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{{Eingabedateien}} | {{Eingabedateien}} | ||
__NOTOC__ | __NOTOC__ | ||
<big> | <big>General Information</big> | ||
== | ==File== | ||
<bluem lines=true> | <bluem lines=true> | ||
* | *General Information (*.ALL) | ||
*========================== | *========================== | ||
Characterization.....................: Reservoir Management | |||
* | *Main titels: | ||
*-------------------- | *-------------------- | ||
................................: | ................................: | ||
Line 16: | Line 16: | ||
................................: | ................................: | ||
* | *Simulation Period: | ||
*--------------------- | *--------------------- Day.Month.Year hh:mm - Day.Month.Year hh:mm | ||
SimBeginn - SimEnde ............: 01.11.1979 08:00 - 31.10.1980 08:00 | SimBeginn - SimEnde ............: 01.11.1979 08:00 - 31.10.1980 08:00 | ||
* | *Time increment: | ||
*------------ | *------------ | ||
Time increment duration [min] .............: 30 | |||
Time increment month = M ..................: | |||
* | *Initial conditions: | ||
*------------------- | *------------------- | ||
Losses due to troughs [mm] ................: 1 | |||
Initial losses [%] ........................: 100 | |||
Channel flow [% of MQ] ....................: 100 | |||
Initial reservoir content [%] .............: 100 | |||
Initial soil moisture [%] .................: 100 | |||
* | *Simulation options: | ||
*------------------- | *------------------- | ||
Control functions .................. [Y/N] : N | |||
Calculation of (primary)obejective [Y/N] : N | |||
* | *Calculation parameters: | ||
*-------------------- | *-------------------- | ||
Nominal exponent deviation value ..........: 0 | |||
Error margin at water gage [%] ............: 0 | |||
Error margin (primary)objective [%] .......: 0 | |||
* | *Output options: | ||
*--------------- | *--------------- | ||
Output of maximum events ........... [Y/N] : N | |||
Output of balance .................. [Y/N] : N | |||
... | ... Probabilities ...................[Y/N] : N | ||
Hydrograph output .................. [Y/N] : Y | |||
... CSV-Format .......... [ | ... CSV-Format ..................... [Y/N] : Y | ||
... | ... Binary output .................. [Y/N] : N | ||
Animation ............... [ | Animation .......................... [Y/N] : N | ||
* | *Diffuse Sources: | ||
*------------- | *------------- | ||
Calculation ...............................: 0 | |||
Number of Substances ......................: 0 | |||
* | *Further output options: | ||
*------------- | *------------- | ||
HRU-Discharge wave output (LEFLWELOUT).... : N | |||
HRU-Soil properties (LEFLOUT)............. : N | |||
DIF- | DIF-Test output (LDIFOUT) ................ : N | ||
Log protocol output (LLOGOUT) ............ : N | |||
LTSTOUT ....................... : N | LTSTOUT .................................. : N | ||
LBFFKT ........................ : N | LBFFKT ................................... : N | ||
LBFOUT ........................ : N | LBFOUT ................................... : N | ||
* | *Description: | ||
*------------- | *------------- | ||
</bluem> | </bluem> | ||
== | ==Explanations== | ||
=== | ===Time increment=== | ||
* <code> | * <code>Time increment duration [min]</code>: | ||
: | :A Value between 1 and 43200 (= 30 days) | ||
* <code> | * <code>Time increment month = M</code>: | ||
: | :If <code>M</code> is chosen here, the <code>Time increment duration [min]</code> option will be ignored and a (variable) time increment of excactly one month will be utilised, which beginns at the first of a month and ends with the first of the following month. | ||
=== | ===Initial conditions=== | ||
* <code> | * <code>Losses due to troughs [mm]</code>: | ||
: | : Trough losses of the sealed areas ( for further information go to [[Natürliche_Einzugsgebiete#Oberflächenwasservorrat (Versiegelter Flächenanteil) O | Theorie:Oberflächenwasservorrat (Versiegelter Flächenanteil)]]) | ||
* <code> | * <code>Initial reservoir content [%]</code>: | ||
: | :Refers to the [[BEK-Datei]], which contains the rain overflow basisn as well as the rain retention basins of the urban drainage system. The initial reservoir content of a dam is configured in the [[TAL-Datei]]. | ||
* <code> | * <code>Initial soil moisture</code>: | ||
: | :Global initial soil moisture which will be used as the initial soil moisture of each individual HRU[[EZG-Datei|Einzugsgebiete]]. | ||
=== | ===Output options=== | ||
* <code>... | * <code>... Probabilities [Y/N]</code>: | ||
: | :If activated file will be created containing the probability distribution of the results ([[PRB-Datei]]). However this file will only be created for elements for which both the output of the hydrograph and the output of the balance has been activated( for further information go to [[SYS-Datei]]). | ||
* <code>... CSV-Format [J/N]</code>: | * <code>... CSV-Format [J/N]</code>: | ||
: | :By enabling this option the values in the result-files ([[WEL-Datei|WEL]] and [[KWL-Datei|KWL]]-Dateien) will be separated by semicola. This is very useful for Excel! | ||
=== | ===Further output options=== | ||
* <code> | * <code>HRU-Discharge wave output (LEFLWELOUT). :</code> | ||
: | : Creates a [[EFL.WEL-Datei]] containing a detailed discharge wave (inlcuding soil moisture)for individual HRUs (this option musst be activated for desired HRUs in the [[EFL-Datei]]!) | ||
* <code> | * <code>HRU-Soil parameters (LEFLOUT)... :</code> | ||
: | : Writes the mean soil parameters of the three calculation horizons for each HRU into a [[EFL.TXT-Datei]]. | ||
* <code>DIF- | * <code>DIF-Test output (LDIFOUT) ..... :</code> | ||
: | : Creates a Debugreport for the calculation including diffusen sources | ||
* <code> | * <code>Log protocol output (LLOGOUT) .... :</code> | ||
: | : Will create a log protocol ([[$LOG.TXT]]) | ||
* <code>LTSTOUT ....................... :</code> | * <code>LTSTOUT ....................... :</code> | ||
: ( | : (Control)output of each step of the simulation ( Which step was completed? Which function was called?) | ||
* <code>LBFFKT ........................ :</code> | * <code>LBFFKT ........................ :</code> | ||
* | * Output of soil functions for each time increment | ||
* <code>LBFOUT ........................ :</code> | * <code>LBFOUT ........................ :</code> | ||
: | : Old Debugoutput for soil moisture, contained and improved in LEFLWELOUT and LEFLOUT | ||
[[Kategorie:BlueM Eingabedateien]] | [[Kategorie:BlueM Eingabedateien]] |
Revision as of 06:02, 18 December 2012
BlueM.Sim | Download | Application | Theory | Development
Input files · ALL SYS · FKT KTR · EXT JGG WGG TGG · TAL HYA TRS EIN URB VER RUE BEK EZG FKA · BOA BOD LNZ EFL · DIF
General Information
File
*General Information (*.ALL) *========================== Characterization.....................: Reservoir Management *Main titels: *-------------------- ................................: ................................: ................................: *Simulation Period: *--------------------- Day.Month.Year hh:mm - Day.Month.Year hh:mm SimBeginn - SimEnde ............: 01.11.1979 08:00 - 31.10.1980 08:00 *Time increment: *------------ Time increment duration [min] .............: 30 Time increment month = M ..................: *Initial conditions: *------------------- Losses due to troughs [mm] ................: 1 Initial losses [%] ........................: 100 Channel flow [% of MQ] ....................: 100 Initial reservoir content [%] .............: 100 Initial soil moisture [%] .................: 100 *Simulation options: *------------------- Control functions .................. [Y/N] : N Calculation of (primary)obejective [Y/N] : N *Calculation parameters: *-------------------- Nominal exponent deviation value ..........: 0 Error margin at water gage [%] ............: 0 Error margin (primary)objective [%] .......: 0 *Output options: *--------------- Output of maximum events ........... [Y/N] : N Output of balance .................. [Y/N] : N ... Probabilities ...................[Y/N] : N Hydrograph output .................. [Y/N] : Y ... CSV-Format ..................... [Y/N] : Y ... Binary output .................. [Y/N] : N Animation .......................... [Y/N] : N *Diffuse Sources: *------------- Calculation ...............................: 0 Number of Substances ......................: 0 *Further output options: *------------- HRU-Discharge wave output (LEFLWELOUT).... : N HRU-Soil properties (LEFLOUT)............. : N DIF-Test output (LDIFOUT) ................ : N Log protocol output (LLOGOUT) ............ : N LTSTOUT .................................. : N LBFFKT ................................... : N LBFOUT ................................... : N *Description: *-------------
Explanations
Time increment
Time increment duration [min]
:
- A Value between 1 and 43200 (= 30 days)
Time increment month = M
:
- If
M
is chosen here, theTime increment duration [min]
option will be ignored and a (variable) time increment of excactly one month will be utilised, which beginns at the first of a month and ends with the first of the following month.
Initial conditions
Losses due to troughs [mm]
:
- Trough losses of the sealed areas ( for further information go to Theorie:Oberflächenwasservorrat (Versiegelter Flächenanteil))
Initial reservoir content [%]
:
- Refers to the BEK-Datei, which contains the rain overflow basisn as well as the rain retention basins of the urban drainage system. The initial reservoir content of a dam is configured in the TAL-Datei.
Initial soil moisture
:
- Global initial soil moisture which will be used as the initial soil moisture of each individual HRUEinzugsgebiete.
Output options
... Probabilities [Y/N]
:
- If activated file will be created containing the probability distribution of the results (PRB-Datei). However this file will only be created for elements for which both the output of the hydrograph and the output of the balance has been activated( for further information go to SYS-Datei).
... CSV-Format [J/N]
:
- By enabling this option the values in the result-files (WEL and KWL-Dateien) will be separated by semicola. This is very useful for Excel!
Further output options
HRU-Discharge wave output (LEFLWELOUT). :
- Creates a EFL.WEL-Datei containing a detailed discharge wave (inlcuding soil moisture)for individual HRUs (this option musst be activated for desired HRUs in the EFL-Datei!)
HRU-Soil parameters (LEFLOUT)... :
- Writes the mean soil parameters of the three calculation horizons for each HRU into a EFL.TXT-Datei.
DIF-Test output (LDIFOUT) ..... :
- Creates a Debugreport for the calculation including diffusen sources
Log protocol output (LLOGOUT) .... :
- Will create a log protocol ($LOG.TXT)
LTSTOUT ....................... :
- (Control)output of each step of the simulation ( Which step was completed? Which function was called?)
LBFFKT ........................ :
- Output of soil functions for each time increment
LBFOUT ........................ :
- Old Debugoutput for soil moisture, contained and improved in LEFLWELOUT and LEFLOUT