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Nombres: Yang Steven Gomez Matiz                 Curso: 85
          Nelson Buitrago Gallego

Voltaje Linea – Linea: 208 R=15 Ω y L=100*10-3

   1. CARGA EN ESTRELLA RESISTIVA BALANCEADA
INTENSIDAD PROMEDIO

FORMAS DE ONDA CORRIENTE
2. CARGA ESTRELLA RL BALANCEADA
RL-GRAFICA DE CORRIENTE
3. CARGA EN DELTA RESISTIVA BALANCEADO
FORMA DE ONDA DE LA CORRIENTE
4.CARGA EN DELTA RL BALANCEADO
FORMA DE ONDA DE LA CORRIENTE
5. Carga en estrella resistiva desbalanceada

Voltaje Linea – Linea: 208




Series RLC Branch : 15Ω
Series RLC Branch : 10Ω
Series RLC Branch : 5Ω
6. Carga en estrella RL desbalanceada

   Series RLC Branch : 15Ω       Series RLC Branch : 100*10-3
   Series RLC Branch : 10Ω       Series RLC Branch : 10*10-3
   Series RLC Branch : 5Ω        Series RLC Branch : 1000*10-3
7. C
   a
rga en delta resistiva desbalanceada
8. Carga en delta RL desbalanceada




   Series RLC Branch : 15Ω      Series RLC Branch : 100*10-3
   Series RLC Branch : 10Ω      Series RLC Branch : 10*10-3
   Series RLC Branch : 5Ω       Series RLC Branch : 1000*10-3
COMPROBACION TEORICA DE LA CONEXIÓN RESISTIVA DELTA BALANCEADA.



PARA EL SISTEMA:

R=15Ω

TENSION: 208 VL



PRIMERO HALLAMOS LA CORRIENTE DE LINEA, COMO VL =VF, TENEMOS:

IL=IF

IF=

        208
IF 
        15

I F  13,86 A

IF CALCULADA EN MATLAB (A)                IF CALCULADA TEÓRICAMENTE    (A)

13.98                                     13,86




APROXIMADAMENTE TENEMOS EL MISMO VALOR.

PARA HALLAR POTENCIA EN AMBOS CASOS SE VA A CALCULAR LA IL TEÓRICAMENTE.

SEGÚN LOS DATOS DEL SOFTWARE MATLAB:

I L  3 *13.98
I L  24,21 A

AHORA:

P  3VICOS

P  3 * 208 * 24.21 *1
P  8.72 KW
AHORA SEGÚN LOS DATOS TEÓRICOS

I L  3 *13.86
I L  24 A

P  3VICOS

P  3 * 208 * 24 *1
P  8.64 KW



POTENCIA SEGÚN DATOS MATLAB (KW)       POTENCIA SEGÚN DATOS TEÓRICOS (KW)

8,72                                   8,64



LOS RESULTADOS SON APROXIMADAMENTE IGUALES.

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Lab1

  • 1. Nombres: Yang Steven Gomez Matiz Curso: 85 Nelson Buitrago Gallego Voltaje Linea – Linea: 208 R=15 Ω y L=100*10-3 1. CARGA EN ESTRELLA RESISTIVA BALANCEADA
  • 3. 2. CARGA ESTRELLA RL BALANCEADA
  • 5. 3. CARGA EN DELTA RESISTIVA BALANCEADO
  • 6. FORMA DE ONDA DE LA CORRIENTE
  • 7. 4.CARGA EN DELTA RL BALANCEADO
  • 8. FORMA DE ONDA DE LA CORRIENTE
  • 9. 5. Carga en estrella resistiva desbalanceada Voltaje Linea – Linea: 208 Series RLC Branch : 15Ω Series RLC Branch : 10Ω Series RLC Branch : 5Ω
  • 10.
  • 11. 6. Carga en estrella RL desbalanceada Series RLC Branch : 15Ω Series RLC Branch : 100*10-3 Series RLC Branch : 10Ω Series RLC Branch : 10*10-3 Series RLC Branch : 5Ω Series RLC Branch : 1000*10-3
  • 12. 7. C a
  • 13. rga en delta resistiva desbalanceada
  • 14. 8. Carga en delta RL desbalanceada Series RLC Branch : 15Ω Series RLC Branch : 100*10-3 Series RLC Branch : 10Ω Series RLC Branch : 10*10-3 Series RLC Branch : 5Ω Series RLC Branch : 1000*10-3
  • 15.
  • 16. COMPROBACION TEORICA DE LA CONEXIÓN RESISTIVA DELTA BALANCEADA. PARA EL SISTEMA: R=15Ω TENSION: 208 VL PRIMERO HALLAMOS LA CORRIENTE DE LINEA, COMO VL =VF, TENEMOS: IL=IF IF= 208 IF  15 I F  13,86 A IF CALCULADA EN MATLAB (A) IF CALCULADA TEÓRICAMENTE (A) 13.98 13,86 APROXIMADAMENTE TENEMOS EL MISMO VALOR. PARA HALLAR POTENCIA EN AMBOS CASOS SE VA A CALCULAR LA IL TEÓRICAMENTE. SEGÚN LOS DATOS DEL SOFTWARE MATLAB: I L  3 *13.98 I L  24,21 A AHORA: P  3VICOS P  3 * 208 * 24.21 *1 P  8.72 KW
  • 17. AHORA SEGÚN LOS DATOS TEÓRICOS I L  3 *13.86 I L  24 A P  3VICOS P  3 * 208 * 24 *1 P  8.64 KW POTENCIA SEGÚN DATOS MATLAB (KW) POTENCIA SEGÚN DATOS TEÓRICOS (KW) 8,72 8,64 LOS RESULTADOS SON APROXIMADAMENTE IGUALES.