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|name=LZKWF
|name=LZKWF
|version=4.x / August 2009  
|version=4.x / August 2009  
|version_descr= August 2009
|version_descr=September 2022
|catchwords=
|catchwords=
postprocessor<br />
postprocessor<br />
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The program LZKWF is a postprocessor for different numerical models (e.g. TRIM-2D, TRIM-3D, TELEMAC-2D, UNTRIM, UNTRIM2007 etc.). LZKWF automatically computes several characteristic numbers of water level which are independent of the presence of tides. The data must be given as time-series (in universal direct access data format). The results of LZKWF analyses may be visualised/displayed with the graphical postprocessors HVIEW2D (for 2D/3D-data) or LQ2PRO (for profile-data).
The program LZKWF is a postprocessor for different numerical models (e.g. TRIM-2D, TRIM-3D, TELEMAC-2D, UNTRIM, UNTRIM2007 etc.). LZKWF automatically computes several characteristic numbers of water level which are independent of the presence of tides. The data must be given as time-series (in universal direct access data format). The results of LZKWF analyses may be visualised/displayed with the graphical postprocessors HVIEW2D (for 2D/3D-data) or LQ2PRO (for profile-data).


Within the period of data analysis the following characteristic numbers (independent of tides) can be (optionally) calculated:
Within the period of data analysis the following [[Characteristic Numbers of Water Level (independent of tides)|characteristic numbers (independent of tides)]] can be (optionally) calculated:


* High Water Level
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|High Water Level]]
* Low Water Level
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Low Water Level]]
* Mean Water Level
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Mean Water Level]]
* Water Level Difference
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Water Level Difference]]
* High Water Time
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|High Water Time]]
* Low Water Time
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Low Water Time]]
* Duration of Inundation
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Duration of Inundation]]
* Duration of Dry Period
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Duration of Dry Period]]
* Maximum Rise Velocity
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Maximum Rise Velocity]]
* Maximum Fall Velocity
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Maximum Fall Velocity]]
* Standard Deviation of Water Level
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Standard Deviation of Water Level]]
* Variance of Water Level
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Variance of Water Level]]
* Duration of High Water
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Duration of High Water]]
* Duration of Low Water  
* [[Characteristic Numbers of Water Level (independent of tides)#Definitions for the tide-independent characteristic numbers of water level|Duration of Low Water]]
|inputfiles=
|inputfiles=
# general '''input data''' (filetype [[LZKWF.DAT|lzkwf.dat]])
# general '''input data''' (filetype [[LZKWF.DAT|lzkwf.dat]])
# '''time series''' data which shall be analysed (files of type [[DIRZ.BIN.R|dirz.bin.r]], [[DIRZ.BIN.I|dirz.bin.i]], and [[DIRZ.BIN|dirz.bin]])
# '''time series''' data which shall be analysed (files of type [[DIRZ.BIN.R|dirz.bin.r]], [[DIRZ.BIN.I|dirz.bin.i]], and [[DIRZ.BIN|dirz.bin]])
# grid for 2D/3D-data (filetype [[GITTER05.DAT und GITTER05.BIN|gitter05.dat/bin]] or filetype [[UNTRIM_GRID.DAT|untrim_grid.dat]])
# grid for 2D/3D-data (filetype [[GITTER05.DAT and GITTER05.BIN|gitter05.dat/bin]] or filetype [[UNTRIM_GRID.DAT|untrim_grid.dat]])
: '''or''' profile-topography for profile-data (filetype [[PROFIL05.BIN|profil05.bin]])
: '''or''' profile-topography for profile-data (filetype [[PROFIL05.BIN|profil05.bin]])
: '''or''' system file for specific locations (filetype [[LOCATION_GRID.DAT|location_grid.dat]])  
: '''or''' system file for specific locations (filetype [[LOCATION_GRID.DAT|location_grid.dat]])  
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Namely
Namely


* maximum depth, and
* [[Characteristic Numbers of Morphodynamics (independent of tides)#Definitions for the Tide-Independent Characteristic Numbers of Morphodynamics|maximum depth]], and
* minimum depth.  
* [[Characteristic Numbers of Morphodynamics (independent of tides)#Definitions for the Tide-Independent Characteristic Numbers of Morphodynamics|minimum depth]].  


These quantities must be available for the same period of data analysis.  
These quantities must be available for the same period of data analysis.  
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|language=Fortran90
|language=Fortran90
|add_software= -  
|add_software= -  
|contact_original=[mailto:guenther.lang@baw.de G. Lang]
|contact_original=G. Lang
|contact_maintenance=[mailto:guenther.lang@baw.de G. Lang], [mailto:susanne.spohr@baw.de S. Spohr]
|contact_maintenance=[mailto:pos.proghome@baw.de Working group POS]
|documentation=please refer to $PROGHOME/examples/Lzkwf/
|documentation=please refer to $PROGHOME/examples/Lzkwf/
}}
}}

Latest revision as of 10:16, 6 September 2022

Basic Information

Name of Program

LZKWF

Version-Date

4.x / August 2009

Description-Date

September 2022

Catchwords

postprocessor
analysis of numerically calculated results (2D/3D and profile-data)
characteristic numbers of water level (independent of tides)
static (alternative) bathymetry
universal direct access format for 2D/3D-data
universal direct access format for profile-data
universal direct access format for data at specific locations
parallel execution for Shared Memory (SGI machines)

Short Description of Functionality

The program LZKWF is a postprocessor for different numerical models (e.g. TRIM-2D, TRIM-3D, TELEMAC-2D, UNTRIM, UNTRIM2007 etc.). LZKWF automatically computes several characteristic numbers of water level which are independent of the presence of tides. The data must be given as time-series (in universal direct access data format). The results of LZKWF analyses may be visualised/displayed with the graphical postprocessors HVIEW2D (for 2D/3D-data) or LQ2PRO (for profile-data).

Within the period of data analysis the following characteristic numbers (independent of tides) can be (optionally) calculated:

Input-Files

  1. general input data (filetype lzkwf.dat)
  2. time series data which shall be analysed (files of type dirz.bin.r, dirz.bin.i, and dirz.bin)
  3. grid for 2D/3D-data (filetype gitter05.dat/bin or filetype untrim_grid.dat)
or profile-topography for profile-data (filetype profil05.bin)
or system file for specific locations (filetype location_grid.dat)

Output-Files

  1. results of data analyses (files of type dirz.bin.r, dirz.bin.i, and dirz.bin)
  2. informative printer file (filetype lzkwf.sdr)
  3. (optional) trace of program execution (filetype lzkwf.trc)

Methodology

An arbitrary long/short period of time can be chosen to calculate characteristic numbers of water level which are independent of tides. For every node of the grid the given time-serie is analysed automatically by means of several analyses modules. An (optional) calculation for the maximum values of the velocities for fall and rise of the water surface takes into account an averaging process of the respective velocities for a user-defined time intervall (typically 30 minutes).

For visualization of results with alternative bathymetry some additional results of program LZKMF are required.
Namely

These quantities must be available for the same period of data analysis.

Program(s) to run before this Program

DIDARENAME, DIDASPLIT, ZEITR

Program(s) to run after this Program

ABDF, DIDARENAME, DIDASPLIT, HVIEW2D, LQ2PRO, VTDK, VVIEW2D, XTRDATA

Additional Information

Language

Fortran90

Additional software

-

Original Version

G. Lang

Maintenance

Working group POS

Documentation/Literature

please refer to $PROGHOME/examples/Lzkwf/


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Overview