AbstractUltra-fine water mist (UFM) is a clean agent with a gas like property. Fire suppression experiemt was conducted in a confined space. Numerical simulation using DPM model and dense gas model were carried out to compare with experiment. Simulaition discovered that dense gas model is more suitable for predicting UFM transportation and flow behavior compared with DPM model. Both experiment and simulation found that fire of a larger size is easier to extinguish in a compartment space, which is because fire sources can promote transportation of UFM in a compartment. Fire location also affects the fire suppression performance by promoting or suppressing the transportation of UFM
When gaseous agents are used to extinguish fires, ventilation systems in the compartment must be shu...
Substantial progress has been made in studying water mist fire suppression systems (WMFSSs) in the p...
Solid fire extinguishment by water mist will be studied by using field modeling technique. The capab...
AbstractUltra-fine water mist (UFM) is a clean agent with a gas like property. Fire suppression expe...
AbstractSpray fire is a primary disaster in machinery space. Previous studies demonstrated that smal...
AbstractThe paper introduced a kind of new ultra-fine water mist extinguisher, and conducted serials...
Clean gaseous agents are very effective in extinguishing fires, but where the enclosure integrity ca...
Because of wood is one kind of the basic combustible material, a small scale compartment was built f...
The overall objective of this area is to evaluate and understand the fire suppression behavior of a ...
AbstractThis paper studies suppression of n-Heptane pool fire with water mist under different longit...
This study aims to investigate the effectiveness of water mist on suppressing a shielded fire. Full-...
The progress on the research and application of water mist systems in fire suppression has been subs...
Water-mist systems have become quite popular over the last two decades as an innovative technology i...
Fire suppression using a water mist nozzle directly above an n-Heptane pool in a fire compartment wi...
AbstractThe movement process of superfine powder extinguishing agent would be affected by temperatur...
When gaseous agents are used to extinguish fires, ventilation systems in the compartment must be shu...
Substantial progress has been made in studying water mist fire suppression systems (WMFSSs) in the p...
Solid fire extinguishment by water mist will be studied by using field modeling technique. The capab...
AbstractUltra-fine water mist (UFM) is a clean agent with a gas like property. Fire suppression expe...
AbstractSpray fire is a primary disaster in machinery space. Previous studies demonstrated that smal...
AbstractThe paper introduced a kind of new ultra-fine water mist extinguisher, and conducted serials...
Clean gaseous agents are very effective in extinguishing fires, but where the enclosure integrity ca...
Because of wood is one kind of the basic combustible material, a small scale compartment was built f...
The overall objective of this area is to evaluate and understand the fire suppression behavior of a ...
AbstractThis paper studies suppression of n-Heptane pool fire with water mist under different longit...
This study aims to investigate the effectiveness of water mist on suppressing a shielded fire. Full-...
The progress on the research and application of water mist systems in fire suppression has been subs...
Water-mist systems have become quite popular over the last two decades as an innovative technology i...
Fire suppression using a water mist nozzle directly above an n-Heptane pool in a fire compartment wi...
AbstractThe movement process of superfine powder extinguishing agent would be affected by temperatur...
When gaseous agents are used to extinguish fires, ventilation systems in the compartment must be shu...
Substantial progress has been made in studying water mist fire suppression systems (WMFSSs) in the p...
Solid fire extinguishment by water mist will be studied by using field modeling technique. The capab...