Characteristics of micro-explosive dispersion of gel fuel particles ignited in a high-temperature air medium

被引:11
|
作者
Glushkov, D. O. [1 ]
Paushkina, K. K. [1 ]
Pleshko, A. O. [1 ]
Vysokomorny, V. S. [1 ]
机构
[1] Natl Res Tomsk Polytech Univ, Heat & Mass Transfer Simulat Lab, 30 Lenin Ave, Tomsk 634050, Russia
基金
俄罗斯科学基金会;
关键词
Gel fuel; Particle; Heated motionless air; Ignition and combustion; Micro-explosion; Dispersion characteristics; LASER-INDUCED FLUORESCENCE; BURNING RATE; COMBUSTION; DROPLET; WATER; DELAY; COAL; OIL; MICROEXPLOSION; HYPERGOLICITY;
D O I
10.1016/j.fuel.2021.123024
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 characteristics of processes developing during the ignition and combustion of single gel fuel particles with a mass of 10 mg in a high-temperature motionless air medium were investigated by means of a hardware and software system. The system featured a high-speed video camera, LED spotlights and a laptop with commercial and custom software. A group of fuel compositions was derived from oil-filled cryogels alone and with the addition of fine solid combustible components. Polyvinyl alcohol with 10 wt% in an aqueous solution was used as an organic polymer thickener. When exposed to rapid heating, fuel compositions (oil + aqueous solution of PVA + emulsifier; oil + coal dust + aqueous solution of PVA + emulsifier) were characterized by the micro-explosive dispersion of particles. The velocities of fine fragments after the micro-explosive dispersion of a fuel melt droplet were established when the air temperature was varied in the range of 700-1000 degrees C. The gas-vapor mixture temperature in the region of the fuel gas-phase combustion was determined using the original two-color pyrometry technique.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] EXPLOSIVE BREAKUP OF A WATER DROPLET WITH A NONTRANSPARENT SOLID INCLUSION HEATED IN A HIGH-TEMPERATURE GASEOUS MEDIUM
    Dmitrienko, Margarita A.
    Piskunov, Maxim V.
    Strizhak, Pavel A.
    Shcherbinina, Anastasia A.
    HEAT AND MASS TRANSFER IN THE THERMAL CONTROL SYSTEM OF TECHNICAL AND TECHNOLOGICAL ENERGY EQUIPMENT, 2015, 23
  • [32] A Study on the Integration of Micro-reformer and High-Temperature PEM Fuel Cell
    Su, Ay
    Liu, Ying-Chieh
    Lin, Wei-Chieh
    Cheng, Chih-Kai
    Hsieh, Chung-You
    HEAT TRANSFER-ASIAN RESEARCH, 2010, 39 (08): : 611 - 618
  • [33] Ejection characteristics of micropumps for motorcycle fuel atomizer in high-temperature environment
    Cheng, H. -P.
    Chien, C. P.
    APPLIED THERMAL ENGINEERING, 2008, 28 (2-3) : 94 - 109
  • [35] Conditions of the Water?Coal Fuel Drop Dispersion at Their Ignition in the Conditions of High-Temperature Heating
    Salomatov, V. V.
    Kuznetsov, G. V.
    Syrodoy, S. V.
    Gutareva, N. Y.
    COMBUSTION SCIENCE AND TECHNOLOGY, 2019, 191 (12) : 2162 - 2184
  • [36] EXPERIMENTAL INVESTIGATION OF FUEL COMBUSTION IN COUNTERFLOWING HIGH-TEMPERATURE AIR-FLOW
    ANNUSHKIN, YM
    KNYAZEV, AN
    LOSHENKOVA, NS
    COMBUSTION EXPLOSION AND SHOCK WAVES, 1982, 18 (05) : 544 - 547
  • [37] Effects of particles characteristics at high-temperature on bubble dynamic behaviors and acoustic radiation characteristics
    Engineering University of Chinese Armed Police Force, Xi'an
    710086, China
    Hanneng Cailiao, 3 (275-278):
  • [38] HIGH-TEMPERATURE CONVERSION OF HYDROCARBON RAW-MATERIALS IN A STEAM AIR MEDIUM
    YAKOVLEV, EA
    PLASTININ, BG
    POLAK, LS
    POPOV, VT
    HIGH ENERGY CHEMISTRY, 1982, 16 (05) : 358 - 361
  • [39] High-temperature air-oxidation of NiCoCrAlx medium-entropy alloys
    Kai, W.
    Jiang, Z. Y.
    Chen, G. T.
    Lee, I. H.
    Lin, H. J.
    Hsieh, H. H.
    Lin, W. T.
    Kai, J. J.
    CORROSION SCIENCE, 2021, 192
  • [40] Modeling dispersion mode of high-temperature particles transiently produced from industrial processes
    Duan, Mengjie
    Wang, Yi
    Gao, Dong
    Yang, Yang
    Cao, Zhixiang
    BUILDING AND ENVIRONMENT, 2017, 126 : 457 - 470