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Description
I have looked into what CTSM master tags from ctsm1.0.dev001 through the present could warrant more careful investigation to verify that they haven't changed climate. Other than ctsm1.0.dev001 itself (#690 ), the ones that could use investigation are ctsm1.0.dev019, ctsm1.0.dev020 and ctsm1.0.dev035. I'm thinking it could be worth batching these changes together and running a single set of verifications of ctsm1.0.dev035 against ctsm1.0.dev018.
Here is an annotated list of all tags on master since ctsm1.0.dev001 that have changed answers:
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ctsm1.0.dev002
- Changes answers for all clm5_0 BGC cases
- This is on the release branch; no need to do verification of it
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ctsm1.0.dev004
- Changes answers for year-2000 cases
- This is on the release branch; no need to do verification of it
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ctsm1.0.dev007
- Changes answers for startup / hybrid runs that include CISM (even NOEVOLVE) and do not use init_interp. Changes can be larger than roundoff.
- This is on the release branch; no need to do verification of it
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ctsm1.0.dev008
- Updates N dep file. Changes answers for 1850 and 20th century cases; expected to be similar climate.
- This is on the release branch; no need to do verification of it
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ctsm1.0.dev013
- Fix for transient non-crop cases
- Significant answer changes for these transient non-crop cases
- This is on the release branch; no need to do verification of it
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ctsm1.0.dev016
- Changes answers due to datm update: new presaero and CO2 datasets
- No need to do verification of this
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ctsm1.0.dev018
- Roundoff-level changes in sensible heat flux; everything else bfb
- No need to do verification of this
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ctsm1.0.dev019
- Reworks initialization of wa and zwt
- Larger-than-roundoff changes for CLM50 cold start and transient (Hist) cases; expected to be same climate
- It might be worth doing more thorough testing of this tag
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ctsm1.0.dev020
- No longer resets wa_col to aquifer_water_baseline every time step
- Differences only observed for cold start tests or when using a CLM45 initial conditions file in a CLM50 case, but it's possible that other configurations would see differences rarely
- It might be worth doing more thorough testing of this tag. This doesn't seem too important, but this could be combined with other tag(s) in doing some additional testing.
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ctsm1.0.dev022
- Roundoff-level changes with groundwater irrigation
- Roundoff-level changes in the diagnostic field, QIRRIG_FROM_SURFACE
- No need to do verification of this
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ctsm1.0.dev028
- Interpolated all out-of-the-box initial conditions
- Changes answers for cases that require interpolation of out-of-the-box initial conditions
- I was a bit suspicious of the changes in this tag. However, given that this only affects cases that require interpolation of out-of-the-box initial conditions, this probably won't affect most scientifically-important configurations, and also wouldn't be picked up by standard diagnostics runs.
- So no need to do verification of this
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ctsm1.0.dev030
- cime update resulted in differences for f19_g17 (roundoff-level) and T31_g37
- No need to do verification of this
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ctsm1.0.dev031
- Large answer changes for runs with transient glaciers
- For runs with transient vegetation, roundoff-level changes in dynbal fluxes
- Large changes in diagnostic variables ICE_CONTENT1, LIQUID_CONTENT1 and HEAT_CONTENT1, over glaciers containing some glacier area
- No need to do verification of this
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ctsm1.0.dev034
- Just changes answers for clm45
- No need to de verification of this
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ctsm1.0.dev035
- Replaces uses of h2ocan with snocan + liqcan
- Expected to be just roundoff-level, but some differences seen in the test suite raised suspicions
- We should do more thorough testing of this tag