Inverted Brayton cycle for improving the performance of carbon-free gas turbine combined cycle

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초록

Hydrogen and ammonia are attracting increasing attention as carbon-free fuels to replace fossil fuels in power generation. However, when used in gas turbines under constrained operation of an existing core engine, fuel conversion can alter exhaust-gas characteristics and reduce gas-turbine combined-cycle (GTCC) performance. This paper proposes a 20 MW-class GTCC integrated with an Inverted Brayton Cycle (IBC) to partially compensate for the performance loss caused by carbon-free fuel conversion and enhance total power output. The IBC recovers additional power from the final low-temperature exhaust gas downstream of the heat-recovery steam generator through sub-atmospheric expansion, cooling, H2O separation, and recompression. This makes IBC integration particularly advantageous for H2-and NH3-fueled GTCCs because their H2O-rich exhaust gases increase the effective heat capacity and provide greater power-recovery potential than conventional NG exhaust. Compared with a conventional natural-gas GTCC, the H2-and NH3-fueled GTCCs without IBC showed power reductions of 456 kW (2.0%) and 1241 kW (5.5%), respectively. After IBC integration, they recovered 151 kW and 239 kW, reducing the power deficits relative to the NG-GTCC case to 1.4% and 4.4%, respectively. Compared with the corresponding GTCC cases without IBC, the efficiencies improved by 0.34 and 0.55 percentage points, respectively.

키워드

Inverted Brayton CycleGas turbine combined cycleHydrogenAmmoniaCarbon free energyFuel conversion
제목
Inverted Brayton cycle for improving the performance of carbon-free gas turbine combined cycle
저자
Pyo, Min JungJeong, Ji HunCho, Eun-SeongKim, Tong Seop
DOI
10.1016/j.csite.2026.108259
발행일
2026-08
유형
Article
저널명
Case Studies in Thermal Engineering
84