NUMERICAL MODELLING OF SWIRL STABILISED LEAN-PREMIXED H2-CH4 FLAMES WITH THE ARTIFICIALLY THICKENED FLAME MODEL

被引:0
|
作者
Castellani, S. [1 ]
Nassini, P. C. [1 ]
Andreini, A. [1 ]
Meloni, R. [2 ]
Pucci, E. [2 ]
Valera-Medina, A. [3 ]
Morris, S. [3 ]
Goktepe, B. [3 ]
Mashruk, S. [3 ]
机构
[1] Univ Florence, Heat Transfer & Combust Grp, Via S Marta 3, I-50139 Florence, Italy
[2] Baker Hughes, Florence, Italy
[3] Cardiff Univ, Sch Engn, Cardiff CF24 3AA, Wales
关键词
NOX REDUCTION; COMBUSTION; SIMULATIONS; INCLUSION; DIFFUSION;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The lean premixed technology is a very convenient combustion strategy to progressively move from natural gas to high hydrogen content fuels in gas turbines limiting the pollutants emissions at the same time. The enabling process that will allow the combustor to manage a full H-2 operation requires relevant design modifications, and in this framework, the numerical modelling will be a pivotal tool that will support this transition. In this work, high-fidelity simulations of perfectly premixed swirl stabilized flames have been performed varying the H-2 content in the fuel from 0 to 100% to investigate the effect of the hydrogen addition on the methane flame. The artificially thickened flame model (ATFM) has been used to treat the turbulent chemistry interaction. The numerical results have been compared with the detailed experimental data performed at Cardiff University's Gas Turbine Research Centre. After the numerical model validation against experimental OH* chemiluminescence maps has been presented, a deep numerical investigation of the effect of the H-2 addition on the flame has been performed. In this way, the work aims to highlight the good prediction capability of the ATFM, and, at the same time, highlight the change in the different contributions that govern the flame reactivity moving from 100% CH4 to 100% H-2 in very lean conditions.
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页数:15
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