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KURENAI : Kyoto University Research Information Repository

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Equation<br />

where<br />

vh<br />

vh<br />

(79)<br />

0<br />

2h*<br />

can<br />

pf<br />

be rewritten<br />

1/2<br />

(0<br />

*<br />

*<br />

(D<br />

/C---- 1/4<br />

g<br />

2"Pvh = vh(81)<br />

Pg<br />

in a<br />

< D<br />

For the wake regime Dc is given by<br />

Dc = 4 jgN1/ P93(82)<br />

dimensionless form as<br />

c)<br />

* •<br />

c)<br />

V. 7 CORRELATION FOR ENTRAINMENT AMOUNT<br />

In previous sections, the entrainment rate and droplet size<br />

distribution at the pool interface, initial droplet velocity, and velocity<br />

necessary to rise more than height h, are obtained. Now the amount of<br />

entrainment can be calculated using the basic expression for entrainment<br />

and these results. Hence by substituting Eqs. (40), (65), and (80) into<br />

Eq. (22) one obtains<br />

Efg(hjg) =JS vi-Cj9Nu9DpDHp<br />

f**1/41/4*-1/4 P<br />

o vh<br />

x 0.5963 j91.5D*0.5* dvidD(83)<br />

Using Eq. (24), the above equation can be rewritten as<br />

276<br />

(80)<br />

1/2_ Hp ()3n314)

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