TRAJECTORY AND INCINERATION OF ROGUE DROPLETS IN A TURBULENT-DIFFUSION FLAME

被引:7
作者
MULHOLLAND, JA
SRIVASTAVA, RK
WENDT, JOL
AGRAWAL, SR
LANIER, WS
机构
[1] ACUREX CORP,RES TRIANGLE PK,NC 27709
[2] UNIV ARIZONA,DEPT CHEM ENGN,TUCSON,AZ 85721
[3] ENERGY & ENVIRONM RES CORP,DURHAM,NC 27707
关键词
D O I
10.1016/0010-2180(91)90125-U
中图分类号
O414.1 [热力学];
学科分类号
摘要
The trajectory and incineration efficiency of individual droplet streams of a fuel mixture injected into a swirling gas turbulent diffusion flame were measured as a function of droplet size, droplet velocity, interdroplet spacing, and droplet injection angle. Additional experiments were performed in a laminar flow flat flame burner to evaluate the predictive capabilities of a droplet stream burning model, simplified by assuming infinitely fast flame chemistry and by utilizing measured temperature and velocity fields. It was found that use of a measured burning rate parameter significantly improved model predictions. Calculations of turbulent flame droplet trajectories compare well with mean experimental observations. However, turbulence effects, which were surprisingly large, could not be predicted due to inadequate measurement of turbulence intensity and frequency. It was found that large "rogue" droplets (> 200-mu-m diameter) pass through the flame zone and burn as isolated droplets in the postflame gases. Destruction of these droplets appears to limit overall incineration efficiency.
引用
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页码:297 / 310
页数:14
相关论文
共 32 条
[1]  
ABRAMZON B, 1987, 1987 P AASME JSME TH, V1, P11
[2]  
AGGARWAL SK, 1984, 20TH S INT COMB PITT, P1773
[3]  
AYERS WH, 1980, AFOSRTR810543 AIR FO
[4]  
BEER JM, 1963, K20A91 INT FLAM RES
[5]   GENERATION OF MONODISPERSE AEROSOL STANDARDS [J].
BERGLUND, RN ;
LIU, BYH .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1973, 7 (02) :147-153
[6]  
Chiu H H, 1982, 19 S INT COMB COMB I, P971
[7]  
CLIFT R, 1978, BUBBLES DROPS PARTIC, P111
[8]  
DWYER HA, 1988, 22ND S INT COMB, P1923
[9]  
EISENKLAM P, 1967, 11TH S INT COMB, P715
[10]   CURRENT STATUS OF DROPLET AND LIQUID COMBUSTION [J].
FAETH, GM .
PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 1977, 3 (04) :191-224