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Etude de la combustion de gaz de synthèse issus d'un processus de ...

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Nomenc<strong>la</strong>ture<br />

R u<br />

sp<br />

S g<br />

S n<br />

0<br />

S<br />

n<br />

S u<br />

0<br />

S<br />

u<br />

Universal gas constant =8.314 J/Kmol.K<br />

Mean piston speed (m/s)<br />

Unburned gas velocity (m/s)<br />

Stretched F<strong>la</strong>me speed (m/s)<br />

Unstretched F<strong>la</strong>me speed (m/s)<br />

Stretched <strong>la</strong>minar burning velocity (m/s)<br />

Unstretched <strong>la</strong>minar burning velocity (m/s)<br />

tel-00623090, version 1 - 13 Sep 2011<br />

T Temperature (K)<br />

t Time (s)<br />

U Internal energy (J)<br />

W Lambert function<br />

V Volume (m 3 ); Voltage (V)<br />

V s Swept volume (m 3 )<br />

x,y,z Cartesian coordinates<br />

Greek<br />

α Thermal diffusivity (W/m.K)<br />

δ F<strong>la</strong>me thickness (m)<br />

δ q<br />

Δt<br />

ε<br />

φ<br />

ϕ<br />

Quenching distance (m)<br />

Time step (s)<br />

Compression ratio; emissivity<br />

Equivalence ratio<br />

Crank radius to piston rod length ratio<br />

γ Ratio of specific heat capacities (c p /c v )<br />

η Combustion efficiency (%)<br />

κ Stretch rate (s -1 )<br />

λ<br />

μ<br />

θ<br />

Thermal conductivity (W/m.K)<br />

Kinematic viscosity (m 2 /s)<br />

Angle<br />

ρ Density (kg/m 3 )<br />

σ<br />

τ<br />

Stefan’s constant ; Expansion factor<br />

Combustion time (s)<br />

6

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