Efficiency optimisation of advanced gas turbine recuperative-cycles

被引:3
作者
Bontempo, R. [1 ]
Manna, M. [1 ]
机构
[1] Univ Napoli Federico II, Dipartimento Ingn Ind, Naples, Italy
关键词
Gas turbine; intercooling; reheating; efficiency optimisation; recuperative-cycles; OPTIMUM PERFORMANCE; POWER;
D O I
10.1177/0957650919875909
中图分类号
O414.1 [热力学];
学科分类号
摘要
The paper presents a theoretical analysis of three advanced gas turbine recuperative-cycles, that is, the intercooled, the reheat and the intercooled and reheat cycles. The internal irreversibilities, which characterise the compression and expansion processes, are taken into account through the polytropic efficiencies of the compressors and turbines. As customary in simplified analytical approaches, the study is carried out for an uncooled closed-circuit gas turbine without pressure losses in the heat exchangers and using a calorically perfect gas as working fluid. Although the accurate performance prediction of a real-gas turbine is prevented by these simplifying assumptions, this analysis provides a fast and simple approach which can be used to theoretically explain the main features of the three advanced cycles and to compare them highlighting pros and contra. The effect of the heat recuperation is investigated comparing the thermal efficiency of a given cycle type with those of two reference cycles, namely, the non-recuperative version of the analysed cycle and the simple cycle. As a result, the ranges of the intermediate pressure ratios returning a benefit in the thermal efficiency in comparison with the two reference cycles have been obtained for the first time. Finally, for the sole intercooled and reheat recuperative-cycle, a novel analytical expression for the intermediate pressure ratios yielding the maximum thermal efficiency is also given.
引用
收藏
页码:817 / 835
页数:19
相关论文
共 50 条
  • [21] Energy-recuperative coal-integrated gasification/gas turbine power generation system
    Kuchonthara, Prapan
    Tsutsumi, Atsushi
    JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2006, 39 (05) : 545 - 552
  • [22] Performance analysis of partially recuperative gas turbine combined cycle under off-design conditions
    Liu, Taohong
    Zhang, Guoqiang
    Li, Yongyi
    Yang, Yongping
    ENERGY CONVERSION AND MANAGEMENT, 2018, 162 : 55 - 65
  • [23] Tri-objective optimization of two recuperative gas turbine-based CCHP systems and 4E analyses at optimal conditions
    Nondy, J.
    Gogoi, T. K.
    APPLIED ENERGY, 2022, 323
  • [24] Ecological optimisation of an irreversible-closed ICR gas turbine cycle
    Wang, Wenhua
    Chen, Lingen
    Sun, Fengrui
    INTERNATIONAL JOURNAL OF EXERGY, 2011, 9 (01) : 66 - 79
  • [25] 4E analyses of an intercooled-recuperative gas turbine-based CCHP system: Parametric analysis and tri-objective optimization
    Nondy, J.
    Gogoi, T. K.
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2023, 39
  • [26] A novel dual-stage intercooled and recuperative gas turbine system integrated with transcritical organic Rankine cycle: System modeling, energy and exergy analyses
    Han, Xiaoqu
    Dai, Yanbing
    Guo, Xuanhua
    Braimakis, Konstantinos
    Karellas, Sotirios
    Yan, Junjie
    ENERGY, 2024, 305
  • [27] Evaluation of Using Gas Turbine to Increase Efficiency of the Organic Rankine Cycle (ORC)
    Matuszewska, Dominika
    Olczak, Piotr
    ENERGIES, 2020, 13 (06)
  • [28] Thermodynamic efficiency of water use in a gas turbine cycle
    Ivanov, P. P.
    HIGH TEMPERATURE, 2013, 51 (04) : 532 - 536
  • [29] Part-load analysis of gas turbine & ORC combined cycles
    Munoz de Escalona, J. M.
    Sanchez, D.
    Chacartegui, R.
    Sanchez, T.
    APPLIED THERMAL ENGINEERING, 2012, 36 : 63 - 72
  • [30] ULTRA HIGH EFFICIENT POWER GENERATION WITH SOFC-GAS TURBINE SYSTEMS: DIFFERENT OPTIONS FOR 80%+ EFFICIENCY POWER CYCLES
    Alpegiani, Francesco
    Zelaschi, Andrea
    Cammarata, Alberto
    Chiesa, Paolo
    Campanari, Stefano
    Martelli, Emanuele
    PROCEEDINGS OF ASME TURBO EXPO 2023: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2023, VOL 5, 2023,