{"id":6914,"date":"2020-02-14T00:00:00","date_gmt":"2020-02-14T00:00:00","guid":{"rendered":"https:\/\/tedae.org\/uncategorized\/solar-orbiter-rumbo-al-sol\/"},"modified":"2024-04-02T10:50:44","modified_gmt":"2024-04-02T10:50:44","slug":"solar-orbiter-rumbo-al-sol","status":"publish","type":"post","link":"https:\/\/tedae.org\/en\/uncategorized\/solar-orbiter-rumbo-al-sol\/","title":{"rendered":"Solar Orbiter: rumbo al Sol"},"content":{"rendered":"<p>El 10 de febrero la misi\u00f3n Solar Orbiter inici\u00f3 su viaje rumbo al Sol desde Cabo Ca\u00f1averal en EEUU, a bordo de un lanzador Atlas V 411, para explorar las zonas m\u00e1s desconocidas de la superficie de nuestra estrella, que se encuentra a unos 150 millones de kil\u00f3metros de distancia de la Tierra. <\/p>\n<p>Solar Orbiter, la misi\u00f3n liderada por la ESA con una fuerte participaci\u00f3n de la NASA, se acercar\u00e1 al Sol \u2013hasta un cuarto de la distancia que la separa de la Tierra-, exponi\u00e9ndose a unas temperaturas abrasadoras, para estudiar de cerca el sol y permitirnos comprender mejor su funcionamiento gracias a los datos e im\u00e1genes \u00fanicas que proporcionar\u00e1. <\/p>\n<p>Los 10 instrumentos que lleva a bordo, complementado con  el trabajo conjunto que realizar\u00e1 con la sonda Parker de la NASA, permitir\u00e1n observar  la agitada superficie solar y los cambios en el viento solar. Seg\u00fan la ESA, Solar Orbiter \u201cabordar\u00e1 las grandes preguntas sobre nuestro Sistema Solar para ayudarnos a comprender c\u00f3mo nuestra estrella crea y controla la gigantesca burbuja de plasma que lo rodea e influye en los planetas situados en su interior\u201d. Permitir\u00e1 investigar qu\u00e9 provoca el viento solar y el origen del campo magn\u00e9tico de la corona, el campo magn\u00e9tico del sol, as\u00ed como tambi\u00e9n las part\u00edculas energ\u00e9ticas que producen las erupciones solares y que pueden llegar a perturbar las comunicaciones y al tr\u00e1fico a\u00e9reo, o afectar negativamente a las instalaciones espaciales. <\/p>\n<p>Dos de los instrumentos cient\u00edficos de la misi\u00f3n tienen liderazgo espa\u00f1ol. Uno es el Detector de Part\u00edculas Energ\u00e9ticas EPD (Energetic and Surathermal PArticle Detector Analizer), cuyo investigador principal es el Dr. Javier Rodr\u00edguez-Pacheco, de la Universidad de Alcal\u00e1 de Henares de Madrid, y el otro, el Instrumento SO\/PHI, responsabilidad del Instituto Astrof\u00edsico de Andaluc\u00eda IAA, que realizar\u00e1 una cartograf\u00eda precisa del campo magn\u00e9tico solar y medir\u00e1 tambi\u00e9n la velocidad del plasma en la fotosfera, la capa m\u00e1s interna de la atm\u00f3sfera del Sol. <\/p>\n<p>En Solar Orbiter han tenido participaci\u00f3n relevante ocho empresas de espacio de TEDAE : <\/p>\n<p>AIRBUS DEFENCE&#038;SPACE en ESPA\u00d1A <\/p>\n<p>SO Radiating Assembly \u2013 paneles de fibra de carbono y desarrollo de los enlaces t\u00e9rmicos de alta eficiencia (thermal straps-VTL). <\/p>\n<p>SO Polarimetric Helioseismic Imager (SOPHI) \u2013 Control t\u00e9rmico pasivo como las mantas t\u00e9rmicas. Primeras integradas en ISO 5. <\/p>\n<p>El cableado de la plataforma del sat\u00e9lite. <\/p>\n<p>ALTER TECHNOLOGY <\/p>\n<p>Prest\u00f3 apoyo t\u00e9cnico a los fabricantes de equipos: <\/p>\n<p>Coordinaci\u00f3n de toda la carga \u00fatil con 10 instrumentos. <\/p>\n<p>Aprovisionamiento de m\u00e1s de 3.500 componentes electr\u00f3nicos. <\/p>\n<p>Evaluaciones tecnol\u00f3gicas y COTS. <\/p>\n<p>Desarrollo de los Diodos de bloqueo de Carburo de Silicio para los paneles solares. <\/p>\n<p>CRISA (Airbus D&#038;S) <\/p>\n<p>\u00b7 Unidad de Control del Instrumento Detector de Part\u00edculas Energ\u00e9ticas (EPD) liderado por la Universidad de Alcal\u00e1 de Henares  y <\/p>\n<p>\u00b7 Unidad de Condicionamiento y Distribuci\u00f3n de Potencia para el Subsistema de Potencia El\u00e9ctrica del sat\u00e9lite. <\/p>\n<p>ELECNOR DEIMOS <\/p>\n<p>An\u00e1lisis de misi\u00f3n y c\u00e1lculo de trayectorias con propulsi\u00f3n el\u00e9ctrica y \u00f3rbitas resonantes en la fase de valoraci\u00f3n (2004). <\/p>\n<p>GMV <\/p>\n<p>Centro de control de la misi\u00f3n (MCS &#8211; Mission Control System) para el Centro Europeo de Operaciones Espaciales (ESOC) de la ESA. <\/p>\n<p>Sistema de chequeo central (CCS &#8211; Central Checkout System) para Astrium UK desde la filial de GMV en Portugal. Este elemento software forma parte de los sistemas de soporte en tierra que permiten testear el sat\u00e9lite. <\/p>\n<p>Soporte para el control orbital (Flight Dynamics) de la misi\u00f3n en ESOC en \u00e1reas tradicionales como el c\u00e1lculo de maniobras, testeo y validaci\u00f3n de las \u00f3rbitas y validaci\u00f3n de los comandos. <\/p>\n<p>GTD <\/p>\n<p>\u00b7 Colabora con Airbus Defence &#038; Space (ADS) en la validaci\u00f3n del Central Software (CSW) de SolO desde finales de 2018. El CSW es la parte del software embarcado del sat\u00e9lite que ejecuta las principales aplicaciones de misi\u00f3n. <\/p>\n<p>SENER <\/p>\n<p>\u00b7 Subsistema de las antenas de comunicaciones: una de alta ganancia, la orientable de media ganancia y dos de baja ganancia. <\/p>\n<p>\u00b7 Subsistema Instrument Boom, un m\u00e1stil desplegable que porta cuatro instrumentos y que sirve para alejarlos de las perturbaciones electromagn\u00e9ticas generadas por los equipos del sat\u00e9lite durante su funcionamiento. <\/p>\n<p>\u00b7 Subsistema de feed throughs o filtros pasa-muros, que dotan al sat\u00e9lite de cubiertas protectoras (no herm\u00e9ticas) para los instrumentos de detecci\u00f3n remota. <\/p>\n<p>\u00b7Instrumento EPD, que analiza part\u00edculas de alta energ\u00eda, denominado ESPADA o EPD (Energetic and Surathermal PArticle Detector Analizer), responsabilidad de la Universidad de Alcal\u00e1. <\/p>\n<p>\u00b7Instrumento SO-PHI, una c\u00e1mara de alt\u00edsimas prestaciones cuyo objetivo es cartografiar el vector campo magn\u00e9tico y la velocidad, a lo largo de la l\u00ednea de visi\u00f3n, del plasma fotosf\u00e9rico solar. Este instrumento es responsabilidad del IAA (Instituto Astrof\u00edsico de Andaluc\u00eda). <\/p>\n<p>Thales Alenia Space Espa\u00f1a <\/p>\n<p>\u00b7 La red de distribuci\u00f3n de radiofrecuencia (RFDA) del sistema de comunicaci\u00f3n del sat\u00e9lite. <\/p>","protected":false},"excerpt":{"rendered":"<p>SOLAR ORBITER: RUMBO AL SOL<\/p>","protected":false},"author":5,"featured_media":6915,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_jetpack_memberships_contains_paid_content":false,"footnotes":""},"categories":[],"tags":[],"class_list":["post-6914","post","type-post","status-publish","format-standard","has-post-thumbnail"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Solar Orbiter: rumbo al Sol - TEDAE<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/tedae.org\/en\/uncategorized\/solar-orbiter-rumbo-al-sol\/\" \/>\n<meta property=\"og:locale\" content=\"en_GB\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Solar Orbiter: rumbo al Sol - 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