
Btu/h 3620 3010 2580 2260 2000 1740 1410
Watts 372 378 388 400 413 426 438
Amps 5.97 5.90 5.92 5.98 6.07 6.17 6.24
0
Lb/h 45.2 37.6 32.2 28.3 25.1 21.8 17.7
Btu/h 4020 3370 2900 2540 2240 1940 1570
Watts 389 395 406 419 434 449 463
Amps 6.01 5.96 5.99 6.07 6.18 6.30 6.39
5
Lb/h 50.4 42.3 36.3 31.9 28.1 24.3 19.7
Btu/h 4450 3750 3230 2830 2490 2140 1730
Watts 406 413 425 440 456 473 489
Amps 6.03 6.00 6.05 6.15 6.29 6.42 6.53
10
Lb/h 55.9 47.1 40.6 35.5 31.2 26.9 21.8
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.203373E+04 6.104209E+02 1.233799E+01 2.747985E+02
C2 1.557020E+02 4.077209E+00 -1.917255E-02 1.973559E+00
C3 -4.529828E+02 -7.666263E+00 -1.747069E-01 -5.644477E+00
C4 1.012833E+00 2.932297E-02 -4.341861E-04 1.328742E-02
C5 -1.049871E+00 -3.496282E-02 3.347004E-04 -1.329219E-02
C6 3.585889E+00 7.555645E-02 1.524755E-03 4.466790E-02
C7 -3.644229E-03 6.394305E-05 -2.819446E-06 -4.223462E-05
C8 -7.295689E-03 -1.906984E-04 2.629632E-06 -9.382587E-05
C9 1.222455E-03 3.022270E-04 1.176360E-07 1.545647E-05
C10 -1.001765E-02 -2.115171E-04 -4.198806E-06 -1.247825E-04
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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