38
Entropy [J/(kg K)] 0 500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 6500 7000 7500 8000 8500 Temperature [ºC] -180,00 -170,00 -160,00 -150,00 -140,00 -130,00 -120,00 -110,00 -100,00 -90,00 -80,00 -70,00 -60,00 -50,00 -40,00 -30,00 -20,00 -10,00 0,00 10,00 20,00 30,00 40,00 h = 650 h = 675 h = 700 h = 725 h = 750 h = 775 h = 800 h = 825 h = 850 h = 875 h = 900 h = 925 h = 950 h = 975 h = 1 000 h = 1 025 h = 1 050 h = 1075 h = 1 100 0,25 0,25 0,50 0,50 1,00 1,00 2,50 2,50 5,00 5,00 10,00 10,00 25,00 25,00 50,00 50,00 h = 125 150 175 200 225 250 275 300 325 350 375 400 425 450 475 500 525 550 575 600 625 DTU, Department of Energy Engineering h in [kJ/kg]. v in [m^3/kg]. p in [Bar] M.J. Skovrup & H.J.H Knudsen. 12-04-07 R50 Ref :W.C.Reynolds: Thermodynamic properties in SI

Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

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Page 1: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Entropy [J/(kg K)]

0 500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 6500 7000 7500 8000 8500

Tem

per

ature

[ºC

]

-180,00

-170,00

-160,00

-150,00

-140,00

-130,00

-120,00

-110,00

-100,00

-90,00

-80,00

-70,00

-60,00

-50,00

-40,00

-30,00

-20,00

-10,00

0,00

10,00

20,00

30,00

40,00

h = 650

h = 675

h = 700

h = 725

h = 750

h = 775

h = 800

h = 825

h = 850

h = 875

h = 900

h = 925

h = 950

h = 975

h = 1000

h = 1025

h = 1050

h = 1075

h = 11000,25

0,25

0,50

0,50

1,00

1,00

2,50

2,50

5,00

5,00

10,00

10,00

25,00

25,00

50,0050,00

h = 125 150 175 200 225 250 275 300 325 350 375 400 425 450 475 500 525 550 575 600 625

DTU, Department of Energy Engineering

h in [kJ/kg]. v in [m^3/kg]. p in [Bar]

M.J. Skovrup & H.J.H Knudsen. 12-04-07

R50 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 2: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

140 160 180 200 220 240 260 280 300 320 340 360 380 400 420

Pre

ssure

[B

ar]

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

1,7

0

s = 1

,80

s =

1,90

s =

2,00

s = 2

,10

s = 2

,20

s = 2

,30

s = 2

,40

s = 2

,50

s = 2

,60

s = 2

,70

s = 2

,80

s = 2,90

s = 3,00

-180

-180

-170

-160

-160

-150

-140

-140

-130

-120 -100 -80 -60 -40 -20 0

0,00

15

0,00

20

0,0030

0,0040

0,00500,0060

0,00700,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

-180

-170

-160

-150

-140

-130

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R740 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 3: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

120 160 200 240 280 320 360 400 440 480 520 560 600 640 680 720 760 800 840 880

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

50,00

s =

2,5

0

s =

2,6

0

s =

2,7

0

s =

2,8

0s

= 2

,90

s =

3,0

0s

= 3

,10

s = 3

,20

s =

2,5

0

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

120

130

140

140

150

0,00

30

0,0040

0,00500,0060

0,00700,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

-10

0

10

20

30

40

50

60

70

80

90

100

110

120

130

140

150

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60 1,80 2,00 2,20

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R600 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 4: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560 580 600

Pre

ssure

[B

ar]

6,00

7,00

8,00

9,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

80,00

90,00

100,00

200,00

s =

1,3

5

s =

1,4

0

s =

1,4

5

s =

1,5

0

s =

1,5

5

s =

1,6

0

s =

1,6

5

s =

1,7

0

s =

1,7

5s

= 1

,80

s = 1

,85

s = 1

,90

s = 1

,95

s = 2

,00

s = 2

,05

s = 2

,10

s = 2

,15

s = 2

,20

s =

2,25

s =

2,30

s =

2,35

s =

2,40

s =

2,45

s =

2,50

s =

2,55

s =

2,60

-50

-50

-45

-40

-40

-35

-30

-30

-25

-20

-20

-15

-10

-10

-5

0

0

5

10

10

15

20

20

25

30

30

40 50 60 70 80 90 100110120130

0,00

15

0,0020

0,0030

0,0040

0,0050

0,0060

0,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000-50

-45

-40

-35

-30

-25

-20

-15

-10

-5

0

5

10

15

20

25

30

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,80 1,00 1,20 1,40 1,60 1,80 2,00

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R744 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 5: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

-100 -50 0 50 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

2,0

0

s =

2,2

0s

= 2

,40

s = 2

,60

s =

2,80

s =

3,00

s =

3,20

s =

3,40

s =

3,60

s =

3,80

s = 4

,00

-100

-100

-90

-80

-80

-70

-60

-60

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40 60 80 100 120 140 160

0,00

30

0,00

40

0,0050

0,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000

2,0000-100

-90

-80

-70

-60

-50

-40

-30

-20

-10

0

10

20

30

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,00 0,20 0,40 0,60 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R170 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 6: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

-150 -100 -50 0 50 100 150 200 250 300 350 400 450 500 550 600 650 700

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

1,6

0

s =

1,7

0s

= 1

,80

s = 1

,90

s = 2

,00

s = 2

,10

s =

2,20

s =

2,30

s =

2,40

s =

2,50

s =

2,60

s =

2,70

s =

2,80

s =

2,90

s =

3,00

s =

3,10

s = 3

,20

s = 3

,30

s = 3

,40

s = 3

,50

s = 3

,60

s = 3

,70

-110

-100

-100

-90

-80

-80

-70

-60

-60

-50

-40

-40

-30

-20

-20

-10

0

0

20 40 60 80 100

0,00

30

0,00

40

0,0050

0,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000

2,0000

-110

-100

-90

-80

-70

-60

-50

-40

-30

-20

-10

0

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = -0,20 0,00 0,20 0,40 0,60 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R1150 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 7: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380
Page 8: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

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Page 9: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

0 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 3200 3400 3600 3800

Pre

ssure

[B

ar]

0,005

0,006

0,007

0,008

0,009

0,010

0,020

0,030

0,040

0,050

0,060

0,070

0,080

0,090

0,100

s =

10,8

0s

= 1

1,1

0s

= 1

1,4

0

s =

11,7

0s

= 1

2,0

0s

= 1

2,3

0s

= 1

2,60

s =

12,9

0

0

0

10

20

30

40

50 100 150 200 250 300 350

20

40

60

80

100

200

400

0

10

20

30

40

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 2,40 3,00 3,60 4,20 4,80 5,40 6,00 6,60 7,20 7,80 8,40 9,00 9,60 10,20 10,80

v=

1,0

v=

2,0

v= 4

,0

v= 6

,0

v= 8

,0

v= 1

0,0

v= 20,0

v= 40,0

v= 60,0

v= 80,0

v= 100,0

v= 200,0

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R718 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 10: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

0 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 3200 3400 3600 3800

Pre

ssure

[B

ar]

0,0050,0060,0070,0080,0090,010

0,020

0,030

0,040

0,0500,0600,0700,0800,0900,100

0,200

0,300

0,400

0,5000,6000,7000,8000,9001,000

2,000

3,000

4,000

5,000

s = 9

,30

s = 9

,60

s =

9,90

s =

10,2

0

s = 1

0,50

s = 1

0,80

s = 1

1,10

s = 1

1,40

s = 1

1,70

s =

12,0

0s

= 12

,30

s =

12,6

0s =

12,9

0

0

0

20

40

60

80

100

100

120

140

200 300

0,400,60

0,80

1,00

2,00

4,00

6,00

8,00

10,00

20,00

40,00

60,00

80,00

100,00

200,00

400,000

20

40

60

80

100

120

140

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 2,40 3,00 3,60 4,20 4,80 5,40 6,00 6,60 7,20 7,80 8,40 9,00 9,60 10,20 10,80

v= 0

,040

v= 0

,060

v= 0

,080

v= 0,1

00

v= 0,200

v= 0,400

v= 0,600

v= 0,800

v= 1,000

v= 2,000

v= 4,000

v= 6,000

v= 8,000

v= 10,000

v= 20,000

v= 40,000

v= 60,000

v= 80,000

v= 100,000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R718 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 11: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380
Page 12: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380
Page 13: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

50 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850

Pre

ssure

[B

ar]

0,20

0,30

0,40

0,50

0,600,700,800,901,001,00

2,00

3,00

4,00

5,00

6,007,008,009,00

10,00

20,00

30,00

40,00

50,00

s =

2,4

0

s =

2,5

0

s = 2

,60

s =

2,7

0s

= 2

,80

s = 2

,90

s = 3

,00

s = 3

,10

s = 3

,20

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

120

130

140

0,0040

0,00500,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000

2,0000

3,0000

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

120

130

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R600a Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 14: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

-225 -200 -175 -150 -125 -100 -75 -50 -25 0 25 50 75 100 125 150

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

1,6

0

s =

1,7

0

s = 1

,80

s = 1

,90

s =

2,00

s =

2,10

s =

2,20

s =

2,30

s = 2

,40

s = 2

,50

s = 2

,60

s = 2

,70

s = 2

,80

s = 2

,90

s = 3

,00

s = 3

,10

s = 3

,20

s = 3

,30

s = 3

,40

s = 3

,50

s = 3

,60

s = 3,70

-180 -160 -140 -120 -100 -80 -60

0,00

20

0,0030

0,0040

0,00500,0060

0,00700,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

-195

-190

-185

-180

-175

-170

-165

-160

-155

-150

-145

2,402,202,001,801,601,401,201,000,800,600,40

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R729 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 15: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950 1000 1050 1100

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

3,7

5

s =

4,0

0

s = 4

,25

s = 4

,50

s =

4,75

s =

5,00

s =

5,25

s =

5,50

s = 5

,75

s = 6

,00

s = 6

,25

s = 6

,50

s = 6

,75

s = 7

,00

s = 7

,25

s = 7,50

-160

-160

-150

-140

-140

-130

-120

-120

-110

-100

-100

-90

-80 -60 -40 -20 0 20

0,00

40

0,00

50

0,0060

0,0070

0,0080

0,00900,0100

0,01500,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000

2,0000

3,0000

-160

-150

-140

-130

-120

-110

-100

-90

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 2,00 3,00 4,00 5,00

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R50 Ref :W.C.Reynolds: Thermodynamic properties in SI

Page 16: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

0 100 200 300 400 500 600 700 800 900 1000 1100 1200 1300 1400 1500 1600 1700 1800 1900 2000

Pre

ssure

[B

ar]

0,30

0,40

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

s = 5

,00

s = 5

,25

s = 5

,50

s =

5,75

s =

6,00

s =

6,25

s =

6,50

s =

6,75

s =

7,00

s =

7,25

s =

7,50

s =

7,75

s = 8

,00

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

100 120 140 160 180 200 220

0,0300,040

0,050

0,060

0,070

0,080

0,090

0,100

0,150

0,200

0,300

0,400

0,500

0,600

0,700

0,800

0,900

1,000

1,500

2,000

3,000

4,000

5,000

6,000

7,000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 2,00 3,00 4,00 5,00 6,00

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

v= 1,5000

v= 2,0000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R717 Ref :R.Döring. Klima+Kälte ingenieur Ki-Extra 5, 1978

Page 17: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

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Page 18: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380
Page 19: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

50 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950 1000

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

50,00

s =

2,3

0

s =

2,4

0s

= 2

,50

s =

2,6

0

s =

2,7

0

s = 2

,80

s = 2

,90

s = 3

,00

s = 3

,10

s = 3

,20

s = 3

,30

s = 3

,40

s = 3

,50

s = 3

,60

s =

3,70

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100 120 140 160 180 200

0,00

40

0,0050

0,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R290 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 20: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560

Pre

ssure

[B

ar]

0,050,060,070,080,090,100,10

0,20

0,30

0,40

0,500,600,700,800,901,00

2,00

3,00

4,00

5,006,007,008,009,00

10,00

20,00

30,00

40,00

50,0060,00

s =

1,6

5

s = 1

,70

s = 1

,75

s =

1,80

s =

1,85

s =

1,90

s =

1,95

s =

2,00

s =

2,05

s =

2,10

s =

2,15

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

120

130

140

140

150

160

160170

180

180190

200 220 240 260

0,0015

0,00200,0030

0,00400,0050

0,0060

0,00700,00800,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,07000,08000,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,70000,80000,90001,0000

1,5000

2,0000

3,0000

4,0000

5,0000

6,0000

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

120

130

140

150

160

170180

190

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

v= 1,5000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R11 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 21: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

1,5

0s

= 1

,55

s =

1,6

0

s =

1,6

5

s = 1

,70

s = 1

,75

s = 1

,80

s = 1

,85

s =

1,90

s =

1,95

s =

2,00

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120 140 160 180 200

0,0015

0,00200,0030

0,0040

0,0050

0,0060

0,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R12 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 22: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480

Pre

ssure

[B

ar]

0,050,060,070,080,090,100,10

0,20

0,30

0,40

0,500,600,700,800,901,00

2,00

3,00

4,00

5,006,007,008,009,00

10,00

20,00

30,00

40,00

50,00

s =

1,9

0s

= 1

,95

s = 2

,00

s =

2,05

s =

2,10

s =

2,15

s =

2,20

s =

2,25

s =

2,30

s = 2

,35

s = 2

,40

s = 2

,45

s = 2

,50

s = 2

,55

s = 2

,60

s = 2

,65

s = 2

,70

s = 2

,75

s = 2

,80

-150

-140

-140

-130

-120

-120

-110

-100

-100

-90

-80

-80

-70

-60

-60

-50

-40 -20 0 20 40 60

0,0015

0,0020

0,00300,0040

0,0050 0,00600,0070

0,00800,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,08000,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,80000,90001,0000

1,5000

2,0000

3,0000

4,0000

5,0000

6,0000

-150

-140

-130

-120

-110

-100

-90

-80

-70

-60

-50

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,20 1,40 1,60 1,80 2,00

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R14 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 23: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,0080,00

s =

1,6

0

s =

1,6

5s

= 1

,70

s = 1

,75

s = 1

,80

s = 1

,85

s = 1

,90

s =

1,95

s =

2,00

s =

2,05

s =

2,10

s =

2,15

s =

2,20

s =

2,25

s =

2,30

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100 120 140 160 180 200

0,00

15

0,0020

0,00300,0040

0,0050

0,0060

0,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60 1,80

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R22 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 24: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

60 80 100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

s =

1,5

0

s =

1,6

0

s = 1

,70

s = 1

,80

s = 1

,90

s =

2,00

s =

2,10

s =

2,20

-90

-80

-80

-70

-60

-60

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

40 60 80 100

0,00

15

0,0020

0,0030

0,00400,0050

0,00600,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

-90

-80

-70

-60

-50

-40

-30

-20

-10

0

10

20

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,60 0,80 1,00 1,20 1,40 1,60

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R23 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 25: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460

Pre

ssure

[B

ar]

0,050,060,070,080,090,100,10

0,20

0,30

0,40

0,500,600,700,800,901,00

2,00

3,00

4,00

5,006,007,008,009,00

10,00

20,00

30,00

40,00

s =

1,6

0

s =

1,6

5

s = 1

,70

s = 1

,75

s =

1,80

s = 1

,85

s = 1

,90

s =

1,5

5

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

120

130

140

140

0,0015

0,00200,0030

0,0040

0,0050

0,0060

0,00700,00800,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,08000,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,80000,90001,0000

1,5000

2,0000

3,0000

4,0000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

120

130140

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R114 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 26: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540

Pre

ssure

[B

ar]

0,05

0,060,070,080,090,100,10

0,20

0,30

0,40

0,50

0,600,700,800,901,00

2,00

3,00

4,00

5,00

6,007,008,009,00

10,00

20,00

30,00

s =

1,7

0

s =

1,7

5

s = 1

,80

s = 1

,85

s = 1

,90

s = 1

,95

s = 2

,00

s =

2,05

s =

2,10

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

120

130

140

140

150

160

160170

180 200

0,00500,0060

0,00700,00800,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,08000,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,80000,90001,0000

1,5000

2,0000

3,0000

4,0000

5,0000

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

120

130

140

150 160 170

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

v= 0,8000

v= 1,0000

v= 1,5000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R123 Ref :DuPont SUVA 123

Page 27: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

50,00

s =

1,7

0

s =

1,7

5

s =

1,8

0

s =

1,8

5

s =

1,9

0

s = 1

,95

s = 2

,00

s = 2

,05

s = 2

,10

s = 2

,15

s = 2

,20

s = 2

,25

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

120 140 160

0,00

15

0,0020

0,00300,0040

0,00500,0060

0,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R134a Ref :D.P.Wilson & R.S.Basu, ASHRAE Transactions 1988, Vol. 94 part 2.

Page 28: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

125 150 175 200 225 250 275 300 325 350 375 400 425 450 475 500 525 550 575 600 625 650 675 700 725 750 775

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,80

0,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,00

9,0010,00

20,00

30,00

s =

2,1

0s

= 2

,20

s =

2,3

0

s =

2,4

0

s =

2,5

0

s = 2

,60

s = 2

,70

s = 2

,80

s = 2

,90

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100 120 140 160 180 200

0,0090

0,0100

0,01500,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000-40

-30

-20

-10

0

10

20

30

40

50

60

70

8090

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20 1,40 1,60 1,80 2,00

v= 0

,003

0

v= 0,0

040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R152a Ref :ASHRAE Thermodynamic properties of Refrigerants 1986

Page 29: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

s =

1,6

0

s =

1,6

5s

= 1

,70

s =

1,7

5

s =

1,8

0

s =

1,8

5

s =

1,9

0

s =

1,9

5s

= 2

,00

s = 2

,05

s = 2

,10

s = 2

,15

s = 2

,20

-40 -20 0 20 40 60 80 100 120 140 160

0,00

20

0,0030

0,00400,0050

0,00600,0070

0,00800,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

s = 1,00 1,20 1,40 1,60

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R404A Ref :DuPont SUVA HP62

Page 30: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560 580

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

50,00

s =

1,7

5

s =

1,8

0

s =

1,8

5s

= 1

,90

s = 1

,95

s =

2,0

0

s = 2

,05

s = 2

,10

s = 2

,15

s = 2

,20

s = 2

,25

s =

2,30

s =

2,35

s =

2,40

-40 -20 0 20 40 60 80 100 120 140 160

0,00

20

0,0030

0,00400,0050

0,00600,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

s = 1,00 1,20 1,40 1,60 1,80

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R407C Ref :DuPont SUVA AC9000

Page 31: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540 560 580

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

40,00

s =

1,7

5s

= 1

,80

s =

1,8

5s

= 1

,90

s =

1,9

5s

= 2

,00

s = 2

,05

s = 2

,10

s = 2

,15

s = 2

,20

s = 2

,25

s = 2

,30

s = 2

,35

s =

2,40

s = 2

,45

s =

2,50

-60 -40 -20 0 20 40 60 80 100 120 140

0,0050

0,00600,0070

0,00800,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

-60

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

s = 0,80 1,00 1,20 1,40 1,60 1,80

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R410A Ref :Patel-Teja equation and DuPont SUVA 9100

Page 32: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,009,00

10,00

20,00

30,00

s =

1,6

0s

= 1

,65

s =

1,7

0

s = 1

,75

s = 1

,80

s = 1

,85

s = 1

,90

s = 1

,95

s = 2

,00

s = 2

,05

-60

-60

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

80 100

0,00400,0050

0,00600,0070

0,0080

0,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000-60

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,80 1,00 1,20 1,40 1,60

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R507 Ref :Allied Signal, Genetron AZ 50

Page 33: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

20 40 60 80 100 120 140 160 180 200 220 240 260 280 300 320

Pre

ssure

[B

ar]

0,50

0,60

0,70

0,80

0,90

1,001,00

2,00

3,00

4,00

5,00

6,00

7,00

8,00

9,00

10,00

20,00

s =

1,3

5

s =

1,4

0

s =

1,4

5

s =

1,5

0

s =

1,5

5

s =

1,6

0s

= 1

,65

s =

1,7

0s

= 1

,75

s = 1

,80

s = 1

,85-90

-80

-80

-70

-60

-60

-50

-40

-40

-30

-20

-20

0 20 40 60

0,00800,0090

0,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

-90

-80

-70

-60

-50

-40

-30

-20

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,60 0,80 1,00 1,20

v= 0

,002

0

v= 0

,003

0

v= 0,0

040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R508A Ref :ICI Chemicals & Polymers 1996

Page 34: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

100 120 140 160 180 200 220 240 260 280 300 320 340 360 380 400 420 440 460 480 500 520 540

Pre

ssure

[B

ar]

0,20

0,30

0,40

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

s =

1,8

0

s =

1,8

5

s =

1,9

0

s =

1,9

5

s =

2,0

0

s =

2,0

5s

= 2

,10

s =

1,7

5

s =

1,7

0

s =

1,6

5

s =

1,6

0

s =

1,5

5-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100

100

110

120

0,00150,0020

0,0030

0,0040

0,0050

0,0060

0,0070

0,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,09000,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

100

110

x = 0,100,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 1,00 1,20

v= 0,0020

v= 0,0030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

RC318 Ref :R.C.Downing. ASHRAE Transactions 1974. Paper No. 2313.

Page 35: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

100 150 200 250 300 350 400 450 500 550

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

2,1

0s

= 2

,20

s = 2

,30

s = 2

,40

s =

2,50

s =

2,60

s =

2,70

s = 2

,80

s = 2

,90

s = 3

,00

s = 3

,10

s = 3

,20

s = 3

,30

s = 3

,40

s = 3

,50

s = 3

,60

s = 3

,70

s = 3

,80

s = 3,90

s = 4,00

-180

-180

-170

-160

-160

-150

-140

-140

-130

-120

-120

-100 -80 -60 -40 -20 0 20

0,00

15

0,00

20

0,0030

0,0040

0,00500,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

-180

-170

-160

-150

-140

-130

-120

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,60 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40 2,60 2,80

v= 0,0

030

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R732 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 36: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

50 75 100 125 150 175 200 225 250 275 300 325 350 375 400 425 450

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

1,5

0

s =

1,6

0

s = 1

,70

s = 1

,80

s =

1,90

s =

2,00

s =

2,10

s =

2,20

s =

2,30

s = 2

,40

s = 2

,50

s = 2

,60

s = 2

,70

s = 2

,80

s = 2

,90

s = 3

,00

s = 3

,10

s = 3

,20

s = 3

,30

s = 3

,40

s = 3

,50

s = 3,60

s = 3,70

-200

-200

-190

-180

-180

-170

-160

-160

-150

-140 -120 -100 -80 -60 -40

0,00

20

0,0030

0,0040

0,00500,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000-200

-190

-180

-170

-160

-150

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,00 0,20 0,40 0,60 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40

v= 0,0040

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R728 Ref :W.C.Reynolds: Thermodynamic Properties in SI

Page 37: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

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Page 38: Ref :W.C.Reynolds: Thermodynamic properties in SI€¦ · R50 Ref :W.C.Reynolds: Thermodynamic properties in SI. Enthalpy [kJ/kg] 140 160 180 200 220 240 260 280 300 320 340 360 380

Enthalpy [kJ/kg]

50 100 150 200 250 300 350 400 450 500 550 600 650 700 750 800 850 900 950 1000

Pre

ssure

[B

ar]

0,50

0,60

0,700,800,901,001,00

2,00

3,00

4,00

5,00

6,00

7,008,009,00

10,00

20,00

30,00

40,00

50,00

60,00

70,00

s =

2,2

0

s =

2,3

0s

= 2

,40

s =

2,5

0s

= 2

,60

s = 2

,70

s = 2

,80

s = 2

,90

s =

3,00

s = 3

,10

s =

3,20

s =

3,30

s =

3,40

s =

3,50

s =

3,60

s =

3,70

s =

3,80

-60

-60

-50

-40

-40

-30

-20

-20

-10

0

0

10

20

20

30

40

40

50

60

60

70

80

80

90

100 120 140 160 180 200

0,00

30

0,0040

0,00500,0060

0,00700,0080

0,00900,0100

0,0150

0,0200

0,0300

0,0400

0,0500

0,0600

0,0700

0,0800

0,0900

0,1000

0,1500

0,2000

0,3000

0,4000

0,5000

0,6000

0,7000

0,8000

0,9000

1,0000

1,5000-60

-50

-40

-30

-20

-10

0

10

20

30

40

50

60

70

80

90

x = 0,10 0,20 0,30 0,40 0,50 0,60 0,70 0,80 0,90

s = 0,60 0,80 1,00 1,20 1,40 1,60 1,80 2,00 2,20 2,40

v= 0,0060

v= 0,0080

v= 0,0100

v= 0,0150

v= 0,0200

v= 0,0300

v= 0,0400

v= 0,0600

v= 0,0800

v= 0,1000

v= 0,1500

v= 0,2000

v= 0,3000

v= 0,4000

v= 0,6000

DTU, Department of Energy Engineering

s in [kJ/(kg K)]. v in [m^3/kg]. T in [ºC]

M.J. Skovrup & H.J.H Knudsen. 05-09-18

R1270 Ref :W.C.Reynolds: Thermodynamic properties in SI