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Gases and Fluids
The thermodynamic Brayton cycle with a reversible chemical reaction
K. O. Sabdenov Eurasian National University named after L.N. Gumilyov, Nur-Sultan
Abstract:
A Brayton cycle is considered in which the working substance is a chemically reacting gas with molar weight and heat capacity changing as a result of a reversible chemical reaction. By way of example, the reaction N$_{2}$+3H$_{2}\leftrightarrow$ 2NH$_{3}$ is considered. For a constant heat supply, the cycle is characterized by the lower ($T_{low}$) and upper ($T_{top}$) temperature boundaries of existence; between these boundaries, the efficiency can change from 0 to 1. Such peculiar properties are manifested because of two factors: reversibility of the chemical reaction and the special role of the chemical work in the conversion of heat into mechanical work, which minimizes the heat loss to the surrounding space in a closed thermodynamic cycle.
Keywords:
reversible chemical reaction, chemical work, thermodynamic cycle, efficiency.
Received: 17.01.2021 Revised: 11.04.2021 Accepted: 17.04.2021
Citation:
K. O. Sabdenov, “The thermodynamic Brayton cycle with a reversible chemical reaction”, Zhurnal Tekhnicheskoi Fiziki, 91:9 (2021), 1323–1330; Tech. Phys., 66:12 (2021), 1275–1283
Linking options:
https://www.mathnet.ru/eng/jtf4934 https://www.mathnet.ru/eng/jtf/v91/i9/p1323
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Statistics & downloads: |
Abstract page: | 70 | Full-text PDF : | 28 |
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