Offshore wind and wave energy potentials are commonly simulated by atmosphere and wave stand-alone models, in which the Atmosphere Wave Ocean (AWO) dynamical coupling processes are neglected. Based on four experiments (simulated by UU-CM, Uppsala University-Coupled model) with four different coupling configurations between atmosphere, waves, and ocean, we found that the simulations of the wind power density (WPD) and wave potential energy (WPE) are sensitive to the AWO interaction processes over the North and Baltic Seas; in particular, to the atmosphere ocean coupling processes. Adding all coupling processes can change more than 25% of the WPE but only less than 5% of the WPD in four chosen coastal areas. The impact of the AWO coupling pro...
Wave field and atmospheric observations during the Southern Ocean Gas Exchange experiment 2008 were ...
This article compares interactively coupled atmosphere-ocean hindcast simulations with stand-alone r...
Current models cannot capture well the impacts of wind waves on the atmospheric boundary layer. Here...
Offshore wind energy compared to its onshore counterpart appears more attractive due to its lesser v...
Abstract Ocean waves can spatiotemporally redistribute the momentum flux at the air-sea interface, w...
A high‐resolution coupled ocean‐wave‐atmosphere model (Uppsala University Coupled model, UU‐CM) of t...
A high‐resolution coupled ocean‐wave‐atmosphere model (Uppsala University Coupled model, UU‐CM) of t...
AbstractOffshore wind energy compared to its onshore counterpart appears more attractive due to its ...
Ocean waves, in addition to generating direct forces on fixed and floating offshore wind generator s...
Efficiently coupling meteorology and wave models in the next step in the simulation of ocean waves. ...
AbstractOcean waves, in addition to generating direct forces on fixed and floating offshore wind gen...
This is a paper about waves. We consider the impacts of coupling the atmosphere and ocean on estimat...
Understanding the role of breaking surface waves in air-sea exchange processes is integral to accura...
This thesis is devoted to the investigation of the impacts of fast moving ocean surface waves on the...
This study investigates the effects of wind–wave processes in a coupled wave–ocean circulation model...
Wave field and atmospheric observations during the Southern Ocean Gas Exchange experiment 2008 were ...
This article compares interactively coupled atmosphere-ocean hindcast simulations with stand-alone r...
Current models cannot capture well the impacts of wind waves on the atmospheric boundary layer. Here...
Offshore wind energy compared to its onshore counterpart appears more attractive due to its lesser v...
Abstract Ocean waves can spatiotemporally redistribute the momentum flux at the air-sea interface, w...
A high‐resolution coupled ocean‐wave‐atmosphere model (Uppsala University Coupled model, UU‐CM) of t...
A high‐resolution coupled ocean‐wave‐atmosphere model (Uppsala University Coupled model, UU‐CM) of t...
AbstractOffshore wind energy compared to its onshore counterpart appears more attractive due to its ...
Ocean waves, in addition to generating direct forces on fixed and floating offshore wind generator s...
Efficiently coupling meteorology and wave models in the next step in the simulation of ocean waves. ...
AbstractOcean waves, in addition to generating direct forces on fixed and floating offshore wind gen...
This is a paper about waves. We consider the impacts of coupling the atmosphere and ocean on estimat...
Understanding the role of breaking surface waves in air-sea exchange processes is integral to accura...
This thesis is devoted to the investigation of the impacts of fast moving ocean surface waves on the...
This study investigates the effects of wind–wave processes in a coupled wave–ocean circulation model...
Wave field and atmospheric observations during the Southern Ocean Gas Exchange experiment 2008 were ...
This article compares interactively coupled atmosphere-ocean hindcast simulations with stand-alone r...
Current models cannot capture well the impacts of wind waves on the atmospheric boundary layer. Here...