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Diagrama de Heyland

Diagrama de Heyland

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Diagrama de Heyland

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

R21 s

I 21

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

R21 s

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X

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X

R

U 1

3

UR

UX

X

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UR

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90º URUX

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90º URUX

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90ºUR

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90ºUR

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UR

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90º URUX

Ul3

I

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

I 21CC

21cc

I

( X

1+X 21

)

U O

l

3

21ccI

21cc

I

U O

l

3

21ccI

( X1+X21)

(X1+X

21 )

21cc

I

U O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

21cc

21cc

U O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

21cc

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

I 21CC

IO

U

O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

21cc

I 0

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0

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

I 21CC

IO

I 1CC

U

O

l

3

21ccI

( X1+X21)

(X1+X

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I 0

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0

1ccI

U

O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

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1I

0

21I

X 1

R 1 R 21 X 21

B 0 G 0 U 1

3

R21 s

I 21

I 0

I 1

U

O

l

3

21ccI

( X1+X21)

(X1+X

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s=1

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1I

0

21I1

U

O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

U

O

l

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

U

O

l

3

21ccI

( X1+X21)

(X1+X

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I 0

s=0

1I

0

21I1

A

B

D

G

F

E

21

R

O

21

3

21ccI

( X1+X21)

(X1+X

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s=1

I 0

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0

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A

B

D

G

F

E

R

1

C

U

R

O

21

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

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0

21I1

A

B

D

G

F

E

R 1

C

U 1

R

O

21

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

R

O

21

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

R

O

21

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

Recta d

e poten

cia

R

O

21

3

21ccI

( X1+X21)

(X1+X

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0

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A

B

D

G

F

E

R 1

C

U 1

R

O

21

3

21ccI

( X1+X21)

(X1+X

21 )

s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

Recta de cupla

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

J

K

L

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

J

K

L

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

J

K

L

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

J

K

L

010

2030

4050

6070

8090 100

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

MNP

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

MNP

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

MNP

R

O

21

3

21cc

I

( X1+X21)

(X1+X

21 ) s=1

I 0

s=0

1I

0

21I1

A

B

D

G

F

E

R 1

C

U 1

MNP

0102030405060708090100

Cup

la m

áxim

a

Pot

enci

a m

áxim

a

Cup

la d

e ar

ranq

ue

S

CP

10

Cup

la m

áxim

a

Pote

ncia

máx

ima

Cup

la d

e ar

ranq

ue

nns

CP

0

00

3cos

IU

P

l ⋅⋅=ϕ

Ensayo de vacío

OO'

o

Io

Ensayo de rotor bloqueado

CC

lCC U

UInI

⋅=

InU

P

CC

CCCC

⋅⋅=

3cosϕ

O O'

o

I CC

I o

cc

G

O O'

o

I CC

I o

cc

G

Q

O O'

o

I CC

I o

cc

G

Q H

Ensayo de rotor bloqueado

( ) ( )2211211

2

33

InP

RRRRInP CCCC ⋅

=+⇒+⋅=