COMPUTATIONAL STUDY OF FUEL DILUTION EFFECT ON THE SOOT FORMATION IN METHANE-AIR LAMINAR CONFINED DIFFUSION FLAME

被引:0
|
作者
Chowdhuri, Achin Kumar [1 ]
Mitra, Arindam [2 ]
Chakrabarti, Somnath [1 ]
Mandal, Bijan Kumar [1 ]
机构
[1] Bengal Engn & Sci Univ, Dept Mech Engn, Howrah 711103, W Bengal, India
[2] Budge Budge Inst Technol Nischintapur, Dept Mech Engn, Kolkata 700137, W Bengal, India
来源
PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2013, VOL 8A | 2014年
关键词
methane; laminar diffusion flame; nitrogen dilution; finite difference; soot formation; COMBUSTION; COFLOW;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
Although diffusion flame is free from many problems associated with premixed flame, soot formation is a major problem in diffusion flame. The techniques of dilution of fuel or air with inert gases such as nitrogen and argon are used to decrease soot level in the flame. In this work, a CFD code has been developed to predict the flame height, soot volume fraction and soot number density in an axisymmetric laminar confined methane-air diffusion flame after diluting the fuel with nitrogen. The temperatures of the air and fuel at inlet are taken as 300K. Mass flow rate of the fuel stream is considered as 3.71x10(-6) kg/s and mass flow rate of the air is taken as 2.2104x10(-6) kg/s. The total mass flow rate through the central jet (fuel jet) is, however, kept constant. The radiation effect is also included through an optically thin radiation model. An explicit finite difference technique has been adopted for the numerical solution of reacting flow and two equations soot model with variable thermodynamic and transport properties. The prediction shows that flame height decreases with the addition of nitrogen to the fuel. Temperature of the flame is considerably reduced in the given computational domain. Both soot volume fraction and soot number density decrease with dilution by adding nitrogen in the fuel jet. The soot formation at different nitrogen dilution level of 0%, 10%, 20%, 30%, 40% and 50% are plotted and the soot get considerably reduced as the concentration of nitrogen is increased in the fuel stream.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Effects of flame lift-off height on soot processes in strongly forced methane-air laminar diffusion flames
    Barve, Vinayak V.
    Ezekoye, Ofodike A.
    Clemens, Noel T.
    PROCEEDINGS OF THE ASME/JSME THERMAL ENGINEERING SUMMER HEAT TRANSFER CONFERENCE 2007, VOL 3, 2007, : 643 - 651
  • [22] An experimental study of the fuel dilution effect on the propagation of methane-air tribrachial flames
    Il Seo, Jeong
    Kim, Nam Il
    Shin, Hyun Dong
    COMBUSTION AND FLAME, 2008, 153 (03) : 355 - 366
  • [23] Modeling soot formation in turbulent methane-air jet diffusion flames
    Kronenburg, A
    Bilger, RW
    Kent, JH
    COMBUSTION AND FLAME, 2000, 121 (1-2) : 24 - 40
  • [24] A Computational Study of Soot Formation in Methane Air Co-Flow Diffusion Flame Under Microgravity Conditions
    Arup Jyoti Bhowal
    Bijan Kumar Mandal
    Microgravity Science and Technology, 2016, 28 : 395 - 412
  • [25] NUMERICAL STUDY OF THE EFFECTS OF PRESSURE AND GRAVITATIONAL ACCELERATION ON SOOT FORMATION IN LAMINAR AXISYMMETRIC COFLOW METHANE/AIR DIFFUSION FLAME
    Liu, Fengshan
    Smallwood, Gregory J.
    Kong, Wenjun
    HT2009: PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER, VOL 3, 2009, : 89 - 95
  • [26] A Computational Study of Soot Formation in Methane Air Co-Flow Diffusion Flame Under Microgravity Conditions
    Bhowal, Arup Jyoti
    Mandal, Bijan Kumar
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2016, 28 (04) : 395 - 412
  • [27] CHEMICAL ASPECTS OF SOOT PARTICLES OXIDATION IN A LAMINAR METHANE - AIR DIFFUSION FLAME
    GARO, A
    PRADO, G
    LAHAYE, J
    COMBUSTION AND FLAME, 1990, 79 (3-4) : 226 - 233
  • [28] A computational and experimental study of coflow laminar methane/air diffusion flames: Effects of fuel dilution, inlet velocity, and gravity
    Cao, S.
    Ma, B.
    Bennett, B. A. V.
    Giassi, D.
    Stocker, D. P.
    Takahashi, F.
    Long, M. B.
    Smooke, M. D.
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2015, 35 : 897 - 903
  • [29] Soot production rate calculations at elevated pressure in a methane-air jet diffusion flame
    Zhang, Z
    Ezekoye, OA
    COMBUSTION SCIENCE AND TECHNOLOGY, 1998, 137 (1-6) : 323 - 346
  • [30] On the influence of singlet oxygen molecules on the NOx formation in methane-air laminar flame
    Starik, A. M.
    Kuleshov, P. S.
    Sharipov, A. S.
    Strelnikova, V. A.
    Titova, N. S.
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2013, 34 : 3277 - 3285