International audienceThis paper deals with the physical modelling of forest fuel layer ignition. A model based on momentum, fluid and solid phase energy equations is written for a fuel layer and a dimensional analysis is performed. This analysis allows to enlighten two relevant dimensionless groups regarding the dimensionless time to ignition of a fuel layer and also provides a suited scaling for the fluid velocity inside the fuel layer during ignition. A correlation for the time to ignition is then fitted on experimental data obtained using a FM-Global Fire Propagation Apparatus (FPA) for different pine species with a closed basket. A good agreement is found, emphasizing the relevance of the dimensionless groups and the thermally thick be...
The main idea of this paper is to establish a simple approach for prediction of the ignition time of...
This paper experimentally and theoretically examines the ignition of 50 mm thick samples of wood in...
The probability of structural ignition is dependent both on physical properties of materials and the...
International audienceThis paper deals with the physical modelling of forest fuel layer ignition. A ...
International audienceA numerical study is carried out to analyze piloted ignition of forest fuel la...
International audienceAn experimental study of the burning rates of small-scale forest fuel layers c...
This paper presents a study to assess the influence of pine needle layer characteristics on combusti...
International audienceThis paper deals with the modelling of living fuel ignition, suggesting that a...
A study of the conditions of ignition of a layer of wood as a result of exposure to burning particle...
How quickly large biomass particles can ignite and burn out when transported into a pulverized-fuel ...
The spontaneous ignition of a forest fuel layer by idealized firebrands was carried out experimental...
International audienceThis paper deals with thermal behaviors of solid particles at ignition in atte...
This paper experimentally and theoretically examines the ignition of 50 mm thick samples of wood in ...
Experimental research results of ignition processes of typical and widespread forest fuel (pine need...
The burning of two species of pine needles: Pinus halepensis and Pinus pinaster, was studied to char...
The main idea of this paper is to establish a simple approach for prediction of the ignition time of...
This paper experimentally and theoretically examines the ignition of 50 mm thick samples of wood in...
The probability of structural ignition is dependent both on physical properties of materials and the...
International audienceThis paper deals with the physical modelling of forest fuel layer ignition. A ...
International audienceA numerical study is carried out to analyze piloted ignition of forest fuel la...
International audienceAn experimental study of the burning rates of small-scale forest fuel layers c...
This paper presents a study to assess the influence of pine needle layer characteristics on combusti...
International audienceThis paper deals with the modelling of living fuel ignition, suggesting that a...
A study of the conditions of ignition of a layer of wood as a result of exposure to burning particle...
How quickly large biomass particles can ignite and burn out when transported into a pulverized-fuel ...
The spontaneous ignition of a forest fuel layer by idealized firebrands was carried out experimental...
International audienceThis paper deals with thermal behaviors of solid particles at ignition in atte...
This paper experimentally and theoretically examines the ignition of 50 mm thick samples of wood in ...
Experimental research results of ignition processes of typical and widespread forest fuel (pine need...
The burning of two species of pine needles: Pinus halepensis and Pinus pinaster, was studied to char...
The main idea of this paper is to establish a simple approach for prediction of the ignition time of...
This paper experimentally and theoretically examines the ignition of 50 mm thick samples of wood in...
The probability of structural ignition is dependent both on physical properties of materials and the...