)

5. [5] Belyaev L. S., et al. Metodi issledovanija i upravlenija sistemami energetiki (Methods of analysis and control of energy systems.). Novosibirsk: Nauka, 1987. (in Russian)

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1. Modeling of thermal power plants in the study of reliability of power supply and energy security;Power engineering: research, equipment, technology;2023-06-07

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