I have added the inlists used to create the tams and ZACHeB models.
Note that I had to comment out the 'use_gold_tolerances = .true.' control for the last few models just before core helium burning ignition.
I have moved the old docs files to a subdirectory called docs/obsolete. Indeed they have little relation to the new results.
I have added new hb_2M .tex and. pdf files in the doc folder that give a succinct description of what the test does and what to look for if using the inlist provided in a real science case (e.g. check convergence).
I use a maximum timestep limit of 1d6 in the test suite inlist, which does not provide a converged model. The run time with this timestep limit is about 6 minutes on my MacBookPro.
If I use a timestep of 1d5, which produces a converged model, the run time is about 22 minutes, which I assume is too long for the test suite.
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This case is now done and completely updated.
It includes predictive mixing.
I have added the inlists used to create the tams and ZACHeB models.
Note that I had to comment out the 'use_gold_tolerances = .true.' control for the last few models just before core helium burning ignition.
I have moved the old docs files to a subdirectory called docs/obsolete. Indeed they have little relation to the new results.
I have added new hb_2M .tex and. pdf files in the doc folder that give a succinct description of what the test does and what to look for if using the inlist provided in a real science case (e.g. check convergence).
I use a maximum timestep limit of 1d6 in the test suite inlist, which does not provide a converged model. The run time with this timestep limit is about 6 minutes on my MacBookPro.
If I use a timestep of 1d5, which produces a converged model, the run time is about 22 minutes, which I assume is too long for the test suite.