CALCULATION TABLE FOR SLIP RING INDUCTION MOTOR USED FOR
CRANE HOISTING APPLICATION
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Result contain approximate values for cross-checking only
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INPUTS
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Power Rating
|
P2
|
100
|
HP
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||
Speed
|
N
|
980
|
RPM
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||
Stator
Voltage
|
E1
|
415
|
V
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||
Stator
Current
|
Is
|
138
|
A
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||
Rotor Voltage
|
E2
|
380
|
V
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||
Rotor Current
|
I2
|
124
|
A
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||
Synchronous
Speed
|
Ns
|
1000
|
RPM
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||
Frequency
|
f
|
50
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Hz
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||
No.of Steps
in Speed Control
|
n
|
5
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OUTPUTS
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Slip
|
S=(Ns-N)/Ns
|
0.02
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Rotor
Frequency
|
f'=Sf
|
1
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Hz
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||
I2= (SE2)/(√(R22+(SX2)2)
For maximum starting torque application S=(R2/X2)= 0.02
Then R2= 0.02 X2
From above
two Equations we get
Rotor
Reactance
|
X2
|
2.166940136
|
Ohm
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||
Rotor
Resistance
|
R2
|
0.043338803
|
Ohm
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||
Starting Rotor Current I2s=(E2)/(√(R22+X22)
Starting Power Factor COSØ2s=(R2)/(√(R22+X22)
Power Factor (FL) COSØ2s=(SR2)/(√(R22+(SX2)2)
Starting
Rotor Current
|
I2s
|
175.3274198
|
A
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||
Starting
Power Factor
|
COSØ2s
|
0.019996001
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Power Factor
(FL)
|
COSØ2
|
0.707106781
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T= (60P2)/(2лNs)
T=(KSR2E22)/ (√(R22+(SX2)2)
Smax= (R2/X2)
Tm=(KE22)/ (2X2)
Tstm=(KE22)/ (2R2)
Torque (FL)
|
T
|
42747.13376
|
N-m
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||
Torque
constant
|
K
|
1.282970635
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Maximum Slip
|
Smax
|
0.02
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Maximum
Torque
|
Tm
|
42747.13376
|
N-m
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||
Maximum
Starting Torque
|
Tstm
|
2137356.688
|
N-m
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||
Pm=(1-S)P2
Pcu=SP2
Tsh=(60P2)/ (2лN)
Mechanical
Power
|
Pm
|
73.0786
|
kW
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||
Cu loss
|
Pcu
|
1.4914
|
kW
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||
Shaft Torque
|
Tsh
|
42747.13376
|
N-m
|
||
R1’,R2’,R3’,R4’,R5’-
Total resistance per phase in the rotor circuit on the 1st, 2nd, 3rd,
4th, 5th Stud respectively
r1’,r2’,r3’,r4’,r5’-
Total resistance of the different steps
R1’=(R2/Smax)
k=(Smax)1/n-1
R2’=kR1’
R3’=kR2’=k2R1’
R4’=kR3’=k3R1’
R5’=kR4’=k4R1’
|
R1'
|
2.166940136
|
Ohm
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||
k
|
0.376060309
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||||
R2'
|
0.814900178
|
Ohm
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|||
R3'
|
0.306451613
|
Ohm
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|||
R4'
|
0.115244288
|
Ohm
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|||
R5'
|
0.043338803
|
Ohm
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|||
r1’=R1’-R2’=(1-k)R1’
r2’=R2’-R3’=(k-k2)R1’=kr1’
r3’=k2r1’
r4’=k3r1’
r5’=k4r1’
Resistance
1st Step
|
r1'
|
1.352039958
|
Ohm
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||
Resistance
2nd Step
|
r2'
|
0.508448565
|
Ohm
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||
Resistance
3rd Step
|
r3'
|
0.191207325
|
Ohm
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||
Resistance
4th Step
|
r4'
|
0.071905486
|
Ohm
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||
S1=1
S2=k
S3=K2
S4=K3
S5=Smax
Slip 1st Step
|
S1
|
1
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|||
Slip 2nd Step
|
S2
|
0.376060309
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Slip 3rd Step
|
S3
|
0.141421356
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|||
Slip 4th Step
|
S4
|
0.053182959
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|||
Slip 5th Step
|
S5
|
0.02
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N1=0
N2=(1-S2)Ns
N3=(1-S3)Ns
N4=(1-S4)Ns
N5=N
Speed 1st
Step
|
N1
|
0
|
RPM
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||
Speed 2nd
Step
|
N2
|
623.9396907
|
RPM
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||
Speed 3rd
Step
|
N3
|
858.5786438
|
RPM
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||
Speed 4th
Step
|
N4
|
946.817041
|
RPM
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||
Speed 5th
Step
|
N5
|
980
|
RPM
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||
T=(KSR2E22)/ (√(R22+(SX2)2)
Torque 1st
Step
|
T1
|
1709.20167
|
N-m
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||
Torque 2nd
Step
|
T2
|
4534.013993
|
N-m
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||
Torque 3rd
Step
|
T3
|
11853.64241
|
N-m
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||
Torque 4th
Step
|
T4
|
28167.51282
|
N-m
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||
Torque 5th
Step
|
T5
|
42747.13376
|
N-m
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||
Sunday, 23 February 2014
CALCULATION TABLE FOR SLIP RING INDUCTION MOTOR USED FOR CRANE HOISTING APPLICATION
Saturday, 7 July 2012
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