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Vapor pressure effects on void growth have been incorporated into the Gurson model for porous ductile material.
These analyses suggest that vapor-density effects should be considered and that density-driven vapor advection may be an important mechanism for moving VOC's with high vapor pressures and molecular mass through the subsurface.
An experiment was conducted to evaluate whether vapor-density effects are significant in transporting volatile organic compounds (VOC's) with high vapor pressure and molecular mass through the subsurface.
When vapor-density effects were ignored, agreement was poor.
Vapor flow effect experiment was carried out at three heat fluxes 20, 40 and 60 kW/m2.
Comparisons between experimental data and simulation results when vapor-density effects are considered were very good.
This flame movement is attributed to the fuel vapor accumulation effect, which becomes more dominant with decreasing sample spacing.
As with other chemical vapors, the effects of VOC exposure depends on several factors including the type of VOC, the amount of VOC, and the length of time a person is exposed [1, 2].
The BLEVE (boiling liquid expanding vapor explosion) effect that involves the formation of a fireball occurs at the engulfment by fire of a tank with a highly flammable liquid or a liquid gas.
These results render important confirmations of the external group combustion phenomena and prove the importance of the two kinds of unsteadiness, that is, the scavenging combustion with large droplet interval and the fuel vapor accumulation effect with small droplet interval, in group combustion.
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