A simple analytical model for tidal energy loss at fjord sills and its partitioning into local dissipation and radiated internal tides is presented. The analytical model builds on a two-layer assumption with quasi-steady nonlinear flow over the sill and wave radiation in the far field. When the interface is situated above sill level, upstream- and downstream-propagating internal waves are generated as the bottom-layer flow becomes partially blocked because of a hydraulic control over the sill. When this control sets in, energy is lost in the transition from supercritical flow over the sill to subcritical flow downstream of the sill. The analytical model is compared with observations at the Drøbak sill in the Oslo Fjord and with idealized nu...
A cross sectional non-hydrostatic model of a fjord is used to examine to what extent the internal ti...
Internal tides power much of the observed ...
International audienceWe modeled internal tide generation above a high sinusoidal ridge in a fluid w...
This article is published by American Meteorological Society in Journal of Physical Oceanography, av...
This study investigates the dissipation rates and flow conditions at the Drøbak Sill in the Oslofjor...
This study investigates the dissipation rates and flow conditions at the Drøbak Sill in the Oslofjor...
Observations of velocity, pressure, temperature and salinity in the inner Oslofjord have been analys...
A previous model for the distribution of internal tides above irregular topography is generalized to...
We consider the distribution and level of local vertical mixing inside of the Drøbak Sill in the Osl...
The problem of to what extent two topographic features, namely, adjacent sills in a fjord, interact ...
AbstractWe consider the distribution and level of local vertical mixing inside of the Drøbak Sill in...
A semi-diurnal internal tide and trains of near-bed nonlinear internal waves are observed on the Wes...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
A three-dimensional non-linear, non-hydrostatic model in cross-sectional form is used to determine t...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
A cross sectional non-hydrostatic model of a fjord is used to examine to what extent the internal ti...
Internal tides power much of the observed ...
International audienceWe modeled internal tide generation above a high sinusoidal ridge in a fluid w...
This article is published by American Meteorological Society in Journal of Physical Oceanography, av...
This study investigates the dissipation rates and flow conditions at the Drøbak Sill in the Oslofjor...
This study investigates the dissipation rates and flow conditions at the Drøbak Sill in the Oslofjor...
Observations of velocity, pressure, temperature and salinity in the inner Oslofjord have been analys...
A previous model for the distribution of internal tides above irregular topography is generalized to...
We consider the distribution and level of local vertical mixing inside of the Drøbak Sill in the Osl...
The problem of to what extent two topographic features, namely, adjacent sills in a fjord, interact ...
AbstractWe consider the distribution and level of local vertical mixing inside of the Drøbak Sill in...
A semi-diurnal internal tide and trains of near-bed nonlinear internal waves are observed on the Wes...
International audienceThe energy transfers associated with internal tide (IT) generation by a semi-d...
A three-dimensional non-linear, non-hydrostatic model in cross-sectional form is used to determine t...
This thesis deals with the internal tide in the deep ocean, which is generated by the barotropic tid...
A cross sectional non-hydrostatic model of a fjord is used to examine to what extent the internal ti...
Internal tides power much of the observed ...
International audienceWe modeled internal tide generation above a high sinusoidal ridge in a fluid w...