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Modern Engineering Thermodynamics

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88 CHAPTER 3: Thermodynamic Properties<br />

10<br />

7<br />

350<br />

0.02<br />

0.04<br />

4<br />

0.07<br />

2<br />

550<br />

400<br />

0.1<br />

450<br />

500<br />

0.2<br />

1<br />

0.7<br />

0.4<br />

P = 0.1 MPa<br />

~1 atm.<br />

0.5<br />

0.6<br />

0.7<br />

0.8<br />

0.9<br />

600<br />

650<br />

0.4<br />

0.7<br />

P = 1MPa<br />

Saturated vapor line<br />

0.4<br />

0.2<br />

700<br />

x = 0.3<br />

2<br />

0.2<br />

v, m 3 /kg<br />

0.1<br />

0.07<br />

750<br />

4<br />

800<br />

0.1<br />

0.04<br />

7<br />

10<br />

850<br />

900<br />

950<br />

0.02<br />

0.01<br />

0.007<br />

20<br />

40<br />

T = 1000K<br />

1050<br />

1100<br />

0.004<br />

70<br />

0.002<br />

Saturated liquid line<br />

0.001<br />

0 500 1000 1500 2000<br />

u, kJ/kg<br />

2500 3000 3500<br />

FIGURE 3.26<br />

Thermodynamic properties of steam (H 2 O). (Source: Reprinted by permission of the publisher from Reynolds, W. C., Perkins, H. C.,<br />

1977. <strong>Engineering</strong> <strong>Thermodynamics</strong>, second ed. McGraw-Hill, New York.)

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