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Ignition of wildland fuels by idealized firebrands
J. Rivera
, N. Hernández
, J. L. Consalvi
,
P. Reszka
, J. Contreras
, A. Fuentes
Research output
:
Contribution to journal
›
Article
›
peer-review
30
Scopus citations
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Keyphrases
Ignition
100%
Wildland Fuels
100%
Fuel Layer
100%
Firebrands
100%
Analytical Expression
40%
Forest Fuel
40%
Ignition Delay Time
40%
Volume Fraction
20%
Porosity
20%
Analytical Solution
20%
Solid Fuel
20%
Heat Flux
20%
Heat Capacity
20%
Radiative Heating
20%
Radiative Heat Transfer
20%
Incident Heat Flux
20%
Critical Heat Flux
20%
Effective Properties
20%
Time to Ignition
20%
Ignition Time
20%
Ignition Test
20%
P1 Approximation
20%
Ignition Temperature
20%
Radiative Heat Flux
20%
INIS
fuels
100%
ignition
100%
layers
62%
heat flux
37%
forests
25%
incidents
25%
time delay
25%
density
12%
control
12%
heating
12%
volume
12%
porosity
12%
correlations
12%
solids
12%
apparatus
12%
experimental data
12%
heaters
12%
analytical solution
12%
heat transfer
12%
solid fuels
12%
heat capacity
12%
critical heat flux
12%
p1-approximation
12%
Engineering
Ignition
100%
Heat Flux
100%
Delay Time
50%
Ignition Delay
50%
Time to Ignition
50%
Solid Fuel
25%
Radiative Heat Transfer
25%
Ignition Temperature
25%
Effective Property
25%
Fuel Volume
25%
Heat Capacity
25%
Temperature Property
25%
Porosity
25%
Physics
Theoretical Model
100%
Radiative Heat Transfer
100%
Specific Heat
100%
Porosity
100%
Ignition Temperature
100%
Earth and Planetary Sciences
Specific Heat
25%