122
PERFORMANCE DATA (cont)
COOLING CAPACITIES (cont)
LEGEND
NOTES:
1.
Direct interpolation is permissible. Do not extrapolate.
2.
The following formulas may be used:
Where: h
ewb
= Enthalpy of air entering evaporator coil
3.
The SHC is based on 80 F edb temperature of air entering evaporator coil.
Below 80 F edb, subtract (corr factor x cfm) from SHC.
Above 80 F edb, add (corr factor x cfm) to SHC
.
Interpolation is permissible.
Correction Factor = 1.10 x (1 – BF) x (edb – 80).
GENERAL FAN PERFORMANCE NOTES
NOTES:
1. Values include losses for filters, unit casing, and wet coils. See
page 125 for accessory/factory-installed option static pressure
information.
2. Extensive motor and electrical testing on these units ensures that
the full range of the motor can be utilized with confidence. Using
your fan motors up to the wattage ratings shown will not result in
nuisance tripping or premature motor failure. Unit warranty will not
be affected. See Evaporator-Fan Motor Performance table on
page 126 for additional information.
3. Use of a field-supplied motor may affect wire sizing. Contact your
Bryant representative for details.
4. Interpolation is permissible. Do not extrapolate.
559F240 (20 TONS) — UNITS WITH PERFECT HUMIDITY™ OPTION
Temp (F)
Air Entering
Condenser
(Edb)
Evaporator Air Quantity — Cfm/BF
6,000/0.07
7,000/0.09
8,000/0.1
9,000/0.11
10,000/0.12
Evaporator Air — Ewb (F)
62
67
72
62
67
72
62
67
72
62
67
72
62
67
72
75
TC
—
237
261
—
249
269
—
254
274
—
252
279
230
255
283
SHC
—
141
111
—
155
118
—
166
125
—
175
132
228
186
139
kW
—
16.2
16.9
—
17.3
17.1
—
17.2
17.3
—
16.7
17.5
16.3
16.9
17.6
85
TC
—
227
251
—
233
257
—
238
263
—
241
267
220
243
269
SHC
—
133
103
—
145
110
—
157
117
—
166
123
220
177
129
kW
—
17.5
18.2
—
17.8
18.3
—
18.0
18.5
—
18.6
18.7
17.4
17.7
18.3
95
TC
—
215
238
—
221
246
—
224
249
207
228
254
211
231
256
SHC
—
125
94
—
136
102
—
147
108
199
158
114
210
167
120
kW
—
18.7
19.0
—
18.8
19.6
—
18.6
19.6
18.6
19.3
19.9
19.1
19.4
20.1
105
TC
—
205
227
—
208
230
—
214
237
195
213
241
198
217
241
SHC
—
117
86
—
128
92
—
138
99
188
147
104
198
156
110
kW
—
20.2
20.9
—
20.0
20.3
—
20.7
21.3
19.8
19.9
21.2
19.9
20.6
20.9
115
TC
—
190
211
—
195
217
—
197
219
183
203
222
186
204
227
SHC
—
108
77
—
119
82
—
127
88
176
138
94
186
147
99
kW
—
21.2
22.1
—
21.6
22.2
—
21.2
22.1
21.1
22.1
22.1
21.3
21.9
22.6
125
TC
—
176
196
—
179
198
—
183
204
169
183
207
172
185
207
SHC
—
97
65
—
107
70
—
116
76
165
124
81
172
133
86
kW
—
22.8
23.4
—
22.8
22.9
—
23.0
23.7
22.5
22.8
24.1
22.7
22.9
23.9
559F300 (25 TONS) — UNITS WITH PERFECT HUMIDITY OPTION
Temp (F)
Air Entering
Condenser
(Edb)
Evaporator Air Quantity — Cfm/BF
7,000/0.05
8,000/0.06
9,000/0.07
10,000/0.08
11,250/0.09
Evaporator Air — Ewb (F)
62
67
72
62
67
72
62
67
72
62
67
72
62
67
72
75
TC
—
287
325
—
301
332
—
300
331
272
299
336
278
304
341
SHC
—
175
139
—
191
148
—
204
156
259
214
163
276
228
177
kW
—
20.6
22.4
—
21.7
22.7
—
21.0
22.0
19.7
20.4
22.2
19.9
20.6
22.4
85
TC
—
268
298
—
277
306
—
281
312
259
286
317
265
289
321
SHC
—
161
123
—
173
130
—
186
138
244
197
145
262
213
157
kW
—
21.5
22.4
—
22.0
22.7
—
22.0
22.9
21.1
22.2
23.1
21.7
22.1
23.3
95
TC
—
253
286
—
261
290
—
269
296
244
271
301
250
275
307
SHC
—
149
111
—
161
117
—
173
124
231
184
131
246
199
140
kW
—
23.1
24.9
—
23.6
24.5
—
24.2
24.9
23.1
24.2
25.2
23.4
24.5
25.4
105
TC
—
240
266
—
247
273
—
249
277
229
254
280
234
256
285
SHC
—
136
97
—
148
103
—
158
111
217
169
115
231
182
122
kW
—
25.1
26.0
—
25.6
26.6
—
25.3
26.5
25.0
25.7
26.5
25.1
25.7
26.7
115
TC
—
222
248
—
228
253
210
232
257
213
233
263
215
239
265
SHC
—
122
82
—
133
88
188
144
94
201
153
100
212
166
107
kW
—
26.8
27.8
—
27.0
28.1
26.6
27.4
28.1
26.7
27.3
28.8
26.7
27.9
28.7
121
TC
—
212
—
—
218
—
197
221
—
201
224
—
203
225
—
SHC
—
113
—
—
124
—
177
134
—
190
143
—
201
156
—
kW
—
28.2
—
—
28.5
—
27.7
28.6
—
27.9
28.9
—
28.0
28.9
—
125
TC
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
SHC
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
kW
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
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
t
ldb
=
t
edb
–
sensible capacity (Btuh)
1.10 x cfm
t
lwb
=
Wet-bulb temperature corresponding to enthalpy of air
leaving evaporator coil (h
lwb
)
h
lwb
=
h
ewb
–
total capacity (Btuh)
4.5 x cfm
BYPASS FACTOR
(BF)
ENTERING AIR DRY-BULB TEMP (F)
79
78
77
76
75
under 75
81
82
83
84
85
over 85
Correction Factor
.05
1.04
2.07
3.11
4.14
5.18
Use formula
shown below.
.10
.98
1.96
2.94
3.92
4.90
.20
.87
1.74
2.62
3.49
4.36
.30
.76
1.53
2.29
3.05
3.82
0
T
F
Q
0
04
-0
12
55
9F1
80-
30
0
Содержание 551A
Страница 14: ...14 TYPICAL WIRING SCHEMATIC Single Fan Units Sizes 036 073 ...
Страница 16: ...16 TYPICAL WIRING SCHEMATIC Sizes 155 300 ...
Страница 29: ...29 BASE UNIT DIMENSIONS 558F036 072 0TFQ004 012 558F036 150 ...
Страница 30: ...30 BASE UNIT DIMENSIONS 558F073 0TFQ004 012 558F036 150 ...
Страница 31: ...31 BASE UNIT DIMENSIONS 558F090 102 120 150 0TFQ004 012 558F036 150 ...
Страница 32: ...32 BASE UNIT DIMENSIONS 558F091 121 0TFQ004 012 558F036 150 ...
Страница 74: ...74 BASE UNIT DIMENSIONS 551B036 072 0TFQ004 012 551B036 150 ...
Страница 75: ...75 BASE UNIT DIMENSIONS 551B090 150 0TFQ004 012 551B036 150 ...
Страница 133: ...133 BASE UNIT DIMENSIONS 558F180 210 0TFQ004 012 558F180 300 ...
Страница 134: ...134 BASE UNIT DIMENSIONS 558F240 0TFQ004 012 558F180 300 ...
Страница 135: ...135 BASE UNIT DIMENSIONS 558F300 0TFQ004 012 558F180 300 ...
Страница 153: ...153 BASE UNIT DIMENSIONS 551A155 180 0TFQ004 012 551A155 180 ...