©2017 Cambridge University Press. While neutral atmospheric boundary layers are rare over land, they occur frequently over sea. In these cases they are almost always of the conventionally neutral type, in which the neutral boundary layer is capped by a strong inversion layer and a stably stratified atmosphere aloft. In the current study, we use large-eddy simulations (LES) to investigate the interaction between a large wind farm that has a fetch of 15 km and a conventionally neutral boundary layer (CNBL) in typical offshore conditions. At the domain inlet, we consider three different equilibrium CNBLs with heights of approximately 300m, 500m and 1000m that are generated in a separate precursor LES. We find that the height of the inflow boun...
AbstractIn terms of predicting wind turbine wakes, the stably stratified atmospheric boundary layer ...
It is now well-recognized that in the presence of an asymptotically large wind farm, the ABL adjusts...
Wind farm blockage is the flow deceleration in front of a large turbine array, due to which the firs...
We use large-eddy simulations (LES) to investigate the impact of stable stratification on gravity-wa...
In this study we consider large wind farms in a conventionally neutral atmospheric boundary layer. I...
Under conventionally-neutral conditions, the boundary layer is frequently capped by an inversion lay...
The present work studies the impact of self-induced Atmospheric Gravity Waves (AGWs) excited by an m...
In this study, large-eddy simulations are performed to investigate the flow inside and around large ...
Under conventionally-neutral conditions, the boundary layer is frequently capped by an inversion lay...
Flow blockage by large wind farms leads to an upward displacement of the boundary layer, which may e...
© 2018, Springer International Publishing AG. In large wind farms, wakes of individual wind turbines...
The wind energy industry relies on computationally efficient engineering-type models to design wind ...
The wind energy industry relies on computationally efficient engineering-type models to design wind ...
Increasing demand for renewable energy sources has meant that wind power is becoming a more crucial ...
Baroclinicity, which leads to height-dependent driving pressure gradients, occurs in various situati...
AbstractIn terms of predicting wind turbine wakes, the stably stratified atmospheric boundary layer ...
It is now well-recognized that in the presence of an asymptotically large wind farm, the ABL adjusts...
Wind farm blockage is the flow deceleration in front of a large turbine array, due to which the firs...
We use large-eddy simulations (LES) to investigate the impact of stable stratification on gravity-wa...
In this study we consider large wind farms in a conventionally neutral atmospheric boundary layer. I...
Under conventionally-neutral conditions, the boundary layer is frequently capped by an inversion lay...
The present work studies the impact of self-induced Atmospheric Gravity Waves (AGWs) excited by an m...
In this study, large-eddy simulations are performed to investigate the flow inside and around large ...
Under conventionally-neutral conditions, the boundary layer is frequently capped by an inversion lay...
Flow blockage by large wind farms leads to an upward displacement of the boundary layer, which may e...
© 2018, Springer International Publishing AG. In large wind farms, wakes of individual wind turbines...
The wind energy industry relies on computationally efficient engineering-type models to design wind ...
The wind energy industry relies on computationally efficient engineering-type models to design wind ...
Increasing demand for renewable energy sources has meant that wind power is becoming a more crucial ...
Baroclinicity, which leads to height-dependent driving pressure gradients, occurs in various situati...
AbstractIn terms of predicting wind turbine wakes, the stably stratified atmospheric boundary layer ...
It is now well-recognized that in the presence of an asymptotically large wind farm, the ABL adjusts...
Wind farm blockage is the flow deceleration in front of a large turbine array, due to which the firs...