{"id":27529,"date":"2022-06-23T08:58:55","date_gmt":"2022-06-23T14:58:55","guid":{"rendered":"https:\/\/otech.uaeh.edu.mx\/noti\/?p=27529"},"modified":"2022-06-23T08:58:55","modified_gmt":"2022-06-23T14:58:55","slug":"la-turbina-marina-kairyu-de-japon-cosechara-el-poder-interminable-de-las-corrientes-oceanicas-profundas","status":"publish","type":"post","link":"https:\/\/otech.uaeh.edu.mx\/noti\/energias-alternas\/la-turbina-marina-kairyu-de-japon-cosechara-el-poder-interminable-de-las-corrientes-oceanicas-profundas\/","title":{"rendered":"La turbina marina Kairyu de Jap\u00f3n cosechar\u00e1 el poder interminable de las corrientes oce\u00e1nicas profundas"},"content":{"rendered":"<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Hace poco m\u00e1s de un a\u00f1o, una empresa escocesa llamada\u00a0<a style=\"color: #000000;\" href=\"https:\/\/orbitalmarine.com\/\">Orbital Marine Power<\/a>\u00a0estaba poniendo en marcha una\u00a0<a style=\"color: #000000;\" href=\"https:\/\/singularityhub.com\/2021\/04\/30\/this-powerful-tidal-turbine-will-power-2000-homes-in-the-uk\/\">turbina mareomotriz<\/a>\u00a0de dos megavatios en el Mar del Norte.\u00a0Se\u00a0<a style=\"color: #000000;\" href=\"https:\/\/orbitalmarine.com\/orbital-marine-power-launches-o2\/\">esperaba<\/a>\u00a0que el sistema generara suficiente electricidad para alimentar alrededor de 2000 hogares escoceses y compensar 2200 toneladas de CO2 al a\u00f1o.<!--more--><\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Mientras tanto, una turbina oce\u00e1nica similar llamada Kairyu ya estaba en el agua frente a la costa de Jap\u00f3n, experimentando una prueba de tres a\u00f1os para aprovechar el poder de las corrientes oce\u00e1nicas profundas.\u00a0El juicio se consider\u00f3 un \u00e9xito y se detall\u00f3 en un\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.bloomberg.com\/news\/features\/2022-05-30\/japan-s-deep-ocean-turbine-trial-offers-hope-of-phasing-out-fossil-fuels#xj4y7vzkg\">informe publicado<\/a>\u00a0recientemente por\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.bloomberg.com\/news\/features\/2022-05-30\/japan-s-deep-ocean-turbine-trial-offers-hope-of-phasing-out-fossil-fuels#xj4y7vzkg\"><em>Bloomberg .<\/em><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Las turbinas oce\u00e1nicas son esencialmente una versi\u00f3n submarina de las turbinas e\u00f3licas, que funcionan de la misma manera;\u00a0el movimiento del agua, ya sea por mareas o corrientes, hace girar las aspas que est\u00e1n unidas a un rotor, girando el rotor y alimentando un generador.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">La\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.nsenergybusiness.com\/features\/worlds-biggest-tidal-power-plants\">planta de energ\u00eda mareomotriz m\u00e1s grande<\/a>\u00a0del mundo es la estaci\u00f3n Sihwa Lake en Corea del Sur, que tiene una capacidad de 254 megavatios (MW), seguida de una estaci\u00f3n de 240MW en La Rance, Francia (esta es tambi\u00e9n la planta mareomotriz m\u00e1s antigua del mundo, construida entre 1961 -1966).<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Ambas plantas usan lo que se llama una presa, que es una pared submarina larga (la presa en la\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.nsenergybusiness.com\/features\/worlds-biggest-tidal-power-plants\">planta de La Rance<\/a>\u00a0, por ejemplo, tiene 476 pies de largo) con compuertas que se abren y cierran con las mareas de una manera que capitaliza su producci\u00f3n de energ\u00eda. potencial.\u00a0Esta configuraci\u00f3n funciona bien para generar grandes cantidades de energ\u00eda con m\u00faltiples turbinas;\u00a0El lago Sihwa tiene 10 turbinas y La Rance tiene 24.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Kairyu funciona un poco diferente.\u00a0La turbina de 330 toneladas est\u00e1 dise\u00f1ada para recolectar energ\u00eda de las corrientes oce\u00e1nicas (a diferencia de las mareas).\u00a0El sistema se compone de tres c\u00e1psulas cil\u00edndricas conectadas.\u00a0La c\u00e1psula del medio, que se encuentra varios pies m\u00e1s alta que las de ambos lados, tiene un conector para el transmisor de energ\u00eda, as\u00ed como un dispositivo para ajustar la flotabilidad, es decir, para permitir que la matriz se mueva a aguas m\u00e1s profundas o menos profundas y, por lo tanto, aprovechar las variaciones. en los puntos m\u00e1s fuertes de la corriente.<\/span><\/p>\n<figure id=\"attachment_146877\" class=\"wp-caption alignnone\" style=\"text-align: justify;\" aria-describedby=\"caption-attachment-146877\"><span style=\"color: #000000;\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-146877 size-large\" src=\"https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-900x501.jpg\" sizes=\"auto, (max-width: 696px) 100vw, 696px\" srcset=\"https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-900x501.jpg 900w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-300x167.jpg 300w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-768x428.jpg 768w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-696x387.jpg 696w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-1068x595.jpg 1068w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy-754x420.jpg 754w, https:\/\/singularityhub.com\/wp-content\/uploads\/2022\/06\/Kairyu-tidal-turbine-ocean-generator-energy.jpg 1191w\" alt=\"\" width=\"696\" height=\"387\" \/><\/span><figcaption id=\"caption-attachment-146877\" class=\"wp-caption-text\"><span style=\"color: #000000;\"><em>Descripci\u00f3n general del sistema de demostraci\u00f3n de clase Kairyu de 100 kW.\u00a0Cr\u00e9dito de la imagen: Corporaci\u00f3n IHI<\/em><\/span><\/figcaption><\/figure>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Las c\u00e1psulas a ambos lados tienen palas de turbina en un extremo que miden 36 pies de largo y giran en direcciones opuestas para estabilizar la posici\u00f3n del generador bajo el agua.\u00a0Tambi\u00e9n contienen cada uno un generador, un controlador y varios instrumentos de medici\u00f3n.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Kairyu estar\u00e1 anclado al lecho marino, con sus c\u00e1psulas flotando a unos 160 pies por debajo de la superficie del agua.\u00a0El sistema se asentar\u00e1 a lo largo de la corriente de Kuroshio, una de las\u00a0<a style=\"color: #000000;\" href=\"https:\/\/earthhow.com\/ocean-currents\/\">corrientes oce\u00e1nicas<\/a>\u00a0m\u00e1s grandes del mundo.\u00a0Comienza al este de Filipinas y fluye hacia el noreste pasando por Taiw\u00e1n y Jap\u00f3n.\u00a0El ocean\u00f3grafo Steven Jayne\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.earthdata.nasa.gov\/learn\/sensing-our-planet\/probing-the-black-current\">lo describi\u00f3<\/a>\u00a0como \u201cla corriente m\u00e1s fuerte del Oc\u00e9ano Pac\u00edfico, y tambi\u00e9n una de las regiones de intercambio de calor aire-mar m\u00e1s intensas del mundo.\u00a0Influye en el clima hasta en Am\u00e9rica del Norte\u201d.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">La corriente fluye a una velocidad de 2,5 metros (8,2 pies) por segundo, y el per\u00edodo de prueba de Kairyu demostr\u00f3 que el sistema de turbina mareomotriz pod\u00eda generar constantemente 100 kilovatios de energ\u00eda (50 por unidad de turbina) con una velocidad de flujo de tres nudos (eso es aproximadamente 3,45\u00a0<a style=\"color: #000000;\" href=\"https:\/\/oceanservice.noaa.gov\/facts\/nautical-mile-knot.html\">millas n\u00e1uticas<\/a>\u00a0por hora).\u00a0Debido a que las corrientes oce\u00e1nicas no cambian mucho de velocidad o direcci\u00f3n, los sistemas como Kairyu podr\u00edan generar energ\u00eda alrededor del 70 por ciento del tiempo en comparaci\u00f3n con fuentes m\u00e1s intermitentes como la e\u00f3lica terrestre (29 por ciento) y la solar (15 por ciento).\u00a0La Organizaci\u00f3n de Desarrollo de Tecnolog\u00eda Industrial y Nuevas Energ\u00edas de Jap\u00f3n\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.bloomberg.com\/news\/features\/2022-05-30\/japan-s-deep-ocean-turbine-trial-offers-hope-of-phasing-out-fossil-fuels#xj4y7vzkg\">estima<\/a>\u00a0que esta corriente podr\u00eda generar hasta 200 gigavatios de energ\u00eda confiable.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Al ser una naci\u00f3n insular, parece l\u00f3gico que Jap\u00f3n aproveche las corrientes oce\u00e1nicas para obtener energ\u00eda;\u00a0seg\u00fan Ken Takagi, profesor de pol\u00edtica de tecnolog\u00eda oce\u00e1nica en la Escuela de Graduados de Ciencias Fronterizas de la Universidad de Tokio, hay m\u00e1s potencial para la energ\u00eda de turbinas de corrientes oce\u00e1nicas que para la energ\u00eda e\u00f3lica marina en el \u00e1rea.\u00a0\u201cLas corrientes oce\u00e1nicas tienen una ventaja en t\u00e9rminos de su accesibilidad en Jap\u00f3n\u201d,\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.bloomberg.com\/news\/features\/2022-05-30\/japan-s-deep-ocean-turbine-trial-offers-hope-of-phasing-out-fossil-fuels#xj4y7vzkg\">dijo a\u00a0<em>Bloomberg<\/em><\/a><em>\u00a0.\u00a0<\/em>\u201cLa energ\u00eda e\u00f3lica es geogr\u00e1ficamente m\u00e1s adecuada para Europa, que est\u00e1 expuesta a los vientos predominantes del oeste y se encuentra en latitudes m\u00e1s altas\u201d.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\">Los japoneses esperan que la energ\u00eda del oc\u00e9ano contribuya significativamente a las reservas de energ\u00eda renovable del pa\u00eds y lo ayude a cumplir su objetivo de\u00a0<a style=\"color: #000000;\" href=\"https:\/\/www.mckinsey.com\/business-functions\/sustainability\/our-insights\/how-japan-could-reach-carbon-neutrality-by-2050\">cero emisiones netas de carbono<\/a>\u00a0para 2050. La construcci\u00f3n de las l\u00edneas de transmisi\u00f3n sumergidas que transportar\u00e1n la energ\u00eda que genera Kairyu a la red no ser\u00e1 proyecto peque\u00f1o, pero se espera que la turbina mareomotriz est\u00e9 en funcionamiento en la pr\u00f3xima d\u00e9cada.<\/span><\/p>\n<p style=\"text-align: justify;\"><span style=\"color: #000000;\"><em>Cr\u00e9dito de la imagen: Corporaci\u00f3n IHI<\/em><\/span><\/p>\n<p>Fuente:<\/p>\n<p>Ramirez, V. B. (2022p, junio 22). <i>Japan\u2019s Kairyu Sea Turbine Will Harvest the Never-Ending Power of Deep Ocean Currents<\/i>. Singularity Hub. Recuperado 23 de junio de 2022, de https:\/\/singularityhub.com\/2022\/06\/22\/japan-just-finished-testing-a-massive-deep-sea-tidal-turbine\/<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Hace poco m\u00e1s de un a\u00f1o, una empresa escocesa llamada\u00a0Orbital Marine Power\u00a0estaba poniendo en marcha una\u00a0turbina mareomotriz\u00a0de dos megavatios en el Mar del Norte.\u00a0Se\u00a0esperaba\u00a0que el sistema generara suficiente electricidad para alimentar alrededor de 2000 hogares escoceses y compensar 2200 toneladas de CO2 al a\u00f1o.<\/p>\n","protected":false},"author":1,"featured_media":27530,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[82],"tags":[],"class_list":["post-27529","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-energias-alternas"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.7 - 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