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Caida de Tension San Ignacio

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  • 8/18/2019 Caida de Tension San Ignacio

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    CALCULO DE CAIDAD DE TENSION

    Programa de Cálculo de Redes de Baja Tensión

    Datos Tipo de red: Rural

    Nivel de potencia: Bajo 0.50 ! C. de T. má". total: 5.0#

    cos $: 0.%5 & ! C. de T. má". en l'nea: (.)#

    N* tramos: &+ C. de T. má". en acom.: 0.,#

    Nudo inicial Nudo $nal Tipo Tensión -/ N* clientes tramo ongitud tramo -m/

    TF1 5 'nea &1 )(0 Cu + " 2&30 4 &.5 ).

    5 'nea &1 )(0 Tr'p. &30 &) 5% (.

    4 'nea &1 )(0 Tr'p. &30 0 ).

    4 , 'nea &1 )(0 Tr'p. &30 5 &4 ).

    , &0 'nea &1 )(0 Tr'p. &30 ) )4 0.

    TF1 5 'nea &1 )(0 Cu + " 2&30 4 &.5 ).

    5 ( 'nea &1 )(0 Tr'p. &30 &0 (5 +.

    ( && 'nea &1 )(0 Tr'p. &30 5 0 ).

    && &) 'nea &1 )(0 Tr'p. &30 ( 5& &.

    TF1 5 'nea &1 )(0 Cu + " 2&30 4 &.5 ).

    5 &4 'nea &1 )(0 Tr'p. &30 , 5) ).

    &4 &, 'nea &1 )(0 Tr'p. &30 4 (0 ).

    &, &% 'nea &1 )(0 Tr'p. &30 ) +4 0.

    TF1 5 'nea &1 )(0 Cu + " 2&30 4 &.5 ).

    5 &+ 'nea &1 )(0 Tr'p. &30 , +4 ).

    &+ &( 'nea &1 )(0 Tr'p. &30 && 0 +.

    &( &5 'nea &1 )(0 Tr'p. &30 + 0 &.

    DISEÑO ELECTRIFICACION SAN IGNACIO

    'nea oacometida

     Tipo conductortramo

    Potencia-

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    Nom6re

    & Cu ) " 2 ).5(+ 0.& 55 ,.+4 2, 7!8 Co6re ) " 2,

    ) Cu + " 2 ).5(+ 0.& 55 ,.+4 2, 7!8 Co6re + " 2,

    + Cu ) " 2 &.00 0.& 45 &+.+0 2 7!8 Co6re ) " 2

    ( Cu + " 2 &.00 0.& 45 &+.+0 2 7!8 Co6re + " 2

    5 Cu + " 2 &.00 0.& %5 )&.&5 2( 7!8 Co6re + " 2(

    Cu ( " 2 &.00 0.& %5 )&.&5 2( 7!8 Co6re ( " 2(

    4 Cu + " 2 0.55( 0.& &+0 ++.+ 2) 7!8 Co6re + " 2)

    , Cu ( " 2 0.55( 0.& &+0 ++.+ 2) 7!8 Co6re ( " 2)

    % Cu + " 2 0.+4% 0.& &40 5+.5& 2&30 7!8 Co6re + " 2&30

    &0 Cu ( " 2 0.+4% 0.& &40 5+.5& 2&30 7!8 Co6re ( " 2&30

    && Cu + " 2 0.)44 0.& &%5 4.(( 2)30 7!8 Co6re + " 2)30

    &) Cu ( " 2 0.)44 0.& &%5 4.(( 2)30 7!8 Co6re ( " 2)30

    &+ Cu + " 2 0.)+% 0.& ))5 ,5.0+ 2+30 7!8 Co6re + " 2+30

    &( Cu ( " 2 0.)+% 0.& ))5 ,5.0+ 2+30 7!8 Co6re ( " 2+30

    &5 Cu + " 2 0.&,% 0.& )0 &04.)) 2(30 7!8 Co6re + " 2(30

    & Cu ( " 2 0.&,% 0.& )0 &04.)) 2(30 7!8 Co6re ( " 2(30

    &4 Cu + " 2 0.&(, 0.& )%0 &)., 2)50 9C9 Co6re + " 2)50

    &, Cu ( " 2 0.&(, 0.& )%0 &)., 2)50 9C9 Co6re ( " 2)50

    &% Cu + " 2 0.&)+ 0.& +)0 &5).0& 2+00 9C9 Co6re + " 2+00

    Nom rea6reviado

    a a 50 *C-omios3 

     in ucti

    va;ntensi a

    má" -7/

     nominal nominal -7!8

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    )0 Cu ( " 2 0.&)+ 0.& +)0 &5).0& 2+00 9C9 Co6re ( " 2+00

    )& Cu + " 2 0.&05 0.& +50 &44.+5 2+50 9C9 Co6re + " 2+50

    )) Cu ( " 2 0.&05 0.& +50 &44.+5 2+50 9C9 Co6re ( " 2+50

    )+ Cu + " 2 0.0%) 0.& +,0 )0)., 2(00 9C9 Co6re + " 2(00

    )( Cu ( " 2 0.0%) 0.& +,0 )0)., 2(00 9C9 Co6re ( " 2(00

    )5 Cu + " 2 0.04( 0.& (+0 )5+.+ 2500 9C9 Co6re + " 2500

    ) Cu ( " 2 0.04( 0.& (+0 )5+.+ 2500 9C9 Co6re ( " 2500

    )4 Cu + " 2 0.0) 0.& (45 +0(.0+ 200 9C9 Co6re + " 200

    ), Cu ( " 2 0.0) 0.& (45 +0(.0+ 200 9C9 Co6re ( " 200

    )% Cu + " 2400 0.& 2400 9C9 Co6re + " 2400

    +0 Cu ( " 2400 0.& 2400 9C9 Co6re ( " 2400

    +& Cu + " 2 0.0(% 0.& 5+5 +,0.0+ 2450 9C9 Co6re + " 2450

    +) Cu ( " 2 0.0(% 0.& 5+5 +,0.0+ 2450 9C9 Co6re ( " 2450

    ++ Cu + " 2 0.0+4 0.& &5 50.4& 2&000 9C9 Co6re + " 2&000

    +( Cu ( " 2 0.0+4 0.& &5 50.4& 2&000 9C9 Co6re ( " 2&000

    +5 Tr'p. 2) 0.%( 0.& &50 ++.) 2) 7!8 Tr'ple" 2)

    + Cuád. 2 0.%( 0.& &50 ++.) 2) 7!8 Cuádruple" 2)

    +4 Tr'p. &30 0.0( 0.& )05 5+.5& 2&30 7!8 Tr'ple" &30

    +, Cuád. 2 0.0( 0.& )05 5+.5& 2&30 7!8 Cuádruple" 2&30

    +% Tr'p. )30 0.& &,0.00 2)30 7!8 Tr'ple" )30

    (0 Cuád. 2)30 0.& &55.00 2)30 7!8 Cuádruple" 2)30

    (& Tr'p. +30 0.+,& 0.& )(0 ,5.0) 2+30 7!8 Tr'ple" +30

    () Cuád. 2 0.+,& 0.& )(0 ,5.0) 2+30 7!8 Cuádruple" 2+30

    (+ Tr'p. (30 0.+0) 0.& +00 &04.)0 2(30 7!8 Tr'ple" (30

    (( Cuád. (3 0.+0) 0.& )45 &04.)0 2(30 7!8 Cuádruple" (30

    (5 Tr'p. ++ 0.&,% 0.& +40 &40.(5 2++=( 9C9 Tr'ple" ++.(

    ( Cuád. ++ 0.&,% 0.& +40 &40.(5 2++=( 9C9 Cuádruple" ++=(

    (4 Cond. 2 ).)&( 0.& &&0 &+.)% 2, 7!8 Conductor 2 7C

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    TF1

    as secciones de los conductores son correctas

    a c.d.t. en el cond. de l'nea o en el cond. de acom. es superior a la permitida

    &&.(0( +.%0 0.00 0.0& >?@  

    &4.%,) )(&.%0 0.5+5 0.5( >?@  

    &0.0,, &+,.00 0.+05 0.,5 >?@  

    ,.44) +(.00 0.045 0.%) >?@  

    +.%(4 )(.+0 0.05( 0.97 Ok!  

    &&.(0( +.%0 0.00 0.0& >?@  

    &5.+5& &54.50 0.+(, 0.+5 >?@  

    ,.44) &)0.00 0.)5 0.) >?@  

    4.(5 ,.40 0.&%) 0.81 Ok!  

    &&.(0( +.%0 0.00 0.0& >?@  

    &).4&% &50.,0 0.+++ 0.+( >?@  

    &&.(0( &0(.00 0.)+0 0.54 >?@  

    +.%(4 ++.+0 0.04( 0.64 Ok!  

    &&.(0( +.%0 0.00 0.0& >?@

    &).4&% &04.+0 0.)+4 0.)( >?@

    &.4 )),.00 0.50( 0.45 >?@

    5.40) 4,.00 0.&4) 0.92 Ok!  

    a c.d.t. tanto en el cond. de l'nea como en el cond. de acom. es superior a lapermitida

    ;ntensidad tramo-7/

    9omento -P " /-! " m/

    C. de T. tramo-#/

    C. de T. nudo $nal-#/

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    >N8. Clientes

    48 0

    34 0

    50 451 6

    45 7

    59 12

    60 6

    17 3

    19 2

    27 2

    60 5

    51 4

    37 4

    60 7

    60 3

    50 4

    52 8

    40 3

    37 2

    26 4

    TOTAL 86

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    CALCULO DE CAIDAD DE TENSION

    Programa de Cálculo de Redes de Baja Tensión

    Datos

     Tipo de red: Rural

    Nivel de potencia: Bajo 0.&+ ! C. de T. má". total: 5.0#

    cos $: 0.%5 0 ! C. de T. má". en l'nea: (.)#

    N* tramos: &+ C. de T. má". en acom.: 0.,#

    Nudo inicial Nudo $nal Tipo Tensión -/ N* uminarias tramo ongitud tramo -m/

    TF1 5 'nea &1 )(0 Cu + " 2&30 & &.5

    5 'nea &1 )(0 Cond. 2 & 5%

    4 'nea &1 )(0 Cond. 2 & 0

    4 , 'nea &1 )(0 Cond. 2 ) &4

    , &0 'nea &1 )(0 Cond. 2 & )4

    TF1 5 'nea &1 )(0 Cu + " 2&30 & &.5

    5 ( 'nea &1 )(0 Cond. 2 ) (5

    ( && 'nea &1 )(0 Cond. 2 & 0

    && &) 'nea &1 )(0 Cond. 2 & 5&

    TF1 5 'nea &1 )(0 Cu + " 2&30 & &.5

    5 &4 'nea &1 )(0 Cond. 2 & 5)

    &4 &, 'nea &1 )(0 Cond. 2 ) (0

    &, &% 'nea &1 )(0 Cond. 2 & +4

    TF1 5 'nea &1 )(0 Cu + " 2&30 & &.5

    5 &+ 'nea &1 )(0 Cond. 2 ) +4

    &+ &( 'nea &1 )(0 Cond. 2 & 0

    &( &5 'nea &1 )(0 Cond. 2 & 0

    DISEÑO ELECTRIFICACION SAN IGNACIO

    'nea oacometida

     Tipo conductortramo

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    Nom6re

    & Cu ) " 2, ).5(+ 0.& 55 ,.+4 2, 7!8 Co6re ) " 2,

    ) Cu + " 2, ).5(+ 0.& 55 ,.+4 2, 7!8 Co6re + " 2,

    + Cu ) " 2 &.00 0.& 45 &+.+0 2 7!8 Co6re ) " 2

    ( Cu + " 2 &.00 0.& 45 &+.+0 2 7!8 Co6re + " 2

    5 Cu + " 2( &.00 0.& %5 )&.&5 2( 7!8 Co6re + " 2(

    Cu ( " 2( &.00 0.& %5 )&.&5 2( 7!8 Co6re ( " 2(

    4 Cu + " 2) 0.55( 0.& &+0 ++.+ 2) 7!8 Co6re + " 2)

    , Cu ( " 2) 0.55( 0.& &+0 ++.+ 2) 7!8 Co6re ( " 2)

    % Cu + " 2&30 0.+4% 0.& &40 5+.5& 2&30 7!8 Co6re + " 2&3

    &0 Cu ( " 2&30 0.+4% 0.& &40 5+.5& 2&30 7!8 Co6re ( " 2&3

    && Cu + " 2)30 0.)44 0.& &%5 4.(( 2)30 7!8 Co6re + " 2)3

    &) Cu ( " 2)30 0.)44 0.& &%5 4.(( 2)30 7!8 Co6re ( " 2)3

    &+ Cu + " 2+30 0.)+% 0.& ))5 ,5.0+ 2+30 7!8 Co6re + " 2+3

    &( Cu ( " 2+30 0.)+% 0.& ))5 ,5.0+ 2+30 7!8 Co6re ( " 2+3

    &5 Cu + " 2(30 0.&,% 0.& )0 &04.)) 2(30 7!8 Co6re + " 2(3

    & Cu ( " 2(30 0.&,% 0.& )0 &04.)) 2(30 7!8 Co6re ( " 2(3

    &4 Cu + " 2)50 0.&(, 0.& )%0 &)., 2)50 9C9 Co6re + " 2)

    Nom rea6reviado

    a a 50 *C-omios3 

     in ucti

    va;ntensi a

    má" -7/

     nominal nominal -7!8

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    &, Cu ( " 2)50 0.&(, 0.& )%0 &)., 2)50 9C9 Co6re ( " 2)

    &% Cu + " 2+00 0.&)+ 0.& +)0 &5).0& 2+00 9C9 Co6re + " 2+

    )0 Cu ( " 2+00 0.&)+ 0.& +)0 &5).0& 2+00 9C9 Co6re ( " 2+

    )& Cu + " 2+50 0.&05 0.& +50 &44.+5 2+50 9C9 Co6re + " 2+

    )) Cu ( " 2+50 0.&05 0.& +50 &44.+5 2+50 9C9 Co6re ( " 2+

    )+ Cu + " 2(00 0.0%) 0.& +,0 )0)., 2(00 9C9 Co6re + " 2(

    )( Cu ( " 2(00 0.0%) 0.& +,0 )0)., 2(00 9C9 Co6re ( " 2(

    )5 Cu + " 2500 0.04( 0.& (+0 )5+.+ 2500 9C9 Co6re + " 25

    ) Cu ( " 2500 0.04( 0.& (+0 )5+.+ 2500 9C9 Co6re ( " 25

    )4 Cu + " 200 0.0) 0.& (45 +0(.0+ 200 9C9 Co6re + " 2

    ), Cu ( " 200 0.0) 0.& (45 +0(.0+ 200 9C9 Co6re ( " 2

    )% Cu + " 2400 0.& 2400 9C9 Co6re + " 24

    +0 Cu ( " 2400 0.& 2400 9C9 Co6re ( " 24

    +& Cu + " 2450 0.0(% 0.& 5+5 +,0.0+ 2450 9C9 Co6re + " 24

    +) Cu ( " 2450 0.0(% 0.& 5+5 +,0.0+ 2450 9C9 Co6re ( " 24

    ++ Cu + " 2&000 0.0+4 0.& &5 50.4& 2&000 9C9 Co6re + " 2&

    +( Cu ( " 2&000 0.0+4 0.& &5 50.4& 2&000 9C9 Co6re ( " 2&

    +5 Tr'p. 2) 0.%( 0.& &50 ++.) 2) 7!8 Tr'ple" 2)

    + Cuád. 2) 0.%( 0.& &50 ++.) 2) 7!8 Cuádruple" 2

    +4 Tr'p. &30 0.0( 0.& )05 5+.5& 2&30 7!8 Tr'ple" &30

    +, Cuád. 2&30 0.0( 0.& )05 5+.5& 2&30 7!8 Cuádruple" 2

    +% Tr'p. )30 0.& &,0.00 2)30 7!8 Tr'ple" )30

    (0 Cuád. 2)30 0.& &55.00 2)30 7!8 Cuádruple" 2

    (& Tr'p. +30 0.+,& 0.& )(0 ,5.0) 2+30 7!8 Tr'ple" +30

    () Cuád. 2+30 0.+,& 0.& )(0 ,5.0) 2+30 7!8 Cuádruple" 2

    (+ Tr'p. (30 0.+0) 0.& +00 &04.)0 2(30 7!8 Tr'ple" (30

    (( Cuád. (30 0.+0) 0.& )45 &04.)0 2(30 7!8 Cuádruple" (3

    (5 Tr'p. ++.( 0.&,% 0.& +40 &40.(5 2++=( 9C9 Tr'ple" ++.(

    ( Cuád. ++=( 0.&,% 0.& +40 &40.(5 2++=( 9C9 Cuádruple" +

    (4 Cond. 2 ).)&( 0.& &&0 &+.)% 2, 7!8 Conductor 2 7

    (, Cond. 2( &.+)% 0.& &(5 )&.& 2 7!8 Conductor 2( 7

    50 Cond. 2) 0.,++ 0.& &%5 ++.& 2( 7!8 Conductor 2) 7

    5) Cond. 2&30 0.55& 0.& )55 5+.(, 2) 7!8 Conductor 2&30

    5+ Cond. 2)30 0.(+% 0.& )%5 4.() 2&30 7!8 Conductor 2)30

    5( Cond. 2+30 0.+(, 0.& +(0 ,5.0+ 2&30 7!8 Conductor 2+30

    55 Cond. 2(30 0.)4 0.& +%0 &04.)+ 2)30 7!8 Conductor 2(30

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    TF1

    as secciones de los conductores son correctas

    a c.d.t. en el cond. de l'nea o en el cond. de acom. es superior a la permitida

    0.&+ 0.540 0.)0 0.000 0.00 >?@

    0.&+ 0.540 4.4 0.00 0.0 >?@

    0.&+ 0.540 4.,0 0.0& 0.&) >?@

    0.)+ &.0) +.%, 0.0+& 0.&5 >?@

    0.&+ 0.540 +.5& 0.0)4 0.18 Ok!

    0.&+ 0.540 0.)0 0.000 0.00 >?@

    0.)+ &.0) &0.5+ 0.0,) 0.0, >?@

    0.&+ 0.540 4.,0 0.0& 0.&( >?@

    0.&+ 0.540 .+ 0.05) 0.20 Ok!

    0.&+ 0.540 0.)0 0.000 0.00 >?@

    0.&+ 0.540 .4 0.05+ 0.05 >?@

    0.)+ &.0) %.+ 0.04+ 0.&+ >?@

    0.&+ 0.540 (.,& 0.0+, 0.16 Ok!

    0.&+ 0.540 0.)0 0.000 0.00 >?@

    0.)+ &.0) ,. 0.0, 0.04 >?@

    0.&+ 0.540 4.,0 0.0& 0.&+ >?@

    0.&+ 0.540 4.,0 0.0&0.19 Ok!

    a c.d.t. tanto en el cond. de l'nea como en el cond. de acom. es superior a lapermitida

    Potencia tramo-!/

    ;ntensidad tramo-7/

    9omento -P " /-! " m/

    C. de T. tramo-#/

    C. de T. nudo $nal-#/

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    0

    0

    0

    0

    0

    0

    0

    0

    0

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    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    0

    00

    00

      )

      &30

      )30

      +30

      0

      =(

     

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    PT>N8. Clientes A9;N7R;7

    P1 48 0

    P2 34 0 &

    P3 50 4 &

    P4 51 6 &

    P5 45 7 &

    P6 59 12 &

    P7 60 6 &

    P8 17 3 &

    P9 19 2 &

    P10 27 2 &

    P11 60 5 &

    P12 51 4 &

    P13 37 4 &

    P14 60 7 &

    P15 60 3 &

    P16 50 4 &

    P17 52 8 &

    P18 40 3 &

    P19 37 2 &

    P20 26 4 &

    TOTAL 86 &%

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