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Releases: pduarte8/CICE

v1.1-alpha_bottom_drag

09 Apr 12:28
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This release includes the main following modifications:

Changes to allow using forcing time series collected during the Norwegian Young Sea Ice Expedition (N-ICE2015) (Granskog et al., 2018) and described in Duarte et al. (2017) (see Fig. 2 of the cited authors). These modifications were meant to allow reading of forcing data at higher frequencies than possible with the standard input subroutines in the CICE file ice_forcing.F90.
Added the possibility of writing limiting factor files.
Added more arguments (kdyn, uocn and vocn) to the call to icepack_step_therm1 to make it possible calculating sea-ice bottom drag even when ice dynamics is not being calculated by CICE and to calculate bottom diffusion of heat and nutrients as a function of shear.
Modified files: ice_forcing.F90, ice_read_write.F90, CICE_InitMod.F90, ice_step_mod.F90, ice_init.F90, ice_file_units.F90, ice_init_column.F90, ice_in

References

Duarte, P., Meyer, A., Olsen, L. M., Kauko, H. M., Assmy, P., Rosel, A., Itkin, P., Hudson, S. R., Granskog, M. A., Gerland, S., Sundfjord, A., Steen, H., Hop, H., Cohen, L., Peterson, A. K., Jeffery, N., Elliott, S. M., Hunke, E. C., and Turner, A. K.: Sea ice thermohaline dynamics and biogeochemistry in the Arctic Ocean: Empirical and model results, J. Geophys. Res.-Biogeosciences, 122, 1632-1654, doi: 10.1002/2016JG003660, 2017.

Granskog, M. A., Fer, I., Rinke, A., and Steen, H.: Atmosphere-Ice-Ocean-Ecosystem Processes in a Thinner Arctic Sea Ice Regime: The Norwegian Young Sea ICE (N-ICE2015) Expedition, J. Geophys. Res.-Oceans, 123, 1586-1594, doi: 10.1002/2017jc013328, 2018.

v0.1-alpha

09 Apr 09:00
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This release includes the main following modifications:

  1. Changes to allow using forcing time series collected during the Norwegian Young Sea Ice Expedition (N-ICE2015) (Granskog et al., 2018) and described in Duarte et al. (2017) (see Fig. 2 of the cited authors). These modifications were meant to allow reading of forcing data at higher frequencies than possible with the standard input subroutines in the CICE file ice_forcing.F90.
  2. Added the possibility of writing limiting factor files.
  3. Added more arguments (kdyn, uocn and vocn) to the call to icepack_step_therm1 to make it possible calculating sea-ice bottom drag even when ice dynamics is not being calculated by CICE and to calculate bottom diffusion of heat and nutrients as a function of shear.

Modified files: ice_forcing.F90, ice_read_write.F90, CICE_InitMod.F90, ice_step_mod.F90, ice_init.F90, ice_file_units.F90, ice_init_column.F90, ice_in

References

Duarte, P., Meyer, A., Olsen, L. M., Kauko, H. M., Assmy, P., Rosel, A., Itkin, P., Hudson, S. R., Granskog, M. A., Gerland, S., Sundfjord, A., Steen, H., Hop, H., Cohen, L., Peterson, A. K., Jeffery, N., Elliott, S. M., Hunke, E. C., and Turner, A. K.: Sea ice thermohaline dynamics and biogeochemistry in the Arctic Ocean: Empirical and model results, J. Geophys. Res.-Biogeosciences, 122, 1632-1654, doi: 10.1002/2016JG003660, 2017.

Granskog, M. A., Fer, I., Rinke, A., and Steen, H.: Atmosphere-Ice-Ocean-Ecosystem Processes in a Thinner Arctic Sea Ice Regime: The Norwegian Young Sea ICE (N-ICE2015) Expedition, J. Geophys. Res.-Oceans, 123, 1586-1594, doi: 10.1002/2017jc013328, 2018.

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