Searched for: author%3A%22Raghavan%2C+V.%22
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Raghavan, V. (author), Simonetti, Irene (author), Metrikine, A. (author), Lavidas, G. (author), Cappietti, Lorenzo (author)
The Oscillating Water Column (OWC) wave energy converter has been shown to have high potential, thus rendering extensive development in recent years. In order to further accelerate its development, highly accurate yet computationally efficient tools are necessary particularly when studying the interaction of multiple OWC devices. This paper...
journal article 2024
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Raghavan, V. (author), Simonetti, Irene (author), Lavidas, G. (author), Metrikine, A. (author), Cappietti, Lorenzo (author)
Utilization of Boundary Element Method (BEM) based on linear potential flow for modelling Oscillating Water Column (OWC) devices has gained popularity in the last two decades. The commercial BEM solver WAMIT has been used widely for modelling OWCs and validated using experimental modelling (Delauré et. al. 2003, Bingham et. al. 2015, Faÿ 2020)....
conference paper 2023
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Alday Gonzalez, M.F. (author), Raghavan, V. (author), Lavidas, G. (author)
To date there is a wide range of wave reanalysis and hindcasts available to the scientific and engineering community which are commonly used for different applications, including downscaling or the estimation of the wave energy resource (Morim et al., 2022). These long datasets have been created using different combinations of forcing fields,...
conference paper 2023
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Raghavan, V. (author), Lavidas, G. (author), Metrikine, A. (author), Mantadakis, Nikolaos (author), Loukogeorgaki, Eva (author)
Wave Energy Converters (WECs) are expected to significantly contribute to the energy transition; however, this depends on their interactions with the resource. Calculating the power generated by WECs depends heavily on the accurate modelling of wave-structure interactions. The Boundary Element Method (BEM) based on the potential flow theory has...
conference paper 2022
Searched for: author%3A%22Raghavan%2C+V.%22
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