Evaluation of the influence of various factors on the productivity in low-temperature power plants
- Authors: Tremkina O.V.1, Blagin E.V.1, Panshin R.A.1, Shikhalev V.I.1
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Affiliations:
- Samara National Research University
- Issue: Vol 23, No 4 (2024)
- Pages: 180-190
- Section: MECHANICAL ENGINEERING
- URL: https://journals.ssau.ru/vestnik/article/view/28077
- DOI: https://doi.org/10.18287/2541-7533-2024-23-4-180-190
- ID: 28077
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Abstract
The use of natural gas as a fuel is a current direction of the development of modern power plants. The proposed methodology evaluates the influence of various factors on the operating efficiency of low-temperature power plants using the example of the influence of heat flows of heat exchangers; a comparative analysis of the operating parameters and characteristics of heat vaporizer exchangers in the systems of storage of liquefied natural gas and power plants using low-potential energy of a cryogenic product was also carried out. An analysis of the array of data obtained from various articles is given, describing the state of complexes that use low-potential heat of the cryogenic product. A method for assessing the influence of a cryogenic product regasification system on the overall efficiency of power plants and systems is also described.
About the authors
O. V. Tremkina
Samara National Research University
Author for correspondence.
Email: tereshchenko.ov@ssau.ru
ORCID iD: 0000-0001-9068-3340
Candidate of Science (Engineering), Associate Professor of the Department of Heat Engineering and Heat Engines
Russian FederationE. V. Blagin
Samara National Research University
Email: blagin.ev@ssau.ru
ORCID iD: 0000-0002-8921-4122
Candidate of Science (Engineering), Associate Professor of the Department of Heat Engineering and Heat Engines, Researcher at the Scientific and Educational Center for Gas Dynamic Research
Russian FederationR. A. Panshin
Samara National Research University
Email: blagin.ev@ssau.ru
ORCID iD: 0000-0002-1076-283X
Junior Researcher at the Scientific and Educational Center for Gas Dynamic Research
Russian FederationV. I. Shikhalev
Samara National Research University
Email: shikhalev.vi@ssau.ru
Engineer at the Scientific and Educational Center for Gas Dynamic Research
Russian FederationReferences
- Barmin I.V., Kunis I.D. Szhizhennyy prirodnyy gaz vchera, segodnya, zavtra [Liquefied natural gas yesterday, today, tomorrow]. Moscow: Bauman Moscow State Technical University Publ., 2009. 256 p.
- Uglanov D.A., Manakova O.A., Tremkina O.V., Sarmin D.V. LNG power complex integrated with air separation unit and low-temperature power plant. Proceedings of the 3rd International Conference on Electrical Engineering and Control Technologies, CEECT 2021 (December, 17, 2021, Virtual, Online). 2021. P. 187-190. doi: 10.1109/CEECT53198.2021.9672328
- Pan J., Li M., Zhu M., Li R., Tang L., Bai J. Energy, exergy and economic analysis of different integrated systems for power generation using LNG cold energy and geothermal energy. Renewable Energy. 2023. V. 202. P. 1054-1070. doi: 10.1016/j.renene.2022.12.021
- Zysin L.V. Parogazovye i gazoturbinnye teplovye elektrostantsii: ucheb. posobie [Steam and gas and gas turbine thermal power plants: textbook]. SPb: Polytechnic University Publ., 2010. 377 p.
- Zlobin V.G., Verkholantsev A.A. Gazoturbinnye ustanovki. Ch. 1. Teplovye skhemy. Termodinamicheskie tsikly: ucheb. posobie [Gas turbine units. Part 1. Heat balance diagrams. Thermodynamic cycles: textbook]. SPb: Saint Petersburg State University of Industrial Technologies and Design Publ., 2020. 114 p.
- Blagin E.V., Manakova O.A., Tremkina O.V., Uglanov D.A. Cold energy power plants using cold energy LNG energy (Review of publications on low-temperature power plants in order to identify circuit solutions, composition, and characteristics). Samara National Research University. Samara, 2023. 485 p. Dep. VINITI RAN 10.04.2023. No. 10-B2023. doi: 10.36535/0202-6120-2023-02-10-2023
- Arkharov I.A., Dovgyallo A.I., Uglanov D.A., Tremkina O.V. Assessing the efficiency of circuit solutions for LNG-fueled GTP-based cogeneration plants. Chemical and Petroleum Engineering. 2023. V. 59, Iss. 1-2. P. 47-58. doi: 10.1007/s10556-023-01207-3
- Tremkina O.V., Uglanov D.A., Karnaukh V.V. Eksergeticheskiy metod otsenki effektivnosti nizkotemperaturnykh energeticheskikh ustanovok, ispol'zuyushchikh nizkopotentsial'noe teplo krioprodukta. Sbornik nauchnykh trudov «Energoeffektivnye Inzhenernye Sistemy»». SPb: ITMO University Publ., 2024. P. 139-144. (In Russ.)
- Novikov I.I. Efficiency of an atomic power generating installation. The Soviet Journal of Atomic Energy. 1957. V. 3, Iss. 11. P. 1269-1272. doi: 10.1007/BF01507240
- Curzon F.L., Ahlborn B. Efficiency of a canot engine at maximum power output. American Journal of Physics. 1975. V. 43, Iss. 1. P. 22-24. doi: 10.1119/1.10023
- Uglanov D.A. Energoeffektivnye sistemy preobrazovaniya nizkopotentsial'noy energii krioproduktov. Dis. … dokt. tekhn. nauk [Energy-efficient of cold energy conversion systems for cryoproducts. Doc. eng. sci. diss.]. Saint Petersburg, 2022. 689 p.
- Tremkina O.V. Sovershenstvovanie metoda opredeleniya kharakteristik nizkotemperaturnykh energoustanovok letatel'nykh apparatov. Dis. … kand. tekhn. nauk [Improving the method for determining the characteristics of low-temperature aircraft power plants. Thesis for a Candidate Degree (Engineering)]. Samara, 2023. 178 p.
- Manakova O.A., Uglanov D.A., Blagin E.V., Panshin R.A. Tremkina O.V. Evaluation of the influence of various factors on productivity in low-temperature power plants. Proceedings of the International Scientific and Practical Conference «Prospects for the Development of Engine Building» (June, 23-25, 2021, Samara). V. 2. Samara: Samara University Publ., 2021. P. 213-214. (In Russ.)
- Krey G. Utilization of the cold by LNG vaporization with closed-cycle gas turbine. Journal of Engineering for Power. 1980. V. 102, Iss. 2. P. 225-230. doi: 10.1115/1.3230241
- Weber D. Recovery of energy from LNG vaporization. Proceedings of the International Seminar «New Ways to Save Energy» (October, 23-25, 1979, Brussel). 1980. P. 755-765. doi: 10.1007/978-94-009-8990-0_81
- Najjar Y.S.H. A cryogenic gas turbine engine using hydrogen for waste heat recovery and regasification of LNG. International Journal of Hydrogen Energy. 1991. V. 16, Iss. 2. P. 129-134. doi: 10.1016/0360-3199(91)90039-l
- Bisio G. Diesel engine and closed cycle gas turbine with the exploitation of lng physical exergy. Intersociety Energy Conversion Engineering Conference (August, 07-12, 1994, Monterey, CA, U.S.A.). 1994. P. 944-950. doi: 10.2514/6.1994-3986
- Wong W. LNG power recovery. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy. 1994. V. 208, Iss. 1. P. 3-12. doi: 10.1243/PIME_PROC_1994_208_003_02
- Chiesa P. LNG receiving terminal associated with gas cycle power plants. Proceedings of the ASME Turbo Expo (June, 2-5, 1997, Orlando, Florida, USA). 1997. V. 2. doi: 10.1115/97-GT-441