Thermal modelling of a passively cooled inverter for wave power


Owing to terribly costly maintenance operations, the reliability of electrical systems for offshore renewable energy may be a major issue to create electricity production economical. So proper thermal management is important so as to avoid the components from being damaged by excessive temperature increase. Each analytic and computational fluid dynamics (CFD) models were implemented to assess the temperature increase within the inverter installed in an exceedingly submerged substation and throughout operating conditions. It was shown that this inverter may transmit a complete power of up to concerning 35 kW. This limit relies on a sure distance between the modules and a excellent thermal contact with the hull. The influence of many of such parameters likewise because the potency of passive cooling were studied.

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