NUMERICAL INVESTIGATION OF FLAME PROPAGATION IN FUEL DROPLET ARRAYS

被引:22
|
作者
Haruki, Yu [1 ]
Pillai, Abhishek L. [1 ]
Kitano, Tomoaki [1 ]
Kurose, Ryoichi [1 ]
机构
[1] Kyoto Univ, Inst Fluid Sci & Engn, Dept Mech Engn & Sci & Adv Res, Nishikyo Ku, Kyoto 6158540, Japan
关键词
flame propagation; fuel droplet arrays; numerical simulation; level-set; PSI-cell; LARGE-EDDY SIMULATIONS; COMBUSTION INSTABILITIES; MICROGRAVITY EXPERIMENTS; SOOT FORMATION; HIGH-PRESSURE; SPRAY FLAMES; AMBIENT-PRESSURE; GAS; EVAPORATION; SPREAD;
D O I
10.1615/AtomizSpr.2018022342
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Transient flame propagation in fuel droplet arrays is investigated using three-dimensional numerical analyses with two different computational approaches. Flame propagation characteristics of fuel droplet arrays are first examined using a relatively new, but computationally expensive, method for two-phase reacting flow numerical simulations called the Level-Set approach, capable of tracking the gas-liquid interface movement. Next, the validity and effectiveness of the computationally cheaper Particle-Source-In-Cell (PSI-Cell) approach are verified for the prediction of flame propagation characteristics of fuel droplet arrays. The fuel constituting the droplets is n-decane (n-C10H22). Reaction mechanism for n-decane combustion is described using a two-step overall reaction model, based on a widely used reduced two-step chemical scheme originally developed for kerosene flames. The reaction model is validated against a detailed reaction mechanism for n-decane combustion. Results of the investigations using Level-Set approach reproduce the three different modes of flame propagation in fuel droplet arrays as observed in experiment, and show that the flame propagation speed is accurately predicted for each mode. Radiative heat transfer has an appreciable influence on the flame propagation speed. Furthermore, the application of a Gaussian function filter to the calculation of source terms accounting for the liquid phase-gas phase interactions, in the computations using PSI-Cell approach is adopted. Using this technique, the three flame propagation modes are reproduced for the fuel droplet arrays, and their corresponding flame propagation speeds are also accurately predicted.
引用
收藏
页码:357 / 388
页数:32
相关论文
共 50 条
  • [41] EXPERIMENTAL INVESTIGATION OF DROPLET EVAPORATION OF WATER WITH GROUND ADMIXTURES WHILE MOTION IN A FLAME OF LIQUID FUEL
    Dmitriyenko, Margarita A.
    Nyashina, Galina S.
    Zhdanova, Alena O.
    Vysokomornaya, Olga V.
    THERMOPHYSICAL BASIS OF ENERGY TECHNOLOGIES 2015, 2016, 110
  • [42] Numerical investigation of flame propagation in pulse detonation engine with variation of obstacle clearance
    Noor Alam
    K. K. Sharma
    K. M. Pandey
    Journal of Thermal Analysis and Calorimetry, 2020, 140 : 2485 - 2495
  • [43] NUMERICAL INVESTIGATION OF THE EFFECTS OF VOLUME FORCES ON FLAME PROPAGATION CHARACTERISTICS IN A ROTATING PIPE
    Gong, Zhen
    Li, Benchi
    Tang, Hao
    THERMAL SCIENCE, 2024, 28 (2C): : 1781 - 1793
  • [44] Numerical investigation of unsteady flame propagation assisted by low-temperature chemistry
    Meier, Rafael
    Zirwes, Thorsten
    Zhang, Feichi
    Bockhorn, Henning
    Oliveira, Amir A. M.
    FUEL, 2024, 364
  • [45] Numerical investigation of flame propagation in pulse detonation engine with variation of obstacle clearance
    Alam, Noor
    Sharma, K. K.
    Pandey, K. M.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2020, 140 (05) : 2485 - 2495
  • [46] Numerical Investigation of Edge Flame Propagation Behavior in an Igniting Turbulent Planar Jet
    Chakraborty, N.
    Hesse, H.
    Mastorakos, E.
    COMBUSTION SCIENCE AND TECHNOLOGY, 2010, 182 (11-12) : 1747 - 1781
  • [47] Flame propagation in aeronautical swirled multi-burners: Experimental and numerical investigation
    Barre, David
    Esclapez, Lucas
    Cordier, Matthieu
    Riber, Eleonore
    Cuenot, Benedicte
    Staffelbach, Gabriel
    Renou, Bruno
    Vandel, Alexis
    Gicquel, Laurent Y. M.
    Cabot, Gilles
    COMBUSTION AND FLAME, 2014, 161 (09) : 2387 - 2405
  • [48] Numerical investigation of detonation propagation through fuel-stratified layers
    Ryu, Je Ir
    Shi, Xian
    Chen, Jyh-Yuan
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2024, 40 (1-4)
  • [49] Flame-spread probability and local interactive effects in randomly arranged fuel-droplet arrays in microgravity
    Oyagi, Hiroshi
    Shigeno, Hisashi
    Milami, Masato
    Kojima, Naoya
    COMBUSTION AND FLAME, 2009, 156 (04) : 763 - 770
  • [50] FLAME FRONT STABILITY IN LIQUID FUEL DROPLET COMBUSTION
    MIESSE, CC
    INDUSTRIAL AND ENGINEERING CHEMISTRY, 1955, 47 (06): : 1181 - 1181