Flow and thermal structure of burner-wake stabilized elliptic jet flames in a cross-flow

被引:0
|
作者
Gollahalli, S. R. [1 ]
机构
[1] Univ Oklahoma, Sch Aerosp & Mech Engn, Combust & Flame Dynam Lab, Norman, OK 73019 USA
关键词
elliptic; cross-flow; wake stabilized; flames;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study was conducted to delineate the coupling effects of the elliptic geometry of the burner and a crossflow on the combustion of gas jets. This paper presents the flow and thermal structure of burner-wake stabilized turbulent propane jet flames from circular (diameter=0.45 cm) and elliptic (major axis/minor axis=3) burners of equivalent exit area in a crossflow of air. The elliptic burner was oriented with its major axis or minor axis aligned with the crossflow. Experiments were conducted in a wind tunnel provided with optical and probe access. Flame structure data including temperature profiles and concentration profiles of CO2, O-2, CO, and NO were obtained in the single flame configuration (at jet to crossflow momentum flux ratio = 0.0067), where a planar recirculation zone exists completely stabilized in the wake of the burner tube. This study is complementary to our previous study with a two-zone structure flame at jet/crossflow momentum flux ratio of 0.11. Results show that in this flame configuration, the peak NO concentration in the circular burner is higher than that in the elliptic burner flames. Carbon monoxide concentration was approximately same in the flame with circular burner and the elliptic burner with its major axis aligned with cross-flow; the CO concentration in the elliptic flame with the minor axis of the burner aligned with cross-flow was slightly smaller.
引用
收藏
页码:625 / 630
页数:6
相关论文
共 50 条
  • [21] WAKE VORTICES IN JETS IN CROSS-FLOW
    Milanovic, Ivana
    Zaman, Khairul B. M. Q.
    Bencic, Tim
    PROCEEDINGS OF THE ASME/JSME/KSME JOINT FLUIDS ENGINEERING CONFERENCE 2011, VOL 1, PTS A-D, 2012, : 3813 - 3820
  • [22] Numerical study of a wake-stabilized propane flame in a cross-flow of air
    Aboje, Alechenu A.
    Hughes, Kevin J.
    Ingham, Derek B.
    Ma, Lin
    Williams, Alan
    Pourkashanian, Mohamed
    JOURNAL OF THE ENERGY INSTITUTE, 2017, 90 (01) : 145 - 158
  • [23] NEAR-WAKE STRUCTURE OF A CANTILEVERED CYLINDER IN A CROSS-FLOW
    ETZOLD, F
    FIEDLER, H
    ZEITSCHRIFT FUR FLUGWISSENSCHAFTEN, 1976, 24 (02): : 77 - 82
  • [24] Stratified jet flames in a heated (1390 K) air cross-flow with autoignition
    Micka, Daniel J.
    Driscoll, James F.
    COMBUSTION AND FLAME, 2012, 159 (03) : 1205 - 1214
  • [25] The effects of cross-flow fuel injection on the reacting jet in vitiated cross-flow
    Pinchak, Matthew D.
    Shaw, Vincent G.
    Gutmark, Ephraim J.
    COMBUSTION AND FLAME, 2019, 199 : 352 - 364
  • [26] LOCK-IN OF VORTICES IN THE WAKE OF AN ELEVATED ROUND TURBULENT JET IN A CROSS-FLOW
    EIFF, OS
    KAWALL, JG
    KEFFER, JF
    EXPERIMENTS IN FLUIDS, 1995, 19 (03) : 203 - 213
  • [27] Flow boiling in microchannel with synthetic jet in cross-flow
    Sourtiji, Ehsan
    Peles, Yoav
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2020, 147
  • [28] Numerical simulation of the flow of a hot jet in a cross-flow
    del Rio, D. Fuentes
    Kajishima, T.
    TURBULENCE, HEAT AND MASS TRANSFER 6, 2009, : 317 - 320
  • [29] The flow field structure of highly stabilized partially premixed flames in a concentric flow conical nozzle burner with coflow
    Elbaz, A. M.
    Zayed, M. F.
    Samy, M.
    Roberts, W. L.
    Mansour, M. S.
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2016, 73 : 2 - 9
  • [30] AXIS OF A CIRCULAR JET IN CROSS-FLOW
    RAJARATNAM, N
    GANGADHARIAH, T
    WATER AIR AND SOIL POLLUTION, 1981, 15 (03): : 317 - 321