507 - 520 |
Dynamics of gaseous combustion in closed systems with an inert porous medium Korzhavin AA, Bunev VA, Babkin VS |
521 - 535 |
The effect of microstructural transformation on the evolution of thermal conductivity of highly porous chars during oxidation Kantorovich II, BarZiv E |
536 - 548 |
Effects of variable partial premixing on turbulent jet flame structure Lee TW, Fenton M, Shankland R |
549 - 560 |
Two-thermocouple probe for fluctuating temperature measurement in combustion - Rational estimation of mean and fluctuating time constants Tagawa M, Ohta Y |
561 - 577 |
Differential diffusion in binary scalar mixing and reaction Jaberi FA, Miller RS, Mashayek F, Givi P |
578 - 586 |
Oxidation rates of coals as measured from one-dimensional spontaneous heating Chen XD, Stott JB |
587 - 598 |
A relationship between the kinetic parameters of char combustion and the coal's properties Fu WB, Zhang BL, Zheng SM |
599 - 619 |
Self-ignition of SI engine model fuels: A shock tube investigation at high pressure Fieweger K, Blumenthal R, Adomeit G |
620 - 638 |
Structure and propagation of premixed flame in nozzle-generated counterflow Chao BH, Egolfopoulos FN, Law CK |
639 - 646 |
Radiation extinction limit of counterflow premixed lean methane-air flames Guo HS, Ju YG, Maruta K, Niioka T, Liu FS |
647 - 668 |
Experimental and modeling studies of a rich H-2/CO/N2O/Ar flame Vandooren J, VanTiggelen PJ, Pauwels JF |
669 - 681 |
Extinction of turbulent diffusion flames by Kolmogorov microscale turbulence Yoshida A, Igarashi T, Kotani Y |
682 - 700 |
Scalar gradient and related quantities in turbulent premixed flames OYoung F, Bilger RW |
701 - 720 |
Soot volume fraction and temperature measurements in laminar nonpremixed flames using thermocouples McEnally CS, Koylu UO, Pfefferle LD, Rosner DE |