Wan, DiKlymak, Jody M.Foreman, Michael G.G.Cross, Stephen F.2018-05-222018-05-2220152015Wan, D., Klymak, J.M., Foreman, M.G.G. & Cross, S.F. (2015). Barotropic tidal dynamics in a frictional subsidiary channel. Continental Shelf Research, 105, 101- 111. http://dx.doi.org/10.1016/j.csr.2015.05.011http://dx.doi.org/10.1016/j.csr.2015.05.011http://hdl.handle.net/1828/9387Barotropic M2 tidal dynamics are studied in a subsidiary tidal channel in Kyuquot Sound, Canada, a site proposed for multi-trophic aquaculture. A regional model with no stratification or forcing other than the tide found that the sea level in the subsidiary channel responded in phase with the rest of Kyuquot Sound, but that the velocity response was almost 180° out of phase. Further, this velocity difference was strongly dependent on the choice of viscous parameterization in the model. A simple linear analytical model was developed to explain the simulated changes in terms of the phase lag induced by viscosity, and allowed a larger parameter regime to be explored. These results suggest that verifying models of smaller channels using sea level measurements alone is inadequate, and velocity measurements are necessary.enSubsidiary channel dynamicsNumerical modelingViscous parameterizationHorizontal eddy viscosity coefficientEnergy fluxEnergy dissipationBarotropic tidal dynamics in a frictional subsidiary channelArticleSchool of Earth and Ocean SciencesDepartment of Physics and AstronomyDepartment of Geography