La importancia de disponer de una instalación eléctrica adecuada en una construcción sostenible.
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Transcript of La importancia de disponer de una instalación eléctrica adecuada en una construcción sostenible.
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La Importancia de disponer de una Instalación Eléctrica adecuada en una Construcción Sostenible I.E. Frederick Orloff Bogotá, Colombia, Septiembre de 2015
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Par Galvánico – Corrosión Galvánica
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110 – 5 Conductores
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Los conductores normalmente utilizados para transportar corriente deben ser de cobre, a no ser que en este Código se indique otra cosa.
Si no se especifica el material del conductor, el material y los calibres que se den en este código se deben aplicar como si fueran conductores de cobre.
Si se utilizan otros materiales, los calibres se deben cambiar conforme a su equivalencia.
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10 | Instalaciones Seguras
Funcionamiento de un equipo por encima de sus parámetros normales a plena carga o de un conductor por encima de su capacidad de corriente nominal que, si persiste durante un tiempo suficiente, podría causar daños o un calentamiento peligroso.
Una falla como un cortocircuito o una falla a tierra no es una sobrecarga.
Sobrecarga
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Funcionamiento de un equipo por encima de sus parámetros normales a plena carga o de un conductor por encima de su capacidad de corriente nominal que, si persiste durante un tiempo suficiente, podría causar daños o un calentamiento peligroso.
Una falla como un cortocircuito o una falla a tierra no es una sobrecarga.
Sobrecarga
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Sobrecorriente
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Corriente por encima de la corriente nominal de un equipo o de la capacidad de corriente de un conductor.
Puede ser el resultado de una sobrecarga, un cortocircuito o una falla a tierra.
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Capacidad Interruptiva
13
La corriente máxima, a tensión nominal, que un dispositivo eléctrico tiene previsto interrumpir bajo condiciones normalizadas de ensayo.
Una capacidad común para un interruptor automático es de 10.000 amperios o 10 kA.
Las capacidades nominales de los soportes que aseguran las barras conductoras de los páneles y tableros de distribución están relacionadas, puesto que grandes corrientes de falla producen esfuerzos mecánicos significativos que tienden a causar que los conductores se muevan en sentidos opuestos, en algunos casos de manera violenta.
Las barras conductoras, los tableros de distribución y demás elementos asociados deben tener capacidades nominales de corriente de cortocircuito al menos equivalentes a las capacidades nominales de los dispositivos de sobrecorriente instalados.
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Capacidad Interruptiva
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Capacidad Interruptiva
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Límites de Temperatura
16
La temperatura nominal asociada a la capacidad de corriente de un conductor, se debe elegir y coordinar de modo que no supere la temperatura nominal mínima (más baja) de cualquier terminación, conductor o dispositivo conectado.
Los conductores con temperatura nominal superior a la especificada para las terminaciones, se pueden usar mediante ajuste o corrección de su capacidad de corriente, o ambas cosas.
(1) Disposiciones para Equipos. La determinación de las disposiciones para los equipos se basará en 110.14 (C) (1) (a) o (C) (1) (b). A menos que el equipo está listado y marcado de otra forma, el ampacity de las terminaciones de los conductores terminación equipos se basará en la Tabla 310.15 (B) (16) modificadas apropiadamente de la tabla 310.16.
A) Lo establecido para las terminaciones de los equipos para circuitos de 100 A nominales o menos, o marcados para conductores 2,08 mm2 (14 AWG) a 42,2 mm2 (1AWG), se debe aplicar sólo uno de los siguientes:
1. Conductores certificados para 60 °C.
2. Conductores con valores de temperatura más altas, siempre que el ampacity de estos conductores se determine sobre la base de 60 ° C (140 ° F) del tamaño del conductor utilizado.
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Límites de Temperatura
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20 | Instalaciones Seguras
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23 | Instalaciones Seguras
Bandejas Portacable
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26 | Instalaciones Seguras
Cálculos - Eficiencia
Cuánta corriente pueden transportar 20 conductores que van por un mismo ducto cerrado, para un conductor que el sólo pueda transportar 95 Amperios, en una instalación Interna, si la temperatura ambiente es de 41ºC
2 AWG – 95 amperios Temperatura – 95 x 0.71 = 67 amperios 20 conductores – 67 x 0.5 = 33.5 amperios
Cuánta corriente pueden transportar 20 conductores que van por una bandeja portacable, para un conductor que el sólo pueda transportar 95 Amperios, en una instalación Interna, si la temperatura ambiente es de 41ºC
4 AWG – 95 amperios Temperatura – 95 x 0.71 = 67 amperios
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27 | Instalaciones Seguras
Electrobarras
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28 | Instalaciones Seguras
Electrobarras
CUBIERTA
SALIDAS 13o. PISO
SALIDAS 12o. PISO
SALIDAS 11o. PISO
SALIDAS 10o. PISO
SALIDAS 9o. PISO
SALIDAS 8o. PISO
SALIDAS 7o. PISO
SALIDAS 6o. PISO
SALIDAS 5o. PISO
SALIDAS 4o. PISO
SALIDAS 3o. PISO
SALIDAS 2o. PISO
SALIDAS 1o. PISO
MEZANINE
SALIDAS 14o. PISOPISO ASCENSORMAQUINAS
L-2L-1SG1
704703702
L-3 L-4 L-5
701 705 706 707 708 709
804803802801 805 806 807 808 809
903902901 904 905 906
110311021101 1104 1105 1106
1001 AA1001 1002 1002 AA
12 12 AA(1) 12 AA(2)
SOC SOC AA
ASC2ASC1 ASC3 AA
TABLERO PRINCIPAL
2" 1 1/4" 2"1 1/4"
2" 1 1/2"
2" 2" 2"
1 1/2" 1 1/4" 1 1/4" 1 1/4" 1 1/4" 1 1/2"
1 1/4" 1 1/2" 1 1/4" 2"
1 1/2" 1 1/4" 1 1/4" 1 1/4" 1 1/4" 1 1/2"
1 1/2"
1 1/2"
1 1/4" 1 1/4" 1 1/4"
1 1/4"1 1/4"1 1/4" 1 1/4" 1 1/4" 1 1/4" 1 1/4"1 1/2"
1 1/2"1 1/4" 1 1/4" 1 1/4" 1 1/4"
1 1/2" 1" 1" 1" 1" 1 1/4"
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29 | Instalaciones Seguras
Límites de Temperatura – 110-14
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30 | Instalaciones Seguras
Límites de Temperatura – 110-14
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31 | Instalaciones Seguras
Límites de Temperatura – 110-14
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32 | Instalaciones Seguras
Límites de Temperatura – 110-14
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33 | Instalaciones Seguras
Límites de Temperatura – 110-14
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34 | Instalaciones Seguras
Límites de Temperatura – 110-14
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35 | Instalaciones Seguras
Límites de Temperatura – 110-14
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36 | Instalaciones Seguras
Límites de Temperatura – 110-14
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37 | Instalaciones Seguras
Límites de Temperatura – 110-14
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38 | Instalaciones Seguras
Límites de Temperatura – 110-14
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39 | Instalaciones Seguras
Límites de Temperatura – 110-14
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40 | Instalaciones Seguras
GFCI – 210-8
Los circuitos GFCI para protección de las personas, deben estar instalados en lugares fácilmente accesibles.
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41 | Instalaciones Seguras
GFCI – 210-8
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42 | Instalaciones Seguras
GFCI – 210-8
(A) Unidades de Vivienda. Todos los tomacorrientes monofásicos de 125 voltios, 15 y 20 amperios instalados en los sitios enunciados a continuación, deben tener interrruptores con protección de falla a tierra para protección personal.
(1) Baños
(2) Garajes
(3) Exteriores
(4) Espacios de ventilación
(5) Sótanos
(6) Cocinas
(7) Lavaderos, fregaderos, sumideros, ….
(8) Casas flotantes
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43 | Instalaciones Seguras
GFCI – 210-8
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44 | Instalaciones Seguras
GFCI – 210-8
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45 | Instalaciones Seguras
GFCI – 210-8
(A) (2). Garajes.
Garajes, así como los sótanos (que no sean cuartos habitables), áreas de almacenamiento, áreas de trabajo y áreas de uso similar.
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46 | Instalaciones Seguras
GFCI – 210-8
Exteriores.
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47 | Instalaciones Seguras
GFCI – 210-8
(A)(6) Cocinas.
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48 | Instalaciones Seguras
GFCI – 210-8
(7) Lavaplatos. Lavaplatos (diferentes de los de las cocinas). Cuando los tomacorrientes estén instalados para servir artefactos situados a menos de 1,8 m del borde exterior del lavaplatos.
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49 | Instalaciones Seguras
GFCI – 210-8
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50 | Instalaciones Seguras
GFCI – 210-8
(10) Áreas de Lavandería
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51 | Instalaciones Seguras
GFCI – 210-8
(B) Edificaciones que no sean viviendas. Todos los tomacorrientes de 125 voltios, 15 y 20 amperios instalados en los sitios enunciados a continuación, deben tener interruptores con protección de falla a tierra para protección personal.
(1) Baños
(2) Cocinas
(3) Techos
(4) Exteriores
(5) Lavaderos, fregaderos, sumideros, ….
(6) Sitios húmedos internos
(7) Vestuarios con duchas
(8) Garajes, áreas de servicios, y áreas similares donde se requieran herramientas eléctricas de mano o equipos de iluminación portátiles.
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52 | Instalaciones Seguras
GFCI – 210-8
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53 | Instalaciones Seguras
GFCI – 210-8
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54 | Instalaciones Seguras
GFCI – 210-8
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55 | Instalaciones Seguras
GFCI – 210-8
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56 | Instalaciones Seguras
GFCI – 210-8
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GFCI – 210-8
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58 | Instalaciones Seguras
(A) Unidades de Vivienda.
Todos los circuitos monofásicos de 120 voltios, de 15 o 20 amperios que alimenten las salidas de tomacorrientes instaladas en habitaciones, comedores, salas de estar, salones, bibliotecas, terrazas, cuartos de recreación, closets, corredores, o cuartos similares, deben ser protegidos por un arc-fault circuit-interrupter aprobado o una combinación de estos elementos, para suministrar protección del circuito ramal.
210.12. Arc-Fault Circuit-Interrupter
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59 | Instalaciones Seguras
210.12. Arc-Fault Circuit-Interrupter
Instalaciones Eficientes y Seguras
Instalaciones Eficientes y Seguras
Gracias por su tiempo….!!!
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