Changes between Version 1 and Version 2 of 2020WP/SI3-03_VP_rheology
- Timestamp:
- 2020-01-22T08:21:02+01:00 (4 years ago)
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2020WP/SI3-03_VP_rheology
v1 v2 11 11 == Summary 12 12 13 ||=Action || Name and subject of the action||14 ||=PI(S) || Names||15 ||=Digest || Brief description with motivations and main tasks||13 ||=Action || Viscous-plastic (VP) sea ice rheology || 14 ||=PI(S) || Martin Vancoppenolle || 15 ||=Digest || VP costs more than EVP, but is generally more accurate, and provides a reference solution || 16 16 ||=Dependencies || If any || 17 17 ||=Branch || source:/NEMO/branches/{YEAR}/dev_r{REV}_{ACTION_NAME} || 18 ||=Previewer(s) || Names||19 ||=Reviewer(s) || Names||18 ||=Previewer(s) || Ed Blockley || 19 ||=Reviewer(s) || Yevgueny Aksenov || 20 20 ||=Ticket || #XXXX || 21 21 … … 23 23 24 24 {{{#!box width=25em help 25 Describe the goal of development and the methodology,\\26 add reference documents or publications if relevant. 25 We take the Zhang and Hibler (JGR 1997) approach, in the C-grid implementation of MITgcm. Martin Losch (AWI) has developed the code and is ready to provide guidance. \\ 26 27 27 }}} 28 28 … … 32 32 33 33 {{{#!box width=35em help 34 Describe flow chart of the changes in the code. \\ 35 List the Fortran modules and subroutines to be created/edited/deleted. \\ 36 Detailed list of new variables to be defined (including namelists), \\ 37 give for each the chosen name and description wrt coding rules. 34 Implementation is relatively easy, only the rheology routine is affected. \\ 35 38 36 }}} 39 37