IEEE Power & Energy - Spanish - May/June 2018 - 102

A medida que aumentaban las ten-
siones, el interruptor desionizador se
creaba como montaje de un bloque de
redes por separado que se insertaba en
la estructura principal de apoyo tubular
del interruptor como unidades separa-
das. esto generaba un interruptor que
podía incluir distintos bloques de redes
y contactos del interruptor asociado en

serie, formando así el montaje comple-
to de un interruptor de rupturas múlti-
ples. se muestra un bloque de redes en
el gráfico 6 que se monta en ensambles
de interruptores como se muestra en el
gráfico  7, que representa un conjunto
de estos interruptores para aplicarlos a
distintas tensiones de hasta 345 kV y
corrientes de interrupción de 63 kA.

making life visibly safer
gráfico 4. Red desionizante de un
interruptor de 69 kV. (Del Boletín
Descriptivo de Westinghouse 33-252,
enero de 1961.)

SpanLite

TM

Self-Illuminated
Power Line Marker

las placas de fibra son únicas para
esta aplicación, dado que el material
es de combustión limpia, lo que signi-
fica que las altas temperaturas del arco
no generaban carbonización, sino que
mantenían sus características aislantes.
la descomposición de la fibra también
producía gases para mejorar la desioni-
zación. el uso de contactos (plata-
tungsteno) resistentes al arco reducía la
contaminación del espacio del arco con
gases ionizados.

Meets FAA Advisory
Circular 70/7460-1L
(Dec. 2015)
Installs directly on
live lines up to 500 kV

Un impulso hacia
tensiones y corrientes más
altas

102

ieee power & energy magazine

Bird
Diverters

LED Obstruction
Lights

Low Line
Flags & Markers

making life visibly safer
800-722-8078 * pr-tech.com

mayo/junio 2018

6709

A tensiones y corrientes más altas del
interruptor, se modificaba el interrup-
tor de ruptura única agregando una
segunda ruptura o una ruptura gene-
radora de presión en serie con la prin-
cipal ruptura de interrupción. estos
contactos se ubicaban en una cámara
separada, también conocida como "cá-
mara de explosión", y el arco generaba
presión para forzar el flujo de aceite en
las vías de las placas de fibra de la red
del interruptor y en el espacio de ar-
queado, mejorando la desionización y
la interrupción. este tipo de interruptor
se muestra en el gráfico 5 y se aplicaba
a 138 kV.


http://www.pr-tech.com

Table of Contents for the Digital Edition of IEEE Power & Energy - Spanish - May/June 2018

Contenidos
IEEE Power & Energy - Spanish - May/June 2018 - Cover1
IEEE Power & Energy - Spanish - May/June 2018 - Cover2
IEEE Power & Energy - Spanish - May/June 2018 - Contenidos
IEEE Power & Energy - Spanish - May/June 2018 - 2
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IEEE Power & Energy - Spanish - May/June 2018 - Cover3
IEEE Power & Energy - Spanish - May/June 2018 - Cover4
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