Bryant 580J manual Cooling Capacities, Stagecooling, Tons

Models: 580J

1 94
Download 94 pages 40.55 Kb
Page 38
Image 38
Table 18 – COOLING CAPACITIES
tldb = tedb

580J

Table 18 – COOLING CAPACITIES

1-STAGE COOLING

 

 

 

5 TONS

 

 

 

 

 

 

 

 

 

 

 

 

 

 

580J06 (5 TONS) --- UNIT WITH PERFECT HUMIDITY SYSTEM IN SUBCOOLING MODE

 

 

 

 

 

 

Air Entering Evaporator --- CFM

 

 

 

 

Temp (F) Air Ent

 

 

80 dry bulb

 

 

80 dry bulb

 

 

80 dry bulb

 

 

 

72 wet bulb

 

 

67 wet bulb

 

 

62 wet bulb

 

Condenser (Edb)

 

 

 

 

 

 

 

 

 

 

1750

2000

2250

1750

2000

2250

1750

2000

2250

 

TC

 

73.1

78.7

84.5

63.2

66.9

70.8

53.2

55.1

57.1

75

SHC

 

35.3

37.2

38.8

42.0

43.7

45.3

48.7

50.3

51.8

 

kW

 

3.3

3.3

3.3

3.3

3.3

3.3

3.3

3.3

3.3

 

TC

 

67.6

71.2

75.0

59.1

61.2

63.3

50.6

51.1

51.5

85

SHC

 

27.9

30.0

31.9

36.3

38.3

40.1

44.8

46.6

48.2

 

kW

 

3.8

3.8

3.8

3.8

3.8

3.8

3.8

3.8

3.8

 

TC

 

62.1

63.8

65.5

55.1

55.4

55.8

48.0

47.0

46.0

95

 

 

 

 

 

 

 

 

 

 

 

SHC

 

20.5

22.9

24.9

30.7

32.9

34.8

40.9

42.9

44.7

 

kW

 

4.3

4.3

4.3

4.3

4.3

4.3

4.3

4.3

4.3

 

TC

 

56.6

56.3

56.0

51.0

49.6

48.3

45.4

43.0

40.5

105

 

 

 

 

 

 

 

 

 

 

 

SHC

 

13.1

15.7

18.0

25.0

27.5

29.6

36.9

39.2

41.2

 

kW

 

4.8

4.8

4.8

4.8

4.8

4.8

4.7

4.7

4.7

 

TC

 

51.1

48.8

46.5

46.9

43.9

40.7

42.8

39.0

35.0

115

SHC

 

5.8

8.6

11.0

19.4

22.0

24.4

33.0

35.5

37.7

 

kW

 

5.3

5.3

5.3

5.3

5.3

5.3

5.2

5.2

5.2

 

 

 

 

 

 

580J06 (5 TONS) --- UNIT WITH PERFECT HUMIDITY SYSTEM IN HOT GAS REHEAT MODE

 

 

 

 

 

 

Air Entering Evaporator --- CFM

 

 

 

 

Temp (F) Air Ent

 

 

75 dry bulb

 

 

75 dry bulb

 

 

75 dry bulb

 

 

62.5 wet bulb (50% relative)

64 wet bulb (55% relative)

65.3 wet bulb (60% relative)

Condenser (Edb)

 

 

 

 

1750

2000

2250

1750

2000

2250

1750

2000

2250

 

TC

 

23.0

24.4

25.6

24.7

26.2

27.4

26.3

27.7

29.0

80

SHC

 

5.3

6.1

6.8

3.2

4.0

4.7

1.4

2.2

2.9

 

kW

 

2.9

2.9

2.9

2.9

2.9

2.9

2.9

2.9

2.9

 

TC

 

23.3

24.6

25.7

25.0

26.3

27.5

26.4

27.8

29.0

75

SHC

 

5.1

5.8

6.5

3.1

3.9

4.5

1.4

2.2

2.8

 

kW

 

2.9

2.9

2.9

2.9

2.9

2.9

2.9

2.9

2.9

 

TC

 

23.5

24.8

25.9

25.2

26.4

27.5

26.6

27.9

29.0

70

 

 

 

 

 

 

 

 

 

 

 

SHC

 

4.8

5.5

6.2

3.0

3.7

4.3

1.4

2.1

2.8

 

kW

 

3.0

3.0

3.0

3.0

3.0

3.0

3.0

3.0

3.0

 

TC

 

24.1

25.2

26.1

25.6

26.7

27.7

26.9

28.0

29.0

60

 

 

 

 

 

 

 

 

 

 

 

SHC

 

4.3

5.0

5.5

2.8

3.4

3.9

1.4

2.0

2.6

 

kW

 

3.0

3.0

3.0

3.0

3.0

3.0

3.0

3.0

3.0

 

TC

 

24.7

25.6

26.4

26.1

27.0

27.8

27.2

28.2

29.0

50

SHC

 

3.8

4.4

4.8

2.5

3.1

3.5

1.4

2.0

2.4

 

kW

 

3.1

3.1

3.1

3.1

3.1

3.1

3.1

3.1

3.1

 

TC

 

25.3

26.0

26.7

26.5

27.3

27.9

27.6

28.3

29.0

40

SHC

 

3.3

3.8

4.2

2.3

2.8

3.1

1.4

1.9

2.3

 

kW

 

3.1

3.1

3.1

3.2

3.2

3.2

3.2

3.2

3.2

LEGEND

 

Edb

---

Entering Dry--- Bulb

Ewb

---

Entering Wet--- Bulb

kW

---

Compressor Motor Power Input

Idb

---

Leaving Dry--- Bulb

Iwb

---

Leaving Wet--- Bulb

SHC ---

Sensible Heat Capacity (1000 Btuh) Gross

TC

---

Total Capacity (1000 Btuh) Gross

NOTES:

1.Direct interpolation is permissible. Do not extrapolate.

2.The following formulas may be used:

sensible capacity (Btuh)

1.10 x cfm

tlwb = Wet--- bulb temperature corresponding to enthalpy of air leaving evaporator coil (hlwb)

total capacity (Btuh)

hlwb = hewb 4.5 x cfm

Where: hewb = Enthalpy of air entering evaporator coil

38

Page 38
Image 38
Bryant 580J manual Cooling Capacities, Stagecooling, Tons