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Handbook of Turbomachinery Second Edition Revised - Ventech!

Handbook of Turbomachinery Second Edition Revised - Ventech!

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Cv Coefficient <strong>of</strong> heat at constant volume<br />

D Diffusion factor [Eq. (14)]<br />

f PAð1þgM2g1 Þ=ð1 þ 2 MÞ<br />

g Acceleration <strong>of</strong> gravity<br />

H Enthalpy (¼ CpT for ideal gas)<br />

I Rothalpy ð¼ H ð1=2Þo2rÞ i Incidence angle; see Fig. 13<br />

J Ratio, unit <strong>of</strong> work per unit <strong>of</strong> thermal energy<br />

N Rotating speed<br />

_m Rate <strong>of</strong> mass flow<br />

m1<br />

¼ 1 gþ1<br />

2 g 1<br />

m ¼ g<br />

g 1<br />

P Total pressure<br />

p Static pressure<br />

r Radius<br />

S Entropy<br />

T Absolute total temperature<br />

t Absolute static temperature<br />

z Axial distance<br />

V Velocity, referred to stationary coordinates<br />

W Relative velocity<br />

Z Number <strong>of</strong> blades<br />

b Angle; see Fig. 13<br />

g Ratio <strong>of</strong> specific heats ¼ Cp=Cv<br />

G Circulation, 2rVy<br />

z Vorticity<br />

d Deviation angle; see Fig. 13<br />

d P=PSL<br />

y Circumferential angle<br />

y T=TSL<br />

f<br />

m PA ¼ð1þ gM2 g 1<br />

Þ=ð1 þ 2 M2Þ me<br />

r Density<br />

f f =ðW ffiffiffiffi p pffiffiffiffi m2<br />

TÞ¼ðf<br />

=PAÞ=ððW TÞ=PAÞ<br />

c ðW ffiffiffiffi p pffiffiffiffiffiffiffiffiffiffi<br />

2 M1<br />

TÞ=ðPAÞ<br />

¼g=RM=ðð1 þðg 1Þ=2ÞM Þ gg=RM=<br />

g 1<br />

ð1 þ<br />

2 M2Þ m1<br />

o Angular velocity<br />

Subscripts<br />

1 Inlet <strong>of</strong> flow section, or hub<br />

2 Outlet <strong>of</strong> flow section, or casing<br />

Copyright © 2003 Marcel Dekker, Inc.

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