Bryant 580D User Manual

Page 27

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PERFORMANCE DATA (cont)

COOLING CAPACITIES (cont)

580D090 (7

1

2

TONS)

Temp (F)

Air Entering

Condenser

(Edb)

Air Entering Evaporator — Cfm/BF

2250/0.07

2800/0.09

3000/0.10

3750/0.12

Air Entering Evaporator — Ewb (F)

72

67

62

72

67

62

72

67

62

72

67

62

75

TC

102.8 94.8 86.2 105.8 98.2 90.0 106.4 99.0 90.8 109.2 101.6 93.6

SHC

49.4 61.8 73.2

52.6 67.8 81.6

53.6 69.8 84.0

58.2

77.4 92.2

kW

7.14 6.82 6.50

7.28 6.98 6.68

7.32 7.04 6.72

7.46

7.18 6.86

85

TC

98.2 90.2 81.6 101.8 93.6 85.2 102.6 94.4 86.0 104.6

96.8 89.6

SHC

48.0 60.2 71.2

51.6 66.4 79.6

52.8 68.6 82.0

56.8

76.0 89.4

kW

7.66 7.34 7.00

7.82 7.50 7.18

7.86 7.54 7.22

7.98

7.68 7.40

95

TC

93.8 85.2 76.6

97.0 88.4 80.0

97.6 89.0 81.2

99.4

91.2 85.2

SHC

46.4 58.2 68.8

50.2 64.6 77.2

51.4 66.8 79.0

55.6

74.4 85.2

kW

8.18 7.84 7.48

8.36 8.00 7.64

8.40 8.04 7.70

8.50

8.16 7.92

105

TC

88.4 79.8 70.8

91.0 82.8 74.6

91.6 83.4 76.0

93.8

85.4 80.6

SHC

44.6 56.2 66.0

48.2 62.6 74.2

49.4 64.8 75.6

54.2

72.4 80.6

kW

8.68 8.30 7.98

8.80 8.46 8.14

8.86 8.50 8.20

8.98

8.64 8.42

115

TC

82.8 73.8 66.0

85.2 76.8 69.6

85.6 77.4 71.0

87.6

79.4 76.0

SHC

42.6 53.8 63.2

46.4 60.4 69.6

47.8 62.6 71.0

52.8

70.4 75.8

kW

9.16 8.78 8.42

9.30 8.92 8.64

9.34 8.96 8.72

9.48

9.10 8.94

580D102 (8

1

2

TONS)

Temp (F)

Air Entering

Condenser

(Edb)

Air Entering Evaporator — Cfm/BF

2550/0.08

3000/0.10

3400/0.11

4250/0.135

Air Entering Evaporator — Ewb (F)

72

67

62

72

67

62

72

67

62

72

67

62

75

TC

116.6 108.4 99.0 119.2 111.3 101.8 120.1 112.8 103.6 122.3 114.8 106.3

SHC

71.9

61.9 75.9

75.2

65.1

81.4

80.5

68.0

85.6

32.7

73.9

94.4

kW

7.77

7.57 7.38

7.86 10.68

7.44

7.89

6.72

7.51

7.97

7.80

7.60

85

TC

113.3 104.2 94.0 115.7 106.9

97.0 117.2 108.7

98.8 120.1 111.0 101.8

SHC

54.0

67.7 80.4

56.3

72.5

87.1

58.2

76.4

92.5

62.9

84.2 101.0

kW

8.46

8.22 7.96

5.54

8.31

8.04

8.60

8.38

8.12

8.72

8.48

8.23

95

TC

109.1

99.3 87.3 111.2 102.0

91.4 112.5 103.6

93.7 115.3 105.8 107.4

SHC

52.6

65.9 77.4

55.0

70.9

84.9

57.1

75.1

90.3

62.2

83.2

97.3

kW

8.90

8.97 8.68

8.99

9.06

8.79

9.06

9.12

8.86

4.76

9.24

9.00

105

TC

103.3

94.0 81.4 105.9

96.3

84.6 107.4

97.7

87.9 109.4

99.9

92.8

SHC

50.5

54.0 74.5

53.5

69.1

81.4

55.8

73.1

86.6

60.4

81.4

92.8

kW

9.74

9.43 9.08

9.85

9.54

9.21

9.92

9.60

9.29 10.03

9.72

9.48

115

TC

97.7

87.9 75.9

99.9

90.4

78.8 101.3

91.8

82.4 102.9

93.8

88.3

SHC

48.7

61.7 71.9

51.8

66.9

78.1

54.0

71.2

82.3

58.5

79.4

88.2

kW

10.33

9.97 9.61 10.46 10.10

9.75 10.54 10.18

9.88 10.61 10.30 10.10

Standard Ratings

LEGEND

BF

Bypass Factor

Edb

Entering Dry-Bulb

Ewb — Entering Wet-Bulb
kW

Compressor Motor Power Input

Ldb

Leaving Dry-Bulb

Lwb — 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)

tldb = tedb −

1.10 x cfm

tlwb = Wet-bulb temperature corresponding to enthalpy of air leav-

ing evaporator coil (hlwb)

total capacity (Btuh)

hlwb = hewb −

4.5 x cfm

Where: hewb = Enthalpy of air entering evaporator coil

3. The SHC is based on 80 F edb temperature of air entering evapo-

rator coil.
Below 80 F edb, subtract (corr factor x cfm) from SHC.
Above 80 F edb, add (corr factor x cfm) to SHC.
Correction Factor = 1.10 x (1 − BF) x (edb − 80).

27

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