
Btu/h 1250 1230 1200 1170 1140 1100 1060
Watts 254 258 263 268 272 276 278
Amps 65.7 46.6 58.7 89.3 125 154 162
0
Lb/h 20.2 19.8 19.4 18.9 18.4 17.8 17.1
Btu/h 1410 1380 1360 1330 1300 1260 1220
Watts 271 275 280 285 290 294 298
Amps 37.0 46.9 73.4 104 125 124 87.5
5
Lb/h 22.8 22.4 22.0 21.5 21.0 20.4 19.8
Btu/h 1570 1550 1530 1500 1470 1430 1390
Watts 289 293 298 303 309 314 318
Amps 3.78
10
Lb/h 25.6 25.2 24.8 24.3 23.8 23.2 22.6
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.425069E+03 2.964499E+02 2.887830E+03 2.306533E+01
C2 3.194442E+01 5.121817E+00 -1.619253E+02 5.223104E-01
C3 -2.929935E+00 -1.920148E+00 -8.038094E+01 -4.787661E-02
C4 2.809655E-01 5.293677E-02 1.075603E+00 4.741508E-03
C5 -4.577397E-02 -4.379883E-02 3.191412E+00 -7.264038E-04
C6 1.809818E-02 2.359636E-02 7.353930E-01 2.973809E-04
C7 1.090256E-03 2.146723E-04 -6.219650E-02 1.939750E-05
C8 -3.239815E-04 -3.146372E-04 -2.206002E-02 -5.329657E-06
C9 2.633779E-04 2.502945E-04 -1.470652E-02 4.142323E-06
C10 -1.129808E-04 -7.727180E-05 -2.144943E-03 -1.839048E-06
Value = C1 + C2 * Te + C4 * Te^2 + C7 * Te^3 + (C3 + C5 * Te + C8 * Te^2) * Tc + (C6 + C9 * Te) * Tc^2 + C10 * Tc^3
Te = Evaporator Temperature
Tc = Condensing Temperature
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