Generators for wave energy converters are enclosed within sealed containers. The thermal exchange mechanism is based both on natural convection occurring in the air within the container and in the water outside it. Conduction occurs in all other domains. To assess the maximum allowable electrical loading a numerical approach based on thermal simulation and Computational Fluid Dynamics (CFD) is developed via Finite Elements. A comparison is made among a deep sea device and a floating one. Concrete and steel are evaluated as container materials. The objective of the analysis are the admissible current density, the loss density and the heat transfer coefficient
This paper details the mechanical design of a wave power generation system comprising a buoy that ho...
Numerical modelling of wave energy converters (WECs) is currently an area of interest within the mar...
The growing search for clean and renewable energy sources has given rise to the studies of exploring...
Generators for wave energy converters are enclosed within sealed containers. The thermal exchange m...
The Division for Electricity of Uppsala University is developing a wave power concept. The energy of...
Owing to very costly maintenance operations, the reliability of electrical systems for offshore rene...
The aim of this work is to develop a thermal-fluid dynamic FE model, accurate enough to be used for ...
The application of ocean thermal energy conversion is an effective method to extend underwater vehic...
This paper presents the analysis and optimization of a wave-to-wire energy converter developed by CO...
International audience— In similar fashion to most renewables, wave energy is capital expenditure (C...
A wave energy converter (WEC) has been developed at the Division of Electricity at Uppsala Universit...
The wave energy conversion into electricity has been increasingly studied in the last years. There a...
This paper examines the optimum power output of a pitching-surge point absorber wave energy converte...
The employment of numerical methods to solve engineering problems is a reality, as well as, the worl...
This paper proposes a simplified approach to model the thermal behavior of the insulated gate bipola...
This paper details the mechanical design of a wave power generation system comprising a buoy that ho...
Numerical modelling of wave energy converters (WECs) is currently an area of interest within the mar...
The growing search for clean and renewable energy sources has given rise to the studies of exploring...
Generators for wave energy converters are enclosed within sealed containers. The thermal exchange m...
The Division for Electricity of Uppsala University is developing a wave power concept. The energy of...
Owing to very costly maintenance operations, the reliability of electrical systems for offshore rene...
The aim of this work is to develop a thermal-fluid dynamic FE model, accurate enough to be used for ...
The application of ocean thermal energy conversion is an effective method to extend underwater vehic...
This paper presents the analysis and optimization of a wave-to-wire energy converter developed by CO...
International audience— In similar fashion to most renewables, wave energy is capital expenditure (C...
A wave energy converter (WEC) has been developed at the Division of Electricity at Uppsala Universit...
The wave energy conversion into electricity has been increasingly studied in the last years. There a...
This paper examines the optimum power output of a pitching-surge point absorber wave energy converte...
The employment of numerical methods to solve engineering problems is a reality, as well as, the worl...
This paper proposes a simplified approach to model the thermal behavior of the insulated gate bipola...
This paper details the mechanical design of a wave power generation system comprising a buoy that ho...
Numerical modelling of wave energy converters (WECs) is currently an area of interest within the mar...
The growing search for clean and renewable energy sources has given rise to the studies of exploring...