... | ... | @@ -61,8 +61,8 @@ uniform grid. |
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- `01` (`_CC.data_dir`)
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- `_CC.data_dir`: directory of input data (NIRVANA snapshot
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files).
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- `_CC.data_dir`: directory of input data (where NIRVANA snapshot
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files reside).
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- `02` (`_CC.datafile_number`, `_CC.datafile_sequence`)
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... | ... | @@ -72,7 +72,7 @@ uniform grid. |
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`NIR#.#` where the pre-dot-`#` equals `_C.mod`, i.e., the base
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filename of a snapshot is given by `NIR#` (cf. [NIRVANA:
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Snapshot
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files](3-NIRVANA-user-guide/3.3-Output-data#snapshot-files))
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files](https://gitlab.aip.de/ziegler/NIRVANA/-/wikis/3-NIRVANA-user-guide/3.3-Output-data#snapshot-files))
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*Note: CAIVS automatically recognises the number of data
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containers of a snapshot. The user just has to take care that
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... | ... | @@ -386,7 +386,7 @@ following table |
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where `_C.species`, `_C.tracer` and `_C.testfields` are NIRVANA
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parameters (cf. [NIRVANA: Specification of main
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parameters](3-NIRVANA-user-guide/3.2-User-interfaces#specification-of-main-parameters))
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parameters](https://gitlab.aip.de/ziegler/NIRVANA/-/wikis/3-NIRVANA-user-guide/3.2-User-interfaces#specification-of-main-parameters))
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storing the number of species, number of tracers and number of
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testfields, respectively.
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... | ... | @@ -394,7 +394,7 @@ testfields, respectively. |
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components are represented at cell-face-centroid coordinates whereas all
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other variables listed in the table are given at cell-centroid positions
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(cf. [NIRVANA: Mesh data
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structure](3-NIRVANA-user-guide/3.1-Code-basics#mesh-data-structure))*
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structure](https://gitlab.aip.de/ziegler/NIRVANA/-/wikis/3-NIRVANA-user-guide/3.1-Code-basics#mesh-data-structure))*
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The imported variables can be used to derive user variables as in the
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`case 1:` example above. CAIVS assumes that user variables are
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... | ... | |