The combustion of artificial fuels at Wildland-Urban Interface (WUI) homeowner scale has been identified as a contributor to fire spread through a property, often leading to the ignition of structures, hence involving major safety issues at community level. However, little information on the real-scale burning behaviour of these type of fuels is available. These fuels are usually located close to the main structure of a property and are often piled together, forming packs containing different types of materials. Real-scale tests on four different fuel packs have been performed to gather quantitative data on items that are commonly present on WUI properties. The fuel packs consisted of typical combustible materials present in porches, garden...
In this paper in order to conduct a laboratory experiment on the effect of firebrands on the ground ...
Managing Wildland-Urban-Interface (WUI) fires is a challenging task due to the inherent complexity o...
Grassland fuels quickly respond to moisture changes in the environment, and successfully ignite more...
An experimental approach has been developed to quantify the characteristics and flux of firebrands d...
Every year, there are thousands of wildland fires instances. These fires burn vegetation and built s...
Abstract. Firebrands or embers are produced as trees and structures burn in wildland–urban interface...
This paper presents flammability studies related to wildland fires that have been conducted at the U...
Due to socio-economic and climatic changes around the world, large outdoor fires in the built enviro...
Wildfires have increased in frequency and severity over recent decades, resulting in serious impacts...
A series of real scale fire experiments were performed to determine the size and mass distribution o...
ABSTRACT: Two series of experiments were conducted to determine the burning characteristics of diffe...
The wildland urban interface (WUI), which is the area where houses meet or intermingle with undevelo...
Smoldering firebrands (embers) are a major cause of ignition and eventual structural damage during w...
Unwanted fires result in loss of life and property. These fires can also create an adverse economic ...
This work concerns an exploration of the ability of various metal screens to contain both fire radia...
In this paper in order to conduct a laboratory experiment on the effect of firebrands on the ground ...
Managing Wildland-Urban-Interface (WUI) fires is a challenging task due to the inherent complexity o...
Grassland fuels quickly respond to moisture changes in the environment, and successfully ignite more...
An experimental approach has been developed to quantify the characteristics and flux of firebrands d...
Every year, there are thousands of wildland fires instances. These fires burn vegetation and built s...
Abstract. Firebrands or embers are produced as trees and structures burn in wildland–urban interface...
This paper presents flammability studies related to wildland fires that have been conducted at the U...
Due to socio-economic and climatic changes around the world, large outdoor fires in the built enviro...
Wildfires have increased in frequency and severity over recent decades, resulting in serious impacts...
A series of real scale fire experiments were performed to determine the size and mass distribution o...
ABSTRACT: Two series of experiments were conducted to determine the burning characteristics of diffe...
The wildland urban interface (WUI), which is the area where houses meet or intermingle with undevelo...
Smoldering firebrands (embers) are a major cause of ignition and eventual structural damage during w...
Unwanted fires result in loss of life and property. These fires can also create an adverse economic ...
This work concerns an exploration of the ability of various metal screens to contain both fire radia...
In this paper in order to conduct a laboratory experiment on the effect of firebrands on the ground ...
Managing Wildland-Urban-Interface (WUI) fires is a challenging task due to the inherent complexity o...
Grassland fuels quickly respond to moisture changes in the environment, and successfully ignite more...