DYNAMIC MODELLING AND SIMULATION OF A 100 KW MICRO GAS TURBINE RUNNING WITH BLENDED METHANE/HYDROGEN FUEL

被引:0
|
作者
Banihabib, Reyhaneh [1 ]
Assadi, Mohsen [1 ]
机构
[1] Univ Stavanger, Fac Sci & Technol, Stavanger, Norway
关键词
micro gas turbine; dynamic modelling; simulation; controller system; transient manoeuvres; blended fuels; hydrogen; COMBINED HEAT; MICROTURBINE; PERFORMANCE; SYSTEM; CODE;
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The current shift from centralized to decentralized power generation with renewables as prime movers necessitates the integration of reliable small-scale power supply units to compensate for the intermittency of renewables. Micro gas turbines' (MGTs) characteristics such as high reliability and low maintenance, along with flexible operation and quick load-following capabilities have made them a dependable source for the modern power generation industry and for households. MGTs are small-scale gas turbine units with a power range lower than 500 kW that can operate with low-calorific fuels such as biofuels and syngas as well as conventional fossil fuels and zero-carbon fuels. The utilization of MGTs in innovative cycle layouts or varying types of feeding fuels is increasing, which requires the evaluation of system dynamics to ensure the safe operation of the engine and its components. Moreover, the role of MGTs as a backup for the intermittent renewable inputs means that they operate under more transient conditions rather than constant power production mode. Therefore, a reliable dynamic model of an MGT is required to investigate the dynamic response of the engine under various transient modes to ensure safe operation. Moreover, utilizing a dynamic model is vital in the designing process of MGT-based cycles in order to evaluate the behaviour of coupled components in off-design conditions and to optimize the controller parameters. To that end, developing a dynamic model of the MGT cycle that is accurate enough to predict the dynamic response of the engine and its components and fast enough to be utilized in design iterations is necessary. In this paper, a high-fidelity model for real-time simulation of an MGT, based on a lumped and nonlinear representation of gas turbine components is presented. The model for a recuperated T100 MGT was constructed in Simscape, the object-oriented environment of MATLAB for modelling physical systems. MGT components were modelled as lumped volumes with dynamic equations of mass, momentum, and energy balance along with component-characteristic maps describing the evolution of the flow passing through them. Results from simulations were validated by experimental data collected from a real engine operating under different load conditions. Experimental tests and numerical simulations were conducted for pure methane as well as for blended methane/hydrogen as feeding fuels.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] TOWARDS LOW NOX EMISSIONS PERFORMANCE OF A 65KW RECUPERATED GAS TURBINE OPERATED ON 100% HYDROGEN
    Villatoro, Walther
    Slope, John
    McDonell, Vincent
    Hu, Ray
    Steele, Robert
    PROCEEDINGS OF ASME TURBO EXPO 2024: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2024, VOL 3B, 2024,
  • [32] Modelling of the gas-turbine colorless distributed combustion: An application to hydrogen enriched - kerosene fuel
    Ilbas, Mustafa
    Kumuk, Osman
    Karyeyen, Serhat
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (24) : 12354 - 12364
  • [33] Oxidation mechanism of methane fuel blended with dimethyl ether/ hydrogen/ammonia via ReaxFF molecular dynamics simulation
    Song, Liang
    Xu, Chun-Chen
    Ye, Jing
    Zhang, Yong
    Hou, Fang-Chao
    Chen, Bo-Cong
    Su, Hao-Long
    Sun, Jing
    FUEL, 2025, 381
  • [34] AERODYNAMIC OPTIMIZATION OF THE RADIAL INFLOW TURBINE FOR A 100KW-CLASS MICRO GAS TURBINE BASED ON METAMODEL-SEMI-ASSISTED METHOD
    Shao, Shuai
    Deng, Qinghua
    Feng, Zhenping
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2013, VOL 6B, 2013,
  • [35] Dynamic simulation of a pressurized 220 kW solid oxide fuel-cell-gas-turbine hybrid system: Modeled performance compared to measured results
    Roberts, R. A.
    Brouwer, J.
    JOURNAL OF FUEL CELL SCIENCE AND TECHNOLOGY, 2006, 3 (01): : 18 - 25
  • [36] Influence of air distribution on combustion characteristics of a micro gas turbine fuelled by hydrogen-doped methane
    Lu, Jin
    Fu, Zaiguo
    Liu, Jiang
    Pan, Weiguo
    ENERGY REPORTS, 2022, 8 : 207 - 216
  • [37] Experiment and dynamic simulation of micro gas turbine combined with concentrated solar power system
    Shuai, Wei
    Zhang, Tian
    Lv, Hongkun
    Ying, Haotian
    Wang, Keqin
    Xu, Haoran
    Chen, Dong
    Zhu, Peiwang
    Xiao, Gang
    RENEWABLE ENERGY, 2024, 237
  • [38] PERFORMANCE SIMULATION OF A HYBRID MICRO GAS TURBINE FUEL CELL SYSTEM BASED ON EXISTING COMPONENTS
    Bakalis, D. P.
    Stamatis, A. G.
    PROCEEDINGS OF THE ASME TURBO EXPO 2011, VOL 4, 2012, : 171 - 179
  • [39] Dynamic characteristics and fast load following of 5-kW class tubular solid oxide fuel cell/micro-gas turbine hybrid systems
    So-ryeok, Oh
    Jing, Sun
    Herb, Dobbs
    Joel, King
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2013, 37 (10) : 1242 - 1255
  • [40] Modelling and Simulation of a Hybrid Solid Oxide Fuel Cell Coupled with a Gas Turbine Power Plant
    Amati, Valentina
    Sciubba, Enrico
    Toro, Claudia
    Andreassi, Luca
    INTERNATIONAL JOURNAL OF THERMODYNAMICS, 2009, 12 (03) : 131 - 139