4.5 Article

Thermoeconomic Optimization of Steam Pressure of Heat Recovery Steam Generator in Combined Cycle Gas Turbine under Different Operation Strategies

期刊

ENERGIES
卷 14, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/en14164991

关键词

Combined Cycle Gas Turbine; different operation strategies; thermoeconomic optimization; steam parameters

资金

  1. National Science and Technology Major Project [2017-I-0002-0002]

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The optimization of the steam parameters in CCGT HRSGs is crucial for reducing power generation costs, with factors like GT load rate and the selection of pressure levels playing a significant role in achieving the optimum cost.
The optimization of the steam parameters of the heat recovery steam generators (HRSG) of Combined Cycle Gas Turbines (CCGT) has become one of the important means to reduce the power generation cost of combined cycle units. Based on the structural theory of thermoeconomics, a thermoeconomic optimization model for a triple pressure reheat HRSG is established. Taking the minimization of the power generation cost of the combined cycle system as the optimization objective, an optimization algorithm based on three factors and six levels of orthogonal experimental samples to determine the optimal solution for the high, intermediate and low pressure steam pressures under different gas turbine (GT) operation strategies. The variation law and influencing factors of the system power generation cost with the steam pressure level under all operation strategies are analyzed. The research results show that the system power generation cost decreases as the GT load rate increases, T-4 plays a dominant role in the selection of the optimal pressure level for high pressure (HP) steam and, in order to obtain the optimum power generation cost, the IGV T3-650-F mode should be adopted to keep the T-4 at a high level under different GT load rates.

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