SHARM 1.3.1
<
Are you looking for a way to reduce stress, feel better,
get rid of bad habits and addictions?
Are you interested in self inquiry, meditation and
spiritual development?
Relaxation, self hypnosis and meditation can help you
connect with your own inner resources, allowing helpful and
constructive changes to arise.
SHARM is a software tool that helps you explore and
experience self hypnosis, relaxation and alter states of
consciousness.
Start your own Mind voyage with SHARM.
Website: thesharm/index
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1992/11/29
1992/11/26
Smart Budget 2.0.96
Smart Budget 2.0.96
<
SIMPLIFY YOUR BUDGETS!
Smart Budget. for Windows eases the daily grind by
allowing you to create complex budgets in minutes.
Unlike most accounting software, with Smart Budget,
you save your valuable time! Forget having to enter
monthly budget amounts. With Smart Budget as your
business partner, your budget calculations, expense
budgets, and revenue budgets run smoothly, helping
you glide through your day. You can define your own
settings, allowing you to create more accurate bud
and get your reports quickly and efficiently the most
important way... your way!
ARE YOU HELD HOSTAGE BY BLOATED SPREADSHEETS?
Smart Budget sets you free! Smart Budget eliminates
the drudgery of creating and maintaining dozens o
spreadsheets. Our easy to use software frees you from
inconsistent data and altered formulas by giving you
the tools that you need at your fingertips.
NO OTHER SOFTWARE GIVES YOU THE SAME FREEDOM!
Grab your contracts information quickly and easily
with our unique contracts database. No other budge
software provides such a unique feature as linking
contracts information to the calculation of the
budget. Watch budgets by contracts and by suppliers
fly from our software with just a few clicks. You will
experience freedom like you have never experienced it
before with this critical information right there
where you need it ... as soon as you need it. No
waiting. No hunting. We promise.
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SIMPLIFY YOUR BUDGETS!
Smart Budget. for Windows eases the daily grind by
allowing you to create complex budgets in minutes.
Unlike most accounting software, with Smart Budget,
you save your valuable time! Forget having to enter
monthly budget amounts. With Smart Budget as your
business partner, your budget calculations, expense
budgets, and revenue budgets run smoothly, helping
you glide through your day. You can define your own
settings, allowing you to create more accurate bud
and get your reports quickly and efficiently the most
important way... your way!
ARE YOU HELD HOSTAGE BY BLOATED SPREADSHEETS?
Smart Budget sets you free! Smart Budget eliminates
the drudgery of creating and maintaining dozens o
spreadsheets. Our easy to use software frees you from
inconsistent data and altered formulas by giving you
the tools that you need at your fingertips.
NO OTHER SOFTWARE GIVES YOU THE SAME FREEDOM!
Grab your contracts information quickly and easily
with our unique contracts database. No other budge
software provides such a unique feature as linking
contracts information to the calculation of the
budget. Watch budgets by contracts and by suppliers
fly from our software with just a few clicks. You will
experience freedom like you have never experienced it
before with this critical information right there
where you need it ... as soon as you need it. No
waiting. No hunting. We promise.
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1992/11/24
System Mechanic Professional 5.0c
System Mechanic Professional 5.0c
<
A totally integrated suite of powerful products to keep
your PC running fast, and error free.
System Mechanic Professional will solve stubbo and
frustrating problems and prevent them from reoccurring;
automatically maintain your computer for peak performance,
speed, and reliability; protect against viruses, hackers,
e mail worms, and Inteet threats;
eliminate dangerous spyware and malware parasites; ensure
personal and inteet privacy and security; recover lost
or deleted files, photos, music, and email; and much more!
System Mechanic Professional offers an unrivaled list of
features by combing six award winning products and
seamlessly integrating them into one authoritative and
easy to use solution!
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A totally integrated suite of powerful products to keep
your PC running fast, and error free.
System Mechanic Professional will solve stubbo and
frustrating problems and prevent them from reoccurring;
automatically maintain your computer for peak performance,
speed, and reliability; protect against viruses, hackers,
e mail worms, and Inteet threats;
eliminate dangerous spyware and malware parasites; ensure
personal and inteet privacy and security; recover lost
or deleted files, photos, music, and email; and much more!
System Mechanic Professional offers an unrivaled list of
features by combing six award winning products and
seamlessly integrating them into one authoritative and
easy to use solution!
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1992/11/21
WORKING MODEL 2D 2004 7.0
WORKING MODEL 2D 2004 7.0
<
Interactivity
With Working Model, you can interact
with controls while your simulation
runs. For instance, change the gains on
your PID controller in the balancing
stick problem. Or, alter the disturbance
signal during the simulation to check
the robustness of your controller.
Collision Detection
Working Model can automatically simulate
interactions among complex shapes with
collision detection and response. For
instance, simulate the liftoff in cams,
the backlash in gears, or the rolling
and slipping of wheels.
Multiple Representations
View your simulations in a variety of
representations. Watch the impact
between two automobiles as an animation
with vectors, line graphs, bar graphs,
and meters. By viewing models from many
representations, users get a better
understanding of the principles they are
studying.
: krev
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<
Interactivity
With Working Model, you can interact
with controls while your simulation
runs. For instance, change the gains on
your PID controller in the balancing
stick problem. Or, alter the disturbance
signal during the simulation to check
the robustness of your controller.
Collision Detection
Working Model can automatically simulate
interactions among complex shapes with
collision detection and response. For
instance, simulate the liftoff in cams,
the backlash in gears, or the rolling
and slipping of wheels.
Multiple Representations
View your simulations in a variety of
representations. Watch the impact
between two automobiles as an animation
with vectors, line graphs, bar graphs,
and meters. By viewing models from many
representations, users get a better
understanding of the principles they are
studying.
: krev
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1992/11/19
ArGoSoft Mail Server Pro with IMAP 1.8.6.6
ArGoSoft Mail Server Pro with IMAP 1.8.6.6
<
Freeware version of Server:
Is completely transparent. Runs as a small icon on your system
tray;
Can be loaded with Windows startup;
Supports unlimited number of accounts;
Supports SMTP authentication. Useful to protect your server from
unauthorized use;
as we mentioned above, it is fully functional server: it relays
the messages directly to Mail exchangers, bypassing your ISP.
ArGoSoft Mail Server Plus:
Does all of above;
Has password protected Administration mode;
Supports distribution lists;
Supports auto responders;
Supports basic filters;
Unlimited message size (there is a limit of 5 Megs for freeware
version);
Can listen on single IP address, rather than all addresses
available on your computer;
Has built in web server. It means, the server can be accessed
from anywhere in the World, using any popular Web browser:
Administrator can control the server, and do the maintenance of
users;
Users can access their accounts: read and send email, change
their own settings;
Web output, generated by server, can be customized;
Finger server can be disabled
ArGoSoft Mail Server Pro:
Does all of above (Freeware + Plus versions);
Has true support of multiple domains you can create accounts
with the same name, which belong to different domains;
Supports multiple IP homes (virtual domains);
Has built in mailing list server;
Has WAP interface;
Allows setup of domain administrators users who can change
domain related information via the Web interface;
Filtering of mail according to IP addresses of server which
attempts to relay mail to local users;
ORDB and MAPS support;
Easier specification of IP addresses, which do not require SMTP
authentication. Instead of listing addresses, you can specify
ranges and masks;
Supports Server Extensions special exteal dlls, which can be
plugged into the server, and process mail the way the creator of
dlls prefers
Ability to verify addresses of senders of arrived messages
Has built in utilities for diagnosing local or remote domains,
allows browsing of user mailboxes;
Allows to temporarily disable or enable users, and domain
administrators;
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HOMEPAGE: argosoft/
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<
Freeware version of Server:
Is completely transparent. Runs as a small icon on your system
tray;
Can be loaded with Windows startup;
Supports unlimited number of accounts;
Supports SMTP authentication. Useful to protect your server from
unauthorized use;
as we mentioned above, it is fully functional server: it relays
the messages directly to Mail exchangers, bypassing your ISP.
ArGoSoft Mail Server Plus:
Does all of above;
Has password protected Administration mode;
Supports distribution lists;
Supports auto responders;
Supports basic filters;
Unlimited message size (there is a limit of 5 Megs for freeware
version);
Can listen on single IP address, rather than all addresses
available on your computer;
Has built in web server. It means, the server can be accessed
from anywhere in the World, using any popular Web browser:
Administrator can control the server, and do the maintenance of
users;
Users can access their accounts: read and send email, change
their own settings;
Web output, generated by server, can be customized;
Finger server can be disabled
ArGoSoft Mail Server Pro:
Does all of above (Freeware + Plus versions);
Has true support of multiple domains you can create accounts
with the same name, which belong to different domains;
Supports multiple IP homes (virtual domains);
Has built in mailing list server;
Has WAP interface;
Allows setup of domain administrators users who can change
domain related information via the Web interface;
Filtering of mail according to IP addresses of server which
attempts to relay mail to local users;
ORDB and MAPS support;
Easier specification of IP addresses, which do not require SMTP
authentication. Instead of listing addresses, you can specify
ranges and masks;
Supports Server Extensions special exteal dlls, which can be
plugged into the server, and process mail the way the creator of
dlls prefers
Ability to verify addresses of senders of arrived messages
Has built in utilities for diagnosing local or remote domains,
allows browsing of user mailboxes;
Allows to temporarily disable or enable users, and domain
administrators;
DOWNLOAD: argosoft/files/apps/mspro.exe
HOMEPAGE: argosoft/
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1992/11/16
Cadem SeeNC Mill 6.1
Cadem SeeNC Mill 6.1
<
seeNC Mill is a tool path simulator for CNC lathes and machining
centers with Fanuc controllers.
If you are programming manually, it pays to verify your NC program
operations ahead of time. Mistakes in the NC program that aren.t
discovered until the part is being cut on the machine are very costly
when you consider all the factors.
Machining the part before machining the production part is wasted time
and a drain on company resources. The machine and operator are occupied
on non production work. The prove out process can take several
iterations to get it right and involve more time on the part of the
programmer.
Benefits of using seeNC
.Eliminate machine downtime due to single block and dry run checks.
.Avoid accidents.
.Avoid first part rejection caused by improper programming.
.Reduced machine cost no need for tool path graphics option on
machine.
Efficient verification
seeNC checks for both kinds of errors possible in an NC program: syntax
(example : use of improper G code) and logical (example : programming a
rapid traverse command when linear interpolation is intended).
Syntax error checking is done in seconds, and feedback is immediate. A
list of errors with their locations is automatically displayed. Logical
errors are checked through the graphical tool path simulation, which
dynamically shows the tool shape, position, and parameters like the
current spindle speed and feed rate.
The NC program format can be configured to suit your programming style.
For example, G02 / 03 blocks can be configured to take R or IJ.
A tools database contains standard tools with their complete geometry
definition. A tool in the database can be assigned to each tool number
in the program. Example: In a lathe program, a PCLNL2020 tuing tool
can be assigned to T1.
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seeNC Mill is a tool path simulator for CNC lathes and machining
centers with Fanuc controllers.
If you are programming manually, it pays to verify your NC program
operations ahead of time. Mistakes in the NC program that aren.t
discovered until the part is being cut on the machine are very costly
when you consider all the factors.
Machining the part before machining the production part is wasted time
and a drain on company resources. The machine and operator are occupied
on non production work. The prove out process can take several
iterations to get it right and involve more time on the part of the
programmer.
Benefits of using seeNC
.Eliminate machine downtime due to single block and dry run checks.
.Avoid accidents.
.Avoid first part rejection caused by improper programming.
.Reduced machine cost no need for tool path graphics option on
machine.
Efficient verification
seeNC checks for both kinds of errors possible in an NC program: syntax
(example : use of improper G code) and logical (example : programming a
rapid traverse command when linear interpolation is intended).
Syntax error checking is done in seconds, and feedback is immediate. A
list of errors with their locations is automatically displayed. Logical
errors are checked through the graphical tool path simulation, which
dynamically shows the tool shape, position, and parameters like the
current spindle speed and feed rate.
The NC program format can be configured to suit your programming style.
For example, G02 / 03 blocks can be configured to take R or IJ.
A tools database contains standard tools with their complete geometry
definition. A tool in the database can be assigned to each tool number
in the program. Example: In a lathe program, a PCLNL2020 tuing tool
can be assigned to T1.
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1992/11/14
Cadem SeeNC Turn 6.1
Cadem SeeNC Turn 6.1
<
seeNC Mill is a tool path simulator for CNC lathes and machining
centers with Fanuc controllers.
If you are programming manually, it pays to verify your NC program
operations ahead of time. Mistakes in the NC program that aren.t
discovered until the part is being cut on the machine are very costly
when you consider all the factors.
Machining the part before machining the production part is wasted time
and a drain on company resources. The machine and operator are occupied
on non production work. The prove out process can take several
iterations to get it right and involve more time on the part of the
programmer.
Benefits of using seeNC
.Eliminate machine downtime due to single block and dry run checks.
.Avoid accidents.
.Avoid first part rejection caused by improper programming.
.Reduced machine cost no need for tool path graphics option on
machine.
Efficient verification
seeNC checks for both kinds of errors possible in an NC program: syntax
(example : use of improper G code) and logical (example : programming a
rapid traverse command when linear interpolation is intended).
Syntax error checking is done in seconds, and feedback is immediate. A
list of errors with their locations is automatically displayed. Logical
errors are checked through the graphical tool path simulation, which
dynamically shows the tool shape, position, and parameters like the
current spindle speed and feed rate.
The NC program format can be configured to suit your programming style.
For example, G02 / 03 blocks can be configured to take R or IJ.
A tools database contains standard tools with their complete geometry
definition. A tool in the database can be assigned to each tool number
in the program. Example: In a lathe program, a PCLNL2020 tuing tool
can be assigned to T1.
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<
seeNC Mill is a tool path simulator for CNC lathes and machining
centers with Fanuc controllers.
If you are programming manually, it pays to verify your NC program
operations ahead of time. Mistakes in the NC program that aren.t
discovered until the part is being cut on the machine are very costly
when you consider all the factors.
Machining the part before machining the production part is wasted time
and a drain on company resources. The machine and operator are occupied
on non production work. The prove out process can take several
iterations to get it right and involve more time on the part of the
programmer.
Benefits of using seeNC
.Eliminate machine downtime due to single block and dry run checks.
.Avoid accidents.
.Avoid first part rejection caused by improper programming.
.Reduced machine cost no need for tool path graphics option on
machine.
Efficient verification
seeNC checks for both kinds of errors possible in an NC program: syntax
(example : use of improper G code) and logical (example : programming a
rapid traverse command when linear interpolation is intended).
Syntax error checking is done in seconds, and feedback is immediate. A
list of errors with their locations is automatically displayed. Logical
errors are checked through the graphical tool path simulation, which
dynamically shows the tool shape, position, and parameters like the
current spindle speed and feed rate.
The NC program format can be configured to suit your programming style.
For example, G02 / 03 blocks can be configured to take R or IJ.
A tools database contains standard tools with their complete geometry
definition. A tool in the database can be assigned to each tool number
in the program. Example: In a lathe program, a PCLNL2020 tuing tool
can be assigned to T1.
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1992/11/11
EMS-I GMS 5.0 DATECODE 09282004
EMS-I GMS 5.0 DATECODE 09282004
<
GMS is the most sophisticated and
comprehensive groundwater modeling
software available! Used by thousands of
people at U.S. Govement agencies,
private firms, and inteational 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, PEST, UCODE, MODAEM and
SEEP2D. Regardless of your modeling
needs, GMS has the tools!
The program.s modular design enables the
user to select modules in custom
combinations, allowing the user to
choose only those groundwater modeling
capabilities that are required.
Additional GMS modules can be purchased
and added at any time. The software will
dynamically link to these subsequent
modules at run time.automatically adding
additional modeling capability to the
software.
Groundwater Flow Transport Options
The variety of modeling options in GMS
is unparalleled! Rather than being
limited to one main model (such as
MODFLOW) and accompanying .add on.
codes, GMS provides interfaces to a wide
range of 2D or 3D models. Here is a
brief overview of the options available
to you:
2D Flow
Perform fast, easy modeling with the
MODAEM analytical element model
integrated into GMS! 2D finite element
seeepage modeling is supported in the
SEEP2D model perfect for dams, levees,
cutoff trenches, etc.
3D Flow
3D finite difference modeling with
MODFLOW 2000 (saturated zone) 3D
finite element modeling with FEMWATER
(saturated and unsaturated zone)
Solute Transport
Simple analytical transport modeling
with ART3D Simple 3D transport with
MT3D, MODPATH, or FEMWATER Reactive 3D
transport with RT3D or SEAM3D
Multi phase reactive transport with
UTCHEM
Unsaturated Zone Flow and Transport
Fully 3D unsaturated/saturated flow and
transport modeling with FEMWATER or
UTCHEM
GIS based Model Conceptualization
One of GMSs greatest strengths
traditionally has been the conceptual
model approach. This approach makes it
possible to build a conceptual model in
the GMS Map Module using GIS feature
objects (points, arcs, and polygons).
The conceptual model defines the
boundary conditions, sources/sinks, and
material property zones for a model. The
model data can then be automatically
discretized to the model grid or mesh.
The conceptual model approach makes it
possible to deal with large complex
models in a simple and efficient manner.
The GIS Module now available in GMS has
made creating conceptual models from GIS
data even easier. With direct linkage to
ArcGIS and almost any format of GIS
data, you can access geometry and
attributes faster than ever before.
Whether the GIS data is created in GMS
or imported from GIS files, the method
of model building remains the same. You
edit the model at a GIS object level and
let GMS do the hard work of grid or mesh
building and parameter assignment to
each element of the model.
3D Model Conceptualization
GMS presents new and improved tools for
the creation of complex 3D stratigraphy
models and the ability to translate that
3D object direclty to a
finite difference grid model or
fininte element mesh model.
The .Horizons. approach allows you to
create complex solids from borehole and
cross section data quickly and easily.
These tools alow you to create solids
with complex stratigraphy such as pinch
out zones, truncations, and outcroppings.
You can transfer the results (material
properties) of a solid model direclty to
a numerical model such as a MODFLOW grid
or a FEMWATER mesh. You can also
direclty generate MODFLOW 2000 HUF data
GMS is the only system that allows you
to do this!
Site Visualization
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.
Risk Assessment (Stochastic) Modeling
One of the most exciting features in GMS
is a suite of tools for performing
stochastic simulations with MODFLOW and
accompanying transport models.
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.
Two approaches are supported for setting
up stochastic simulations: parameter
randomization and indicator simulation.
The parameter randomization can be done
using either a .Monte Carlo. or a .Latin
Hypercube. 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.
Automated Model Calibration
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 to point and/or flux observations.
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 in GMS for the MODFLOW
simulations using MODFLOW PES, PEST, and
UCODE. These are sometimes called
"inverse models". Most of the steps
involved in setting up an inverse model
in GMS are the same regardless of the
selected inverse model. The basic
process for inverse modeling is: Build a
base model with MODFLOW Input observed
data (point or flux data) Indicate the
model input parameters that the inverse
model can adjust to make the model match
the observations. Let the inverse model
run it will adjust input parameters
and run the MODFLOW simulation
repeatedly until the best match betweeen
computed data and observed data is
obtained.
You can transfer the results (material
properties) of a solid model direclty to
a numerical model such as a MODFLOW grid
or a FEMWATER mesh. You can also
direclty generate MODFLOW 2000 HUF data
GMS is the only system that allows you
to do this!
: e msi
BUY EMS-I GMS 5.0 DATECODE 09282004 25$
TAGS\: oem EMS-I GMS 5.0 DATECODE 09282004, low price EMS-I GMS 5.0 DATECODE 09282004, order EMS-I GMS 5.0 DATECODE 09282004
<
GMS is the most sophisticated and
comprehensive groundwater modeling
software available! Used by thousands of
people at U.S. Govement agencies,
private firms, and inteational 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, PEST, UCODE, MODAEM and
SEEP2D. Regardless of your modeling
needs, GMS has the tools!
The program.s modular design enables the
user to select modules in custom
combinations, allowing the user to
choose only those groundwater modeling
capabilities that are required.
Additional GMS modules can be purchased
and added at any time. The software will
dynamically link to these subsequent
modules at run time.automatically adding
additional modeling capability to the
software.
Groundwater Flow Transport Options
The variety of modeling options in GMS
is unparalleled! Rather than being
limited to one main model (such as
MODFLOW) and accompanying .add on.
codes, GMS provides interfaces to a wide
range of 2D or 3D models. Here is a
brief overview of the options available
to you:
2D Flow
Perform fast, easy modeling with the
MODAEM analytical element model
integrated into GMS! 2D finite element
seeepage modeling is supported in the
SEEP2D model perfect for dams, levees,
cutoff trenches, etc.
3D Flow
3D finite difference modeling with
MODFLOW 2000 (saturated zone) 3D
finite element modeling with FEMWATER
(saturated and unsaturated zone)
Solute Transport
Simple analytical transport modeling
with ART3D Simple 3D transport with
MT3D, MODPATH, or FEMWATER Reactive 3D
transport with RT3D or SEAM3D
Multi phase reactive transport with
UTCHEM
Unsaturated Zone Flow and Transport
Fully 3D unsaturated/saturated flow and
transport modeling with FEMWATER or
UTCHEM
GIS based Model Conceptualization
One of GMSs greatest strengths
traditionally has been the conceptual
model approach. This approach makes it
possible to build a conceptual model in
the GMS Map Module using GIS feature
objects (points, arcs, and polygons).
The conceptual model defines the
boundary conditions, sources/sinks, and
material property zones for a model. The
model data can then be automatically
discretized to the model grid or mesh.
The conceptual model approach makes it
possible to deal with large complex
models in a simple and efficient manner.
The GIS Module now available in GMS has
made creating conceptual models from GIS
data even easier. With direct linkage to
ArcGIS and almost any format of GIS
data, you can access geometry and
attributes faster than ever before.
Whether the GIS data is created in GMS
or imported from GIS files, the method
of model building remains the same. You
edit the model at a GIS object level and
let GMS do the hard work of grid or mesh
building and parameter assignment to
each element of the model.
3D Model Conceptualization
GMS presents new and improved tools for
the creation of complex 3D stratigraphy
models and the ability to translate that
3D object direclty to a
finite difference grid model or
fininte element mesh model.
The .Horizons. approach allows you to
create complex solids from borehole and
cross section data quickly and easily.
These tools alow you to create solids
with complex stratigraphy such as pinch
out zones, truncations, and outcroppings.
You can transfer the results (material
properties) of a solid model direclty to
a numerical model such as a MODFLOW grid
or a FEMWATER mesh. You can also
direclty generate MODFLOW 2000 HUF data
GMS is the only system that allows you
to do this!
Site Visualization
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.
Risk Assessment (Stochastic) Modeling
One of the most exciting features in GMS
is a suite of tools for performing
stochastic simulations with MODFLOW and
accompanying transport models.
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.
Two approaches are supported for setting
up stochastic simulations: parameter
randomization and indicator simulation.
The parameter randomization can be done
using either a .Monte Carlo. or a .Latin
Hypercube. 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.
Automated Model Calibration
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 to point and/or flux observations.
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 in GMS for the MODFLOW
simulations using MODFLOW PES, PEST, and
UCODE. These are sometimes called
"inverse models". Most of the steps
involved in setting up an inverse model
in GMS are the same regardless of the
selected inverse model. The basic
process for inverse modeling is: Build a
base model with MODFLOW Input observed
data (point or flux data) Indicate the
model input parameters that the inverse
model can adjust to make the model match
the observations. Let the inverse model
run it will adjust input parameters
and run the MODFLOW simulation
repeatedly until the best match betweeen
computed data and observed data is
obtained.
You can transfer the results (material
properties) of a solid model direclty to
a numerical model such as a MODFLOW grid
or a FEMWATER mesh. You can also
direclty generate MODFLOW 2000 HUF data
GMS is the only system that allows you
to do this!
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1992/11/09
EMS-I WMS 7.0 DATECODE 11022004
EMS-I WMS 7.0 DATECODE 11022004
<
The Watershed Modeling System (WMS) is a
comprehensive graphical modeling
environment for all phases of watershed
hydrology and hydraulics. WMS includes
powerful tools to automate modeling
processes such as automated basin
delineation, geometric parameter
calculations, GIS overlay computations
(CN, rainfall depth, roughness
coefficients, etc.), cross section
extraction from terrain data, and many
more! With the release of WMS 7, the
software now supports hydrologic
modeling with HEC 1 (HEC HMS), TR 20,
TR 55, Rational Method, NFF, MODRAT, and
HSPF. Hydraulic models supported include
HEC RAS and CE QUAL W2. 2D integrated
hydrology (including channel hydraulics
and groundwater interaction) can now be
modeled with GSSHA. All of this in a
GIS based data processing framework will
make the task of watershed modeling and
mapping easier than ever before
The program.s modular design enables the
user to select modules in custom
combinations, allowing the user to
choose only those hydrologic modeling
capabilities that are required.
Additional WMS modules can be purchased
and added at any time. The software will
dynamically link to these subsequent
modules at run time.automatically adding
additional modeling capability to the
software.
Automated Watershed Delineation
Using digital terrain data, WMS can
automatically delineate a watershed and
sub basins. As part of the delineation
process, basin data such as area, slope,
mean elevation, maximum flow distance,
and many other commonly used hydrologic
parameters are automatically computed.
A new Delineation Wizard has been added
to WMS to guide first time or novice
users of the software through the
delineation process. However, many
advanced features and options are
included in WMS: Use DEMs (grids) or
TINs for delineation. You can easily
manipulate the elevation data in either
type of dataset. Add any number of
interior outlet points and let WMS
subdivide the watershed automatically.
Manipulate stream networks to represent
man made features or proposed changes in
the watershed. Override derived basin
boundaries to match your knowledge of
the watershed.
As part of the delineation process, WMS
finds all flow paths on the entire
terrain model. This allows you to
inspect flow pattes anywhere inside of
outside your watershed. Further, the
longest flow path in each sub basin is
stored for use with the Time of
Concentration Calculator. No other
system available will match the accuracy
and flexibility of the delineation
functions in WMS!
GIS Tools
WMS will allow you to take advantage of
all types of GIS data available for
hydrologic and hydraulic modeling. The
GIS module of WMS 7 includes a complete
set of tools for importing, creating,
and manipulating GIS vector and raster
data. ArcGIS/ArcView is not a required
component of the WMS software! You will
find that WMS can work with your GIS
data effectively with or without ArcGIS.
A few of the powerful tools in WMS
include: Direct linkage with ESRI.s
ArcGIS 8.x this lets you use the
powerful data catalog tools of ArcGIS in
conjunction with WMS. Terrain data can
be created, merged, and manipulated
using grids, TINs, or contour lines.
Data layers such as land use and soil
type can be clipped to match your
watershed. Attribute tables can be
joined and queried. Images (TIFF, JPEG,
MrSID) can be geo referenced, joined,
and clipped. Attributes from data layers
can be assigned to your model using GIS
overlay operations. New .data tree.
interface allows you to tu on/off,
change display, change coordinate
systems, and review contents of each
data layer quickly and easily.
Coordinate System Conversions Convert
data between geographic and planar
coordinate systems
Floodplain Modeling and Mapping
Whether you have used WMS to run a
HEC RAS model or obtained hydraulic
analysis results elsewhere, the tools
for floodplain delineation and mapping
in WMS will create the results you need
for your flood study. The powerful
interpolation algorithms in WMS allow
you to create flood extents and flood
depth maps using digital terrain data
and water surface elevation data points.
You can use the fast and easy channel
hydraulics tools in WMS to create
approximate (Zone A) maps. If you need
a detailed analysis (Zone AE or AH), you
will find the HEC RAS interface and
flood mapping tools are nicely
integrated and intuitive in WMS.
The full process of flood modeling and
mapping has been integrated into a
seamless process in WMS. Perform a
simulation with any hydrologic model
(HEC 1 or HMS, TR 20, TR 55, Rational
Method, MODRAT, NFF) and link the peak
flow or complete hydrograph to a HEC RAS
model of the river channel in your
watershed. Complete the set up of
HEC RAS with cross section cutting, area
attribute mapping (roughness values
assigned by polygons), and automated
assignment of thalweg and bank locations
and downstream distances. Once a HEC RAS
simulation is completed, you can import
the W.S.E. results directly from the
HEC RAS project files and use them to
determine the flooding extents and
depths on the terrain model in WMS.
Stochastic Modeling
Uncertainty in modeling parameters can
now be analyzed using the automated
stochastic modeling tools in WMS. These
tools simplify and automate the process
of varying certain parameters (such as
CN or roughness) in a model, creating a
model input file, and running the
simulation over and over again. Some
applications of this technology are: Use
HEC 1 with CN randomization to create
probabilistic hydrograph results. Use
HEC RAS with roughness randomization to
create probabilistic water surface
elevation results. Link HEC 1 and
HEC RAS in series with randomization to
create probabilistic floodplain maps
Storm Drain Network Modeling
WMS has the capability of storm drain
analysis using the analysis code
distributed by the FHWA as part of their
HYDRAIN program. You can create a
complete storm drain network (unlimited
pipes and nodes) tightly integrated with
your surface runoff model including
the option to link with any of the
hydrologic models supported by WMS.
StormDrain will perform all typical
hydraulic computation (HGL, WSE, etc.);
WMS provides various reporting tools for
results of the mode
2D (Distributed) Hydrology
After many years of research and
development, a 2D surface/groundwater
hydrologic model is now available in
WMS! The GSSHA model is the perfect
solution for studies which require
analysis of 2D surface flow and
groundwater/surface water interaction.
The model uses a 2D finite difference
grid to analyze surface runoff, 1D
channel hydraulics, and groundwater
interaction in a comprehensive
hydrologic cycle model. Water quality
and sediment transport processes may
also be modeled with GSSHA. The model is
capable of single event or long term
rainfall simulation; radar rainfall data
is supported in either case. Typical
applications of this model are: Flood
forecasting (depth and velocity over
entire 2D domain) Thunderstorm
(localized rainfall) flood analysis
Surface ponding and infiltration
analysis Groundwater/surface water
interaction modeling
Data Compatibility
Obtaining and formatting digital data is
often the most time consuming task in
watershed modeling. The WMS development
team has been hard at work ensuring that
WMS is compatible with as many file
formats as possible. Further, they have
dedicated a website to leaing about
and obtaining GIS data to use with WMS.
Please visit the link below to lea
about where to download free data, how
to use it, and other informaiton.
WMS GeoSpatial Data Aquisition
emrl.byu.edu/gsda/
Some of the more popular data formats
supported by WMS are: USGS DEMs
download and use any format of DEM from
the USGS. USGS NED data seamless
elevation data can be downloaded and
read into WMS. ArcGIS Raster (ASCII
format) read elevation or attribute
data in gridded format from ArcGIS. ESRI
Shape files read all shapes and
attributes into WMS. DXF and DWG CAD
files WMS now supports the latest
versions of DXF and DWG. TIFF, JPEG, and
MrSID images images along with
geo referencing information can be read
by WMS.
: e msi
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<
The Watershed Modeling System (WMS) is a
comprehensive graphical modeling
environment for all phases of watershed
hydrology and hydraulics. WMS includes
powerful tools to automate modeling
processes such as automated basin
delineation, geometric parameter
calculations, GIS overlay computations
(CN, rainfall depth, roughness
coefficients, etc.), cross section
extraction from terrain data, and many
more! With the release of WMS 7, the
software now supports hydrologic
modeling with HEC 1 (HEC HMS), TR 20,
TR 55, Rational Method, NFF, MODRAT, and
HSPF. Hydraulic models supported include
HEC RAS and CE QUAL W2. 2D integrated
hydrology (including channel hydraulics
and groundwater interaction) can now be
modeled with GSSHA. All of this in a
GIS based data processing framework will
make the task of watershed modeling and
mapping easier than ever before
The program.s modular design enables the
user to select modules in custom
combinations, allowing the user to
choose only those hydrologic modeling
capabilities that are required.
Additional WMS modules can be purchased
and added at any time. The software will
dynamically link to these subsequent
modules at run time.automatically adding
additional modeling capability to the
software.
Automated Watershed Delineation
Using digital terrain data, WMS can
automatically delineate a watershed and
sub basins. As part of the delineation
process, basin data such as area, slope,
mean elevation, maximum flow distance,
and many other commonly used hydrologic
parameters are automatically computed.
A new Delineation Wizard has been added
to WMS to guide first time or novice
users of the software through the
delineation process. However, many
advanced features and options are
included in WMS: Use DEMs (grids) or
TINs for delineation. You can easily
manipulate the elevation data in either
type of dataset. Add any number of
interior outlet points and let WMS
subdivide the watershed automatically.
Manipulate stream networks to represent
man made features or proposed changes in
the watershed. Override derived basin
boundaries to match your knowledge of
the watershed.
As part of the delineation process, WMS
finds all flow paths on the entire
terrain model. This allows you to
inspect flow pattes anywhere inside of
outside your watershed. Further, the
longest flow path in each sub basin is
stored for use with the Time of
Concentration Calculator. No other
system available will match the accuracy
and flexibility of the delineation
functions in WMS!
GIS Tools
WMS will allow you to take advantage of
all types of GIS data available for
hydrologic and hydraulic modeling. The
GIS module of WMS 7 includes a complete
set of tools for importing, creating,
and manipulating GIS vector and raster
data. ArcGIS/ArcView is not a required
component of the WMS software! You will
find that WMS can work with your GIS
data effectively with or without ArcGIS.
A few of the powerful tools in WMS
include: Direct linkage with ESRI.s
ArcGIS 8.x this lets you use the
powerful data catalog tools of ArcGIS in
conjunction with WMS. Terrain data can
be created, merged, and manipulated
using grids, TINs, or contour lines.
Data layers such as land use and soil
type can be clipped to match your
watershed. Attribute tables can be
joined and queried. Images (TIFF, JPEG,
MrSID) can be geo referenced, joined,
and clipped. Attributes from data layers
can be assigned to your model using GIS
overlay operations. New .data tree.
interface allows you to tu on/off,
change display, change coordinate
systems, and review contents of each
data layer quickly and easily.
Coordinate System Conversions Convert
data between geographic and planar
coordinate systems
Floodplain Modeling and Mapping
Whether you have used WMS to run a
HEC RAS model or obtained hydraulic
analysis results elsewhere, the tools
for floodplain delineation and mapping
in WMS will create the results you need
for your flood study. The powerful
interpolation algorithms in WMS allow
you to create flood extents and flood
depth maps using digital terrain data
and water surface elevation data points.
You can use the fast and easy channel
hydraulics tools in WMS to create
approximate (Zone A) maps. If you need
a detailed analysis (Zone AE or AH), you
will find the HEC RAS interface and
flood mapping tools are nicely
integrated and intuitive in WMS.
The full process of flood modeling and
mapping has been integrated into a
seamless process in WMS. Perform a
simulation with any hydrologic model
(HEC 1 or HMS, TR 20, TR 55, Rational
Method, MODRAT, NFF) and link the peak
flow or complete hydrograph to a HEC RAS
model of the river channel in your
watershed. Complete the set up of
HEC RAS with cross section cutting, area
attribute mapping (roughness values
assigned by polygons), and automated
assignment of thalweg and bank locations
and downstream distances. Once a HEC RAS
simulation is completed, you can import
the W.S.E. results directly from the
HEC RAS project files and use them to
determine the flooding extents and
depths on the terrain model in WMS.
Stochastic Modeling
Uncertainty in modeling parameters can
now be analyzed using the automated
stochastic modeling tools in WMS. These
tools simplify and automate the process
of varying certain parameters (such as
CN or roughness) in a model, creating a
model input file, and running the
simulation over and over again. Some
applications of this technology are: Use
HEC 1 with CN randomization to create
probabilistic hydrograph results. Use
HEC RAS with roughness randomization to
create probabilistic water surface
elevation results. Link HEC 1 and
HEC RAS in series with randomization to
create probabilistic floodplain maps
Storm Drain Network Modeling
WMS has the capability of storm drain
analysis using the analysis code
distributed by the FHWA as part of their
HYDRAIN program. You can create a
complete storm drain network (unlimited
pipes and nodes) tightly integrated with
your surface runoff model including
the option to link with any of the
hydrologic models supported by WMS.
StormDrain will perform all typical
hydraulic computation (HGL, WSE, etc.);
WMS provides various reporting tools for
results of the mode
2D (Distributed) Hydrology
After many years of research and
development, a 2D surface/groundwater
hydrologic model is now available in
WMS! The GSSHA model is the perfect
solution for studies which require
analysis of 2D surface flow and
groundwater/surface water interaction.
The model uses a 2D finite difference
grid to analyze surface runoff, 1D
channel hydraulics, and groundwater
interaction in a comprehensive
hydrologic cycle model. Water quality
and sediment transport processes may
also be modeled with GSSHA. The model is
capable of single event or long term
rainfall simulation; radar rainfall data
is supported in either case. Typical
applications of this model are: Flood
forecasting (depth and velocity over
entire 2D domain) Thunderstorm
(localized rainfall) flood analysis
Surface ponding and infiltration
analysis Groundwater/surface water
interaction modeling
Data Compatibility
Obtaining and formatting digital data is
often the most time consuming task in
watershed modeling. The WMS development
team has been hard at work ensuring that
WMS is compatible with as many file
formats as possible. Further, they have
dedicated a website to leaing about
and obtaining GIS data to use with WMS.
Please visit the link below to lea
about where to download free data, how
to use it, and other informaiton.
WMS GeoSpatial Data Aquisition
emrl.byu.edu/gsda/
Some of the more popular data formats
supported by WMS are: USGS DEMs
download and use any format of DEM from
the USGS. USGS NED data seamless
elevation data can be downloaded and
read into WMS. ArcGIS Raster (ASCII
format) read elevation or attribute
data in gridded format from ArcGIS. ESRI
Shape files read all shapes and
attributes into WMS. DXF and DWG CAD
files WMS now supports the latest
versions of DXF and DWG. TIFF, JPEG, and
MrSID images images along with
geo referencing information can be read
by WMS.
: e msi
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Granite Bear Photo One 7.7.P
Granite Bear Photo One 7.7.P
<
Photo One offers customized and automated workflow
management for digital and/or film based studios,
customer management, invoicing, order tracking, ca
control, status reporting, senior specific features,
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management for digital and/or film based studios,
customer management, invoicing, order tracking, ca
control, status reporting, senior specific features,
demographic based marketing and promotions, unlimited
calendars with support for on location appointments,
bar coding and batching, cash drawer support,
interfaces for QuickBooks, Microsoft Word, ProShots,
and much more.
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The Polar Express
The Polar Express
<
Game Notes:
~~~~~~~~~~~
Is there a Santa Claus? Get ready to adventure through eight exciting
chapters based on The Polar Express movie! A mysterious Conductor shepards
players aboard The Polar Express, and onto a jouey to meet Santa Claus
at the North Pole. On your jouey, you will meet some of the memorable
characters from the film including: the Girl Know it all, Lonely Boy,
the Hobo, Smokey and Steamer and the Elves. Gameplay rewards those who
believe. All aboard!
Meet some of the memorable characters from the film including: the
Girl Know it all, Lonely Boy, the Hobo, Smokey and Steamer and the Elves.
Play mini games, solve puzzles, and search for lost presents
Explore massive 3D environments including the North Pole and The Polar
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~~~~~~~~~~~
Is there a Santa Claus? Get ready to adventure through eight exciting
chapters based on The Polar Express movie! A mysterious Conductor shepards
players aboard The Polar Express, and onto a jouey to meet Santa Claus
at the North Pole. On your jouey, you will meet some of the memorable
characters from the film including: the Girl Know it all, Lonely Boy,
the Hobo, Smokey and Steamer and the Elves. Gameplay rewards those who
believe. All aboard!
Meet some of the memorable characters from the film including: the
Girl Know it all, Lonely Boy, the Hobo, Smokey and Steamer and the Elves.
Play mini games, solve puzzles, and search for lost presents
Explore massive 3D environments including the North Pole and The Polar
Express
Ripped:
~~~~~~~
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Woodwing Smart Connection Pro CS 3.2 for Adobe Indesign and InCopy
Woodwing Smart Connection Pro CS 3.2 for Adobe Indesign and InCopy
<
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paginated files around? Do your editors want to know if the story fits the
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