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Study on heat dissipation and cooling optimization of the junction box of OBSEA seafloor observatory

Autor
Toma, D.M.; Manuel, A.; Nogueras, M.; Del Rio, J.
Tipus d'activitat
Article en revista
Revista
IEEE-ASME transactions on mechatronics
Data de publicació
2015-05-19
Volum
20
Número
3
Pàgina inicial
1301
Pàgina final
1309
DOI
https://doi.org/10.1109/TMECH.2014.2336791 Obrir en finestra nova
Projecte finançador
ESONET 036851-2 FP7 Infrastructures-2005-Global-4
OPOBSEA- OPERATIVIDAD LABORATORIO SUBMARINO OBSEA
SISTEMAS INALAMBRICOS PARA LA EXTENSION DE OBSERVATORIOS SUBMARINOS
Repositori
http://hdl.handle.net/2117/28249 Obrir en finestra nova
URL
http://ieeexplore.ieee.org/xpl/abstractCitations.jsp?arnumber=6880844&tag=1 Obrir en finestra nova
Resum
Multidisciplinary underwater observatories represent an exceptional technological resource that can signify a qualitative forward step in marine scientific research as well as operational oceanography and climate change study. A cabled underwater observatory system that can provide broad bandwidth communication and power to oceanographic instruments is developed. The observatory consists of a subsea junction box that is fixed at a cable terminal, enabling real-time communication, power conversio...
Citació
Toma, D.M. [et al.]. Study on heat dissipation and cooling optimization of the junction box of OBSEA seafloor observatory. "IEEE-ASME transactions on mechatronics", 19 Maig 2015, vol. 20, núm. 3, p. 1301-1309.
Paraules clau
Cooling, Heating, Junctions, Observatories, Physics of failure, Power electronics, Power supplies, Power system reliability, Temperature measurement, Thermal management, Underwater cables, Underwater observatories
Grup de recerca
SARTI - Centre de Desenvolupament Tecnològic de Sistemes d'Adquisició Remota i Tractament de la Informació
SARTI-MAR - Sistemes d'Adquisició Remota de dades i Tractament de la Informació en el Medi Marí