Combustion simulation and emission control in natural gas fuelled combustor of gas turbine

被引:17
|
作者
Singh, Omendra Kumar [1 ]
机构
[1] Indira Gandhi Delhi Tech Univ Women, Dept Mech & Automat Engn, Delhi 110006, India
关键词
Adiabatic flame temperature; Gas turbine; Natural gas; Combustion; Air-fuel ratio; NOx; POWER-GENERATION; EXERGY; CYCLE;
D O I
10.1007/s10973-016-5472-0
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper presents a systematic method for the estimation of theoretical value of temperature produced in the gas turbine combustor through MATLAB simulation. The fuel used is natural gas. The assumption of adiabatic combustion has been used for the simplicity of the analysis. For getting accurate results, the combustion process has been analyzed considering the variation of specific heat of gases with temperature. The theoretically calculated temperature has been compared with the actual temperature produced in an actual gas turbine combustor to validate the thermodynamic model. One of the most hazardous pollutants from a gas turbine is nitrogen oxides (NOx) whose formation takes place due to dissociation of nitrogen at high temperature and its subsequent reaction with oxygen. To avoid NOx formation, the flame temperature has been lowered to 1355 K by increasing the amount of excess combustion air. Therefore, the effect of excess air on the combustion temperature and power output has been investigated in this study. The theoretical power output has also been compared with the actual output. The method described in this paper may prove to be useful not only to the designers of gas turbine but also to the researchers analyzing other types of combustion systems.
引用
下载
收藏
页码:949 / 957
页数:9
相关论文
共 50 条
  • [31] Ignition and combustion characteristics of the gas turbine slinger combustor
    Choi, Seongman
    Lee, Donghun
    Park, Jeongbae
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2008, 22 (03) : 538 - 544
  • [32] Modelling of combustion performances and emission characteristics of coal gases in a model gas turbine combustor
    Ilbas, Mustafa
    Karyeyen, Serhat
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2014, 38 (09) : 1171 - 1180
  • [33] Gas turbine primary combustor error analysis of combustion efficiency and exhaust emission using gas analysis method
    Li Y.-J.
    Wang M.-R.
    Han B.
    Ma Z.
    Jia L.-Y.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2017, 32 (05): : 1051 - 1057
  • [34] PREDICTION OF COMBUSTION PERFORMANCE OF BIODIESEL IN GAS TURBINE COMBUSTOR
    Yadav, Priyanka
    Yadav, Nagendra P.
    PROCEEDINGS OF ASME 2021 FLUIDS ENGINEERING DIVISION SUMMER MEETING (FEDSM2021), VOL 1, 2021,
  • [35] EXPERIMENTAL STUDY OF COMBUSTION ON A MICRO GAS TURBINE COMBUSTOR
    Wang Feng-Shan
    Kong Wen-Jun
    Wang Bao-Rui
    PROCEEDINGS OF THE ASME TURBO EXPO 2008, VOL 3, PTS A AND B, 2008, : 749 - 755
  • [36] Open-loop control of combustion instabilities in a model gas turbine combustor
    Stone, C
    Menon, S
    JOURNAL OF TURBULENCE, 2003, 4
  • [37] Open-loop control of combustion instabilities in a model gas turbine combustor
    Stone, C
    Menon, S
    ENGINEERING TURBULENCE MODELLING AND EXPERIMENTS 5, 2002, : 895 - 905
  • [38] Active control of combustion oscillations in a lean premixed gas-turbine combustor
    Aeroengine Technology Centre, Japan Aerospace Exploration Agency, 7-44-1 Jindaiji-Higashi, Chofu, Tokyo 182-8522, Japan
    不详
    不详
    不详
    不详
    Int J Veh Des, 2007, 1-4 (306-321):
  • [39] Experiment on combustion characteristics of micro gas turbine combustor
    Liu A.
    Li Y.
    Yang Y.
    Zeng W.
    Liu K.
    1600, BUAA Press (35): : 1335 - 1344
  • [40] Active control of combustion oscillations in a lean premixed gas-turbine combustor
    Tachibana, Shigeru
    Zimmer, Laurent
    Kurosawa, Yoji
    Suzuki, Kazuo
    Sato, Hiroyuki
    Hayashi, A. Koichi
    Nishidome, Chiaki
    Kajiwara, Itsuro
    INTERNATIONAL JOURNAL OF VEHICLE DESIGN, 2007, 43 (1-4) : 306 - 321