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Piloted ignition delay times on optically thin PMMA cylinders
N. Hernández
, A. Fuentes
,
P. Reszka
, A. C. Fernández-Pello
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Scopus citations
Overview
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Keyphrases
Approximate Analytical Solution
33%
Approximate Solution
66%
Cylindrical Fuel
33%
Effective Properties
33%
Engineering Application
33%
Heat Equation
33%
Ignition
100%
Ignition Delay Time
100%
Ignition Process
33%
Ignition Test
33%
Ignition Theory
33%
In-depth Absorption
33%
Incident Heat Flux
66%
Integral Method
66%
Optically Thin
100%
Piloted Ignition
100%
Practical Engineering Application
33%
Radiative Transfer Equation
33%
Simple Correlation
33%
Solid Fuel
66%
Solid Phase
66%
Theory Use
33%
Thermal Conductivity
33%
Thermally Thin Materials
33%
INIS
absorption
11%
analytical solution
11%
applications
22%
approximations
44%
comparative evaluations
11%
correlations
44%
cylinders
100%
engineering
22%
equations
22%
fuels
22%
heat
11%
heat flux
22%
heating
33%
ignition
100%
incidents
22%
pmma
100%
prediction
22%
radiations
22%
radiative transfer
11%
solid fuels
22%
solids
77%
solutions
33%
thermal conductivity
11%
time delay
100%
tools
11%
Engineering
Absorption Coefficient
14%
Absorptivity
14%
Approximate Solution
28%
Delay Time
100%
Effective Property
14%
Engineering Application
28%
Heat Flux
28%
Ignition
100%
Ignition Delay
100%
Integral Method
28%
Radiant Heat
14%
Radiative Transfer Equation
14%
Solid Fuel
28%
Thermal Conductivity
14%
Chemical Engineering
Heat Flux
100%
Thermal Conductivity
50%