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Inverted Brayton cycle information


Inverted Brayton Cycle (IBC) (also known as Subatmospheric Brayton cycle) is another version of the conventional Brayton cycle but with a turbine positioned immediately in the inlet of the system.[1][2][3]

Inverted Brayton cycle
Figure 1. Inverted Brayton cycle basic scheme
(1–2) – heat addition; (2–3) – turbine expansion; (3–4) – cooling; (4–5) – compression; (5–6) – release to atmosphere
Inverted Brayton cycle
Figure 2. T-S diagram of inverted Brayton cycle
(1–2) – heat addition; (2–3) – turbine expansion; (3–4) – cooling; (4–5) – compression; (5–6) – release to atmosphere
  1. ^ Bianchi, M.; Montenegro, Galo; Peretto, A. (2002-07-01). "Inverted Brayton Cycle Employment for Low-Temperature Cogenerative Applications". Journal of Engineering for Gas Turbines and Power. 124 (3): 561–565. doi:10.1115/1.1447237. Retrieved 2019-11-14.
  2. ^ Kennedy, Ian; Chen, Zhihang; Ceen, Bob; Jones, Simon; Copeland, Colin D. (2019-03-01). "Experimental Investigation of an Inverted Brayton Cycle for Exhaust Gas Energy Recovery". Journal of Engineering for Gas Turbines and Power. 141 (3). U.S.: American Society of Mechanical Engineers. doi:10.1115/1.4041109.
  3. ^ Weber, Justin; Straub, Douglas (2010). "Inverted Brayton Cycle for use with Chemical Looping Combustion". 8th Annual International Energy Conversion Engineering Conference. American Institute of Aeronautics and Astronautics. doi:10.2514/6.2010-6606. ISBN 978-1-62410-156-4. S2CID 131554459.

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