{"id":3193,"date":"2023-02-03T07:19:12","date_gmt":"2023-02-03T07:19:12","guid":{"rendered":"https:\/\/3.212.105.250\/?p=3193"},"modified":"2025-01-19T14:36:05","modified_gmt":"2025-01-19T20:36:05","slug":"breve-explicacion-de-los-dos-tipos-de-sistemas-de-puesta-a-tierra","status":"publish","type":"post","link":"https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2023\/02\/03\/breve-explicacion-de-los-dos-tipos-de-sistemas-de-puesta-a-tierra\/","title":{"rendered":"Breve explicaci\u00f3n de los dos tipos de sistemas de puesta a tierra"},"content":{"rendered":"<p>En 1752, el famoso filadelfiano Benjam\u00edn Franklin se atrevi\u00f3 a hacer volar una cometa con una llave met\u00e1lica a trav\u00e9s de una tormenta el\u00e9ctrica. Un rayo cay\u00f3 sobre la llave, mostrando por primera vez ante los ojos humanos las caracter\u00edsticas brutas de la electricidad... excepto que, en realidad, la historia no es as\u00ed. Los humanos conoc\u00edan perfectamente el potencial de generaci\u00f3n de energ\u00eda de la electricidad mucho antes del vuelo de la cometa de Franklin.<\/p>\n<p>El mayor mito asociado a este folclore estadounidense es que Benjamin Franklin se agarr\u00f3 a una cometa que fue alcanzada por un rayo y sobrevivi\u00f3 para contarlo. En realidad, un rayo como \u00e9ste transportar\u00eda suficientes amperios y voltaje como para matar a un ser humano al instante. La electricidad siempre encontrar\u00e1 la ruta m\u00e1s r\u00e1pida hacia el suelo. En algunos casos, esa ruta es el cuerpo humano. Cuando esto ocurre, puede provocar una descarga el\u00e9ctrica mortal.<\/p>\n<p>La mayor\u00eda de los sistemas y aparatos el\u00e9ctricos conectados a corrientes de alta tensi\u00f3n disponen de toma de tierra el\u00e9ctrica. Queremos asegurarnos de que sus aparatos e infraestructuras el\u00e9ctricas est\u00e1n debidamente protegidos. He aqu\u00ed nuestra \u00fatil gu\u00eda y explicaci\u00f3n de los dos tipos de sistemas de puesta a tierra, c\u00f3mo funcionan, por qu\u00e9 son importantes y c\u00f3mo reconocer las complicaciones de la puesta a tierra, como el fallo a tierra.<\/p>\n<h2>Conexi\u00f3n a tierra del circuito\/sistema frente a la del equipo<\/h2>\n<p>En primer lugar, los dos tipos de sistemas de puesta a tierra son la puesta a tierra de circuitos\/sistemas y la puesta a tierra de equipos. Cada forma de puesta a tierra protege a las personas y a los aparatos el\u00e9ctricos de las complicaciones relacionadas con la alta tensi\u00f3n. Siga leyendo para conocer las diferencias entre las dos variantes.<\/p>\n<h3>Conexi\u00f3n a tierra del sistema\/circuito el\u00e9ctrico<\/h3>\n<p>Circuito\/sistema el\u00e9ctrico <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2023\/08\/11\/por-que-los-edificios-comerciales-necesitan-pruebas-de-los-sistemas-de-puesta-a-tierra\/'>la puesta a tierra protege todo el sistema de distribuci\u00f3n de energ\u00eda en los edificios<\/a>. M\u00e1s concretamente, la conexi\u00f3n a tierra del sistema salvaguarda todos <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2022\/11\/17\/como-calcular-la-capacidad-de-carga-de-un-circuito-electrico\/'>circuitos y cables de entrada de servicio conectados a la red el\u00e9ctrica<\/a> sistema de distribuci\u00f3n. Las aplicaciones residenciales comunes para la puesta a tierra de circuitos\/sistemas incluyen la puesta a tierra de electrodos y tuber\u00edas de agua. El anillo de tierra y la puesta a tierra con electrodo revestido de hormig\u00f3n se reservan para edificios industriales o comerciales.<\/p>\n<p>Estos sistemas conectan un conductor del circuito a tierra, creando una protecci\u00f3n superior contra el contacto de alto voltaje, los rayos y los incendios el\u00e9ctricos. La electricidad de alto voltaje tiene muchas m\u00e1s probabilidades de propagarse sin este conductor adicional que proporciona un paso seguro a las corrientes el\u00e9ctricas, poniendo en peligro a las personas y a los dispositivos o equipos el\u00e9ctricos.<\/p>\n<h3>Puesta a tierra del equipo el\u00e9ctrico<\/h3>\n<p>Mientras que la puesta a tierra de circuitos\/sistemas protege sistemas de distribuci\u00f3n enteros, la puesta a tierra de equipos el\u00e9ctricos ofrece una protecci\u00f3n localizada para el propio equipo. Por ejemplo, la conexi\u00f3n a tierra de los equipos el\u00e9ctricos garantiza que no sufrir\u00e1 una descarga al tocar un electrodom\u00e9stico met\u00e1lico, como un frigor\u00edfico de acero inoxidable.<\/p>\n<p>Estos sistemas funcionan con cualquier material conductor no portador de corriente (bandejas de cables, cajas de empalmes, bastidores de motores o conductos). La puesta a tierra de circuitos implica conductores portadores de corriente. Sin embargo, la funci\u00f3n \u00faltima de la puesta a tierra de equipos sigue siendo similar a la de la puesta a tierra de circuitos: proteger a los ocupantes y a los equipos de complicaciones de alta tensi\u00f3n y situaciones el\u00e9ctricas peligrosas.<\/p>\n<p>\u00bfCu\u00e1l es la diferencia clave entre estos dos sistemas de puesta a tierra? La puesta a tierra de circuitos\/sistemas protege los sistemas de distribuci\u00f3n el\u00e9ctrica y las herramientas conectadas a ellos. La puesta a tierra de equipos mejora la seguridad de los equipos para las personas. Juntos, estos sistemas de puesta a tierra salvan vidas y edificios en una gran variedad de entornos.<\/p>\n<h2>La importancia de los sistemas de puesta a tierra<\/h2>\n<p>Lo m\u00e1s probable es que a estas alturas ya resulte obvio, pero merece la pena repetir la abrumadora importancia de los sistemas de puesta a tierra. Estos circuitos de protecci\u00f3n reducen significativamente las posibilidades de <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2019\/12\/12\/causas-comunes-de-los-incendios-electricos\/'>descargas el\u00e9ctricas, incendios el\u00e9ctricos,<\/a> y otros problemas de alta tensi\u00f3n.<\/p>\n<p>Como ya se ha dicho, las corrientes el\u00e9ctricas utilizar\u00e1n el cuerpo humano como ruta hacia la tierra, causando importantes lesiones en los tejidos internos debido a los altos voltios y amperios. Los altos voltajes desencadenar\u00e1n la mayor\u00eda de los da\u00f1os corporales, mientras que los altos amperios pueden interferir con la actividad cardiaca e iniciar un paro cardiaco. Cualquier <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/areas-de-consultoria\/consultoria-forense\/ingenieria-electrica\/lesion-electrica\/'>el sistema el\u00e9ctrico debe contar con una conexi\u00f3n a tierra adecuada para evitar lesiones<\/a> y costosos da\u00f1os a las infraestructuras. Esto es v\u00e1lido para todos los edificios -comerciales, industriales, minoristas o residenciales- independientemente del tipo de ocupaci\u00f3n.<\/p>\n<h2>Complicaciones comunes de la conexi\u00f3n a tierra<\/h2>\n<p>Al igual que ocurre con los riesgos el\u00e9ctricos, es probable que experimente complicaciones asociadas a sus sistemas de puesta a tierra. Algunos problemas, como los bucles de tierra (creados por varios equipos que comparten un circuito com\u00fan) y el exceso de picas de puesta a tierra, provocan problemas de rendimiento en sus equipos el\u00e9ctricos. Otros problemas, como la falta de tomas de tierra de seguridad en los sistemas el\u00e9ctricos o los fallos de conexi\u00f3n a tierra, pueden da\u00f1ar considerablemente a las personas y los edificios.<\/p>\n<p>Los fallos de conexi\u00f3n a tierra pueden obstaculizar la productividad y el \u00e9xito general de una empresa y da\u00f1ar permanentemente equipos el\u00e9ctricos costosos. Se recomienda encarecidamente que los electricistas profesionales realicen inspecciones peri\u00f3dicas (o tras notar problemas de funcionamiento o una emergencia el\u00e9ctrica) para garantizar <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2023\/08\/11\/por-que-los-edificios-comerciales-necesitan-pruebas-de-los-sistemas-de-puesta-a-tierra\/'>los sistemas el\u00e9ctricos de los edificios comerciales est\u00e9n correctamente conectados a tierra<\/a>.<\/p>\n<h2>La central el\u00e9ctrica de Pearl Street: Primeras pr\u00e1cticas de puesta a tierra de circuitos<\/h2>\n<p>Ahora que entiende las diferencias y la importancia general de los sistemas de puesta a tierra, conozcamos sus or\u00edgenes, concretamente la puesta a tierra de los sistemas el\u00e9ctricos. Los sistemas el\u00e9ctricos complejos se inventaron por primera vez en 1882 con la central el\u00e9ctrica de Pearl Street de Thomas Edison en la ciudad de Nueva York. Esta central el\u00e9ctrica suministraba energ\u00eda suficiente para alimentar 5.000 l\u00e1mparas en 85 clientes de Manhattan. Y lo que es m\u00e1s importante, contaba con una versi\u00f3n temprana de un electrodo de puesta a tierra que devolv\u00eda las corrientes negativas a la dinamo de 110 V accionada por vapor de la central.<\/p>\n<p>Los dise\u00f1os de Edison eran defectuosos. Su enfoque flotante permit\u00eda que las corrientes continuas fluyeran libremente por los edificios conectados e incluso por el vecindario circundante. Un informe afirmaba que un caballo sufri\u00f3 una peque\u00f1a descarga el\u00e9ctrica al caminar sobre un trozo de suelo electrificado cerca de la estaci\u00f3n de Pearl Street. El famoso inventor estadounidense volvi\u00f3 a la mesa de dibujo y cre\u00f3 una soluci\u00f3n superior. En lugar de utilizar una sola v\u00eda para las corrientes de retorno, Edison dividi\u00f3 su sistema de conexi\u00f3n a tierra en dos puntos, cada uno responsable de las corrientes de salida o de retorno. Al final, su sistema de tres cables <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2020\/06\/18\/ejemplos-de-servicios-de-diseno-de-ingenieria-electrica\/'>dise\u00f1o se adopt\u00f3 como norma para la<\/a> distribuci\u00f3n en viviendas y edificios residenciales.<\/p>\n<p>Puede asegurarse de que su edificio comercial, industrial, minorista, residencial o de otro tipo de ocupaci\u00f3n est\u00e1 a salvo de graves peligros el\u00e9ctricos con esta breve explicaci\u00f3n de los dos tipos de sistemas de toma de tierra. Contratar calidad\u00a0<a href=\"https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/servicios\/energia-electrica\/pruebas-del-sistema-de-puesta-a-tierra\/\">empresas de ensayos sobre el terreno<\/a>\u00a0es esencial, tanto si va a iniciar un nuevo proyecto de construcci\u00f3n como si necesita un examen de los sistemas el\u00e9ctricos existentes. Por suerte, nuestro amable equipo de Dreiym Engineering cuenta con la experiencia, los conocimientos y el equipo necesarios para ayudarle a comprender sus sistemas el\u00e9ctricos.<\/p>\n<p>Nuestras capacidades de ensayo en tierra incluyen lo siguiente:<\/p>\n<ul>\n<li>Lecturas con pinza<\/li>\n<li>M\u00e9todos de dos clavijas<\/li>\n<li>M\u00e9todos de ca\u00edda del potencial<\/li>\n<li>Interferencia de la protecci\u00f3n cat\u00f3dica<\/li>\n<li>Pruebas generales de los sistemas existentes<\/li>\n<\/ul>\n<p>Estos <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/areas-de-consultoria\/consultoria-forense\/incendio-explosion\/servicios-de-investigacion-de-incendios-de-vehiculos-electricos\/'>servicios garantizan la calidad y funcionalidad de sus<\/a> equipos y reducir el deterioro y las complicaciones mayores y costosas. Y lo que es m\u00e1s importante, nuestros servicios se realizan bajo las directrices del C\u00f3digo El\u00e9ctrico Nacional. P\u00f3ngase en contacto con nosotros hoy mismo para obtener m\u00e1s informaci\u00f3n sobre la toma de tierra <a href='https:\/\/vm6fr4whzn6.c.updraftclone.com\/es\/2023\/05\/17\/4-metodologias-de-ensayo-de-la-proteccion-catodica\/'>pruebas y protecci\u00f3n el\u00e9ctrica relacionada<\/a> procesos.<\/p>\n<img decoding=\"async\" class=\"aligncenter wp-image-3908 size-full\" src=\"https:\/\/vm6fr4whzn6.c.updraftclone.com\/wp-content\/uploads\/2023\/02\/grounding-systems.jpg\" alt=\"\" width=\"880\" height=\"2000\" srcset=\"https:\/\/vm6fr4whzn6.c.updraftclone.com\/wp-content\/uploads\/2023\/02\/grounding-systems.jpg 880w, https:\/\/vm6fr4whzn6.c.updraftclone.com\/wp-content\/uploads\/2023\/02\/grounding-systems-132x300.jpg 132w, https:\/\/vm6fr4whzn6.c.updraftclone.com\/wp-content\/uploads\/2023\/02\/grounding-systems-768x1745.jpg 768w, https:\/\/vm6fr4whzn6.c.updraftclone.com\/wp-content\/uploads\/2023\/02\/grounding-systems-676x1536.jpg 676w\" sizes=\"(max-width: 880px) 100vw, 880px\" \/>","protected":false},"excerpt":{"rendered":"<p>In 1752, famed Philadelphian Benjamin Franklin boldly flew a kite with a metal key on it through a thunderstorm. Lightning struck the key, displaying the raw characteristics of electricity in front of human eyes for the very first time\u2014except, this isn\u2019t really how the story goes. Humans were well aware of the power generation potential [&hellip;]<\/p>\n","protected":false},"author":8,"featured_media":3296,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_mbp_gutenberg_autopost":false,"_pgmb_is_evergreen":true,"_pgmb_ap_template_id":0,"iawp_total_views":334,"footnotes":""},"categories":[4],"tags":[],"class_list":["post-3193","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-electrical"],"acf":[],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO Pro 4.9.6.2 - aioseo.com -->\n\t<meta name=\"description\" content=\"In 1752, famed Philadelphian Benjamin Franklin boldly flew a kite with a metal key on it through a thunderstorm. 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