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░▄ ▀████▓░ ▄▓▄ RENEGADE ░ ENTERTAiNMENT ▀ ░ ▓░ ▀▓▀ ▓ ▀░░ ░▓█████▀░░
▓█▄▄░▀▀███▀▀ ▀ ▀ PRESENTS ▀░ ░ ▀ ▀▀███▀▀░░ ░
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EMS-I Groundwater Modeling System v4.0.20031110
(c) Environmental Modeling Systems, Inc.
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░▓████░ Supplier...: Team RENEGADE Date.......: November 2003 ░████▓▓░
░▓████▓ Cracker....: Team RENEGADE Size.......: 36 x 2.88 mb ▓████▓░
░▓████▓ Tester.....: Team RENEGADE Type.......: Windows ▓████▓░
░▓████░ Packager...: Team RENEGADE Required OS: WinAll ░████▓░
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░█░ ░▀█████▄▄ Protection: FlexLM ▄▄█████▀░ ░█
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▄ ░▓███▓▀▀░ ░ ░████▓ ..[ General Release Info ].. ▓████▓ ▄▓▄ ▀▀▓███▓░░▄
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GMS is the most sophisticated and comprehensive groundwater modeling
software available! Used by thousands of people at U.S. Government
agencies, private firms, and international sites in over 90
countries, it has been proven to be an effective and exciting
modeling system. GMS provides tools for every phase of a groundwater
simulation including site characterization, model development,
calibration, post-processing, and visualization. GMS supports both
finite-difference and finite-element models in 2D and 3D including
MODFLOW 2000, MODPATH, MT3DMS/RT3D, SEAM3D, ART3D, UTCHEM, FEMWATER
and SEEP2D. Regardless of your modeling needs, GMS has the tools!
Thanks to the graphical tools of GMS, with standard MS Windows
functionality, building models and viewing results is very easy and
intuitive. All modeling parameters are entered through interactive
graphics and easy-to-use dialog boxes. Though the software reads and
writes native model input/output files, there is no need to worry
about formatting text files to get the models to run nor will you
need to search through text output files to find the results from
the model run.
Thanks to simple CAD/GIS style tools and functionality, you will
find that manipulating digital terrain data and GIS data to
delineate watersheds and compute model input parameters is very
smooth. Further, presentation of results of your work will be
impressive and easy to understand.
GMS is a powerful graphical tool for model creation and
visualization of results. Models can be built using digital maps and
elevation models for reference and source data. During the model
building process, the graphical representation of the model allows
quick review and presentation of your work. Fully 3D views, with
contouring and shading, of your model allow anyone to see and
understand the domain and parameters of your analysis.
A groundwater model can be displayed in plan view or 3D oblique
view, and rotated interactively. Cross-sections and fence diagrams
may be cut arbitrarily anywhere in the model. Hidden surface
removal, and color and light source shading can be used to generate
highly photorealistic rendered images. Contours and color fringes
can be used to display the variation of input data or computed
results. Cross-sections and iso-surfaces can be interactively
generated from 3D meshes, grids, and solids, allowing the user to
quickly visualize the 3D model.
Both steady-state and transient solutions can be displayed in an
animated format (as if viewing a movie) using either vector,
iso-surface, color fringe, or contour animation. For example,
animation of a transient solution allows the user to observe how
head, drawdown, velocity, and contaminate concentration vary with
time. In addition, GMS can also sweep an iso-surface through the 3D
model. The minimum and maximum iso-surface values are determined
from the model and the program will then linearly interpolate and
display multiple iso-surfaces in rapid succession. This allows the
user to quickly understand the spatial variation of a contaminant
plume, for example.
The GMS interface is separated into several modules; these modules
contain tools that allow manipulation and model creation from
different data types.
One of the most exciting new features in GMS v4.0 is a suite of
tools for performing stochastic simulations with MODFLOW and
accompanying transport models.
Two approaches are supported for setting up stochastic simulations:
parameter randomization and indicator simulation. The parameter
randomization can be done using either a ôMonte Carloö or a ôLatin
Hypercubeö approach. The indicator simulation approach randomizes
the spatial distribution of the parameter zones using the T-PROGS
software. The T-PROGS software is used to perform transition
probability geostatistics on borehole data. The output of the
T-PROGS software is a set of N material sets on a 3D grid. Each of
the material sets is conditioned to the borehole data and the
materials proportions and transitions between the boreholes follows
the trends observed in the borehole data. These material sets can be
used for stochastic simulations with MODFLOW.
The Risk Analysis Wizard is a new tool associated with the
stochastic modeling tools in GMS. Two types of analysis are
currently supported: probabilistic threshold analysis and
probabilistic capture zone delineation. This wizard allows you to
quantify the risk of a contaminant exceeding critical levels in
groundwater or the risk of a capture zone including key areas at a
site. Such analysis helps determine appropriate action to be taken
in design or remediation.
Calibration is the process of modifying the input parameters to a
groundwater model until the output from the model matches an
observed set of data. GMS includes a suite of tools to assist in the
process of calibrating a groundwater model. Both point and flux
observations are supported. When a computed solution is imported to
GMS, the point and flux residual errors are plotted on a set of
calibration targets and a variety of plots can be generated showing
overall calibration statistics. Most of the calibration tools can be
used with any of the models in GMS. Automated parameter estimation
is supported for MODFLOW models via MODFLOW PES, PEST, and UCODE.
Numerical models are programs that are separate from GMS that are
used to run an analysis on a model. The models can be built in GMS,
and then run through the numerical model program. GMS can then read
in and display the results of the analysis. GMS also has the option
of using a ômodel wrapperö to run the model and display real-time
results of during the model simulation.
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░█████▄░ ▄▄██▀▀░████▓ ..[ Install Notes ].. ░▓████░▀▀██▄▄░ ░▄█████░
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Install the program, run our keygenerator and register with the
generated key (when being asked, select to register with password)!
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░█████▄░ ▄▄██▀▀░████▓ R E N E G A D E ░▓████░▀▀██▄▄░ ░▄█████░
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░░▓█▄░▀██▄░ ▄ ▀ ░▄██▀ ▄█▓ ░
░▓██ ▓███░ By sick fate we are born ░███▓░██▓░
░▓██░████░ They should have used condoms ░████░██▓░
░ ░▓██░▓█████▓ Everything is being blamed on us ▓█████▓ ██▓░
▄▄██▀░▄█████▓░ Mistakes, their fuck-ups ░▓█████▄░▀██▄▄
▄ ▀▀█████▀▀ ░▀▀█████▀▀ ▄
█▓█▄ Weight of the world on shoulders ▄█▓█
▀▀ ▄▄█████▄▄ Mentally so close to breakdown ▄▄█████▄▄░ ▀
░▓█████▀░▄██▀▀ Life tends to become distorted ▀▀██▄░▀█████▓░
▓█████▓░██▓░ ░ When everything is shit except piss ░▓██ ▓█████▓
░████░██▓░ ░▓██░████░
░███▓ ██▓░ Suicide is not a solution ░▓██░▓███░
▀ ░▀██▄░▀█▓░░ But it remains an excellent option ░ ▓█▀ ▄██▀░ ▄
▄▄▄██████▄▄░ Perhaps the time is ripe to go ░▄▄██████▄▄▄
▀▀ ░▀█████░ Time to harvest what we have sown ░█████▀░ ░▀▀
░ ▓████░ ░████▓ ▄
░ ░▄███▀ From wet womb we are torn ░▀███▄░ ░
▄█▀▀▀▀░ Thrown in their nightmare world ░▀▀▀▀█▄
▄█░ Year after year being pushed too far ▓█▄
█▓▒░ Till we cross the final line ░▓█
███▄▄▄▄▄▄▄▄░ ░ ░ ▄▄▄▄▄▄▄▄███
░███▄▄░▀▀████▄ Suicide is not a solution ▄████▀▀░▄▄███░
░ ▀█████▄▄░▀██ But it remains an excellent option ██▀░▄▄█████▀░
▄ ▀▀████▄░▀ Perhaps the time is ripe to go ▀░▄████▀▀░ ░
░ ▀ ░████▓░ Time to harvest what we have sown ░▓████░ ▀ ░
▄▀▄▓▄ ▓████░ Rotten seeds have now grown up ░████▓ ▄ ▀▄
░██░ ▀ ▓████░ Separate them from the good ones ░████▓░▀▓▀░██░
░▓██▄▄▄████▀░ May all deathwishes come now true ░▀████▄▄▄██▓
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░▀████▄▄ ░▀███▓ . artwork done by . ░▓███▀ ░▄▄████▀░
░▀▀▀███▄ ▀▀█▄ ., olli^cro ,.. ▄█▀▀ ░▄███▀▀▀░
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