
Btu/h 4430 3940 3470 3010 2570 2120 1680
Watts 684 690 700 713 725 733 734
Amps 3.36 3.34 3.35 3.40 3.45 3.50 3.54
0
Lb/h 77.2 72.9 69.1 65.7 62.4 59.1 55.5
Btu/h 5060 4510 3990 3480 2980 2480 1980
Watts 722 731 745 762 779 792 799
Amps 3.57 3.53 3.54 3.59 3.65 3.72 3.78
5
Lb/h 88.5 83.8 79.8 76.2 72.8 69.4 65.8
Btu/h 5740 5130 4550 3980 3430 2870 2310
Watts 759 770 788 810 831 850 863
Amps 3.75 3.69 3.70 3.75 3.82 3.91 3.99
10
Lb/h 101 95.7 91.4 87.6 84.1 80.6 77.0
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 9.937958E+03 1.189884E+03 7.039397E+00 1.594053E+02
C2 1.968057E+02 7.430559E+00 1.063879E-01 3.077534E+00
C3 -9.363929E+01 -1.611404E+01 -1.029931E-01 -1.811629E+00
C4 1.655120E+00 -2.965598E-02 -4.771704E-05 1.945506E-02
C5 -9.167985E-01 -4.421788E-02 -1.344170E-03 -1.636848E-02
C6 3.945464E-01 1.631146E-01 9.214440E-04 1.269845E-02
C7 2.055552E-03 -4.886156E-04 -1.112639E-05 4.857282E-05
C8 -8.157811E-03 7.080827E-05 -2.935962E-06 -1.189571E-05
C9 -5.551048E-04 6.063738E-04 6.745340E-06 6.004371E-05
C10 -1.050527E-03 -5.091783E-04 -2.602977E-06 -3.612394E-05
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
Kommentare zu diesen Handbüchern