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Obuda University

Óbuda University (ÓU), established in 1879, is the second largest but highest ranked Technical University in Hungary. It aims to achieve the triplet of excellence in education, research, and innovation to address societal challenges and contribute to sustainable development on national, regional and EU level. ÓU has seven faculties and three doctoral schools, one excellence centre, and eight research labs. ÓU is participating in multiple international organizations and bilateral and international programmes (currently over 20 EU financed scientific projects). It has international relations with 90 countries, and participates 300 higher education programs and partnerships and has over 250 education and mobility agreements. ÓU offers innovative BA/BSc, MA/MSC, and PhD curricula, dual degrees, challenge-based approaches and an up-to-date, student-friendly, creative and supporting environment for students in order to enable them respond to the challenges set out by our globalized world, laying emphasis on both basic and applied research, internationalization, sustainable development, improvements in technology, RDI, lifelong learning, and interaction and cooperation with the industry. In the last 10 years, ÓU’s research is expanding into fields that are in the major problem areas of today’s societies: health and sustainability. ÓU’s mission and vision are underpinned by fundamental values such as nurturing entrepreneurship, openness, tolerance, dialogue and diversity to fulfil its responsibility as a higher education institution contributing to positive societal change.

Country:
Hungary

Marine Energy Documents Related to Obuda University

Tethys Engineering is a knowledge hub that contains documents and resources about the technical aspects of marine energy development. The table below contains all of the documents in the Tethys Engineering Knowledge Base associated with Obuda University.

Total: 7

Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Optimization of power take-off system settings and regional site selection procedure for a wave energy converter Mehdipour, H., Amini, E., Naeeni, S. Journal Article Wave, Oscillating Wave Surge Converter Modeling Performance, Power Take Off
Adaptive systematic optimization of a multi-axis ocean wave energy converter Shadmani, A., Nikoo, M., Gandomi, A. Journal Article Wave, Point Absorber Modeling Hydrodynamics, Performance
A review of machine learning and deep learning applications in wave energy forecasting and WEC optimization Shadmani, A., Nikoo, M., Gandomi, A. Journal Article Wave Power Take Off
Predicting Power and Hydrogen Generation of a Renewable Energy Converter Utilizing Data-Driven Methods: A Sustainable Smart Grid Case Study Mirshafiee, F., Shahbazi, E., Safi, M. Journal Article Wave Modeling Performance
Deep Learning for Modeling an Offshore Hybrid Wind–Wave Energy System Manshadi, M., Mousavi, M., Soltani, M. Journal Article Wave Modeling Hybrid Devices, Performance
Layout and design optimization of ocean wave energy converters: A scoping review of state-of-the-art canonical, hybrid, cooperative, and combinatorial optimization methods Golbaz, D., Asadi, R., Amini, E. Journal Article Wave Modeling Array Effects, Power Take Off, Structural
Deep Learning for Wave Energy Converter Modeling Using Long Short-Term Memory Mousavi, S., Ghasemi, M., Manshadi, M. Journal Article Wave Modeling Hydrodynamics, Performance
Displaying 1 - 7 of 7 results