451 - 455 |
Flamelet surface density modelling of turbulent deflagrating flames in vented explosions Patel SNDH, Ibrahim SS, Yehia MA |
457 - 478 |
On the determination of the laminar burning velocity from closed vessel gas explosions Dahoe AE, de Goey LPH |
479 - 495 |
A taxonomy of performance influencing factors for human reliability analysis of emergency tasks Kim JW, Jung WD |
497 - 506 |
Combustion hazard of mixing ammonia with nitric oxide Liu R, Ting DSK, Checkel AD |
507 - 512 |
Calorimetric behaviors of hydroxylamine and its salts caused by Fe(III) Kumasaki M, Fujimoto Y, Ando T |
513 - 521 |
Technological disaster factors Shaluf IM, Ahmadun FR, Shariff AR |
523 - 531 |
The "Mini Closed Pressure Vessel Test (MCPVT)" as a screening or classification test for explosive properties of organic peroxides Wehrstedt KD, Knorr A, Schuurman P |
533 - 543 |
Modelling outflow from a ruptured pipeline transporting compressed volatile liquids Cleaver RP, Cumber PS, Halford A |
545 - 550 |
Risk assessment of antagonistic hazards Coster MN, Hankin RKS |
551 - 560 |
Predicting the frequency of accidents in port areas by developing event trees from historical analysis Ronza A, Felez S, Darbra RM, Carol S, Vilchez JA, Casal J |
561 - 573 |
Risk-based maintenance (RBM): a quantitative approach for maintenance/inspection scheduling and planning Khan FI, Haddara MA |
575 - 591 |
I-Risk: development of an integrated technical and management risk methodology for chemical installations Papazoglou IA, Bellamy LJ, Hale AR, Aneziris ON, Ale BJM, Post JG, Oh JIH |
593 - 595 |
An incident investigation on an unexpected loss of containment and damage to PHI-TEC II during acrylonitrile runaway tests Shu CM, Wang CJ |
599 - 599 |
The runaway scenario in the assessment of thermal safety: simple experimental access by means of the catalytic decomposition of H2O2 (vol 16, pg 289, 2003) Eissen M, Zogg A, Hungerbuhler K |