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Fort.10 file: Difference between revisions

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===File structure for a 2DDI run===
===File structure for a 2DDI run===


Header Line 1
'''<code>Header Line 1'''</code>


Header Line 2
'''<code>Header Line 2'''</code>


[[NVP]]
'''<code>[[NVP]]'''</code>


: for k=1 to [[NVP]]
: for k=1 to [[NVP]]
:: [[jki]],[[DACONC(jki)]]
:: [[jki]],'''<code>[[DACONC(jki)]]'''</code>
: end k loop
: end k loop


===File structure for a 3D run===
===File structure for a 3D run===


Header Line 1
'''<code>Header Line 1'''</code>


Header Line 2
'''<code>Header Line 2'''</code>


[[NVN]], [[NVP]]
'''<code>[[NVN]]'''</code>, '''<code>[[NVP]]'''</code>


: for k=1 to [[NVP]]
: for k=1 to [[NVP]]
:: for j=1 to [[NVN]]
:: for j=1 to [[NVN]]
::: [[NHNN]],[[NVNN]],[[CONC(NHNN,NVNN)]]
::: '''<code>[[NHNN]]'''</code>,'''<code>[[NVNN]]'''</code>,'''<code>[[CONC(NHNN,NVNN)]]'''</code>
:: end j loop
:: end j loop
: end k loop
: end k loop

Latest revision as of 10:34, 24 June 2022

The fort.10 file contains the concentration field needed for passive scalar transport.

File Format

The basic file structure is shown below. Each line of input data is represented by a line containing the input variable name(s). Blank lines are only to enhance readability. Loops indicate multiple lines of input.

File structure for a 2DDI run

Header Line 1

Header Line 2

NVP

for k=1 to NVP
jki,DACONC(jki)
end k loop

File structure for a 3D run

Header Line 1

Header Line 2

NVN, NVP

for k=1 to NVP
for j=1 to NVN
NHNN,NVNN,CONC(NHNN,NVNN)
end j loop
end k loop