Integration of compressed air energy storage and gas turbine to improve the ramp rate

Citations

WEB OF SCIENCE

34
Citations

SCOPUS

42

초록

Manufacturers are trying to increase ramp rates to improve the operational flexibility of gas turbines. However, higher ramp rates lead to rapid variation in the combustion gas temperature and shorten the life of the turbine. To increase the rate without reducing the life, this study considers the use of a compressed air energy storage (CAES). Injecting pressurized air that is stored in CAES into the combustor of a gas turbine increases the power output of the gas turbine without increasing fuel supply. Therefore, the ramp rate of the turbine can be increased while suppressing the temperature change of the combustion gas. The injection schedule was optimized through a dynamic simulation to increase the ramp rate. A genetic algorithm was used in the optimization of the schedule. The optimized schedule turned out to be a simple form consisting of a linear increase and decrease in the injection flow rate. Furthermore, despite the increased ramp rate, the fluctuation of turbine inlet temperature could be maintained under a safe level due to the optimized compressed air injection.

키워드

Gas turbineRamp rateCompressed air energy storageAir injectionDynamic simulationDYNAMIC SIMULATIONPOWER-SYSTEMSOLARPERFORMANCEFEASIBILITYDESIGNPLANTCCHPOPTIMIZATIONOPERATION
제목
Integration of compressed air energy storage and gas turbine to improve the ramp rate
저자
Kim, Min JaeKim, Tong Seop
DOI
10.1016/j.apenergy.2019.04.046
발행일
2019-08-01
유형
Article
저널명
Applied Energy
247
페이지
363 ~ 373