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The computation of turbulent natural convection flows - Turbulence ...

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291<br />

T<br />

T<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.7<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.05<br />

X<br />

EXP<br />

k-ε-AWF<br />

EXP<br />

k-ε-AWF<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

T<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.95<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

X<br />

EXP<br />

k-ε-AWF<br />

X<br />

X<br />

Figure 7.78 – Temperature distributions resulting from k-ε-AWF, Z=0.655.<br />

T<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.05<br />

T<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.95<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

T<br />

X<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.5<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

EXP<br />

k-ε-AWF<br />

EXP<br />

k-ε-AWF<br />

0<br />

0 0.2 0.4 0.6 0.8 1<br />

EXP<br />

k-ε-AWF<br />

X<br />

X<br />

Figure 7.79 – Temperature distributions resulting from k-ε-AWF, Z=0.75.<br />

T<br />

1<br />

0.8<br />

0.6<br />

0.4<br />

0.2<br />

Y=0.5<br />

EXP<br />

k-ε-AWF<br />

0<br />

0 0.2 0.4 0.6 0.8 1

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