Geophysical, geological, geochemical, remote sensing, GIS project collaboration, visualisation and analysis.
If you work as part of a geoscience team or have to integrate data and 3D models from many disciplines, you need Profile Analyst. Profile Analyst will deliver more results from your existing software investments through better use of visualisation and cross-product integration. Forget trying to line up 5 different maps or sections, link them live with Profile Analyst. Out of the box you can do some amazing things and then, when you are feeling comfortable, build powerful applications that replace complex workflows using our unique application template designer.
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Software tools specifically designed for magnetic and gravity interpretation.
Encom ModelVision
ModelVision provides a solution for every 3D potential field problem. Whether you work in mineral exploration, diamond exploration, petroleum exploration, environmental geophysics, engineering, unexploded ordinance or underground hazard assessment, ModelVision can provide you with a complete interpretation environment. Designed by geophysical interpreters for geophysical interpreters, ModelVision is the most advanced general purpose model-based interpretation system available.
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Encom AutoMag
AutoMag operates as an extension to ModelVision, offering a modified
Naudy solution to automated analysis of depth to magnetic sources.
AutoMag is integrated into the ModelVision environment and provides
excellent first pass interpretation, the results of which can be
interactively refined.
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Encom QuickMag
QuickMag is a revolutionary new magnetic modelling package from Encom.
Based on three years of expert systems research, Encom QuickMag
creates accurate, reliable magnetic models in less time and with less
effort than ever before.
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Noddy
Noddy is a comprehensive 3D workbench for modelling and visualising
complex geological events and simulating magnetic and gravity
responses. It is a useful tool in a range of applications including
geological imaging, geophysical interpretation, airborne survey
specification and geoscience education
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Simple presentation of your EM data is not
sufficient. If you want to understand the electrical properties of the
subsurface, then you will need one or more of our EM Tools. Our EM
Tools provide you with practical solutions from world-leading
researchers in Australia and Canada.
EM Flow
EM Flow provides accurate and fast processing of EM data. Highly
optimised routines developed by CRC-AMET researchers have
revolutionised the speed at which airborne EM data can be processed to
produce a conductivity image of the subsurface.
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EM Vision
EM Vision provides you with an advanced suite of tools for data
loading, visualisation, processing and modelling of ground transient
electromagnetic data. Tools developed by CSIRO Exploration and Mining
scientists over 20 years in support of the world’s largest exploration
companies have been packaged into one practical application.
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EM1DFM
The powerful application developed at the University of British
Columbia (UBC-GIF) is used for the inversion of almost any ground or
airborne frequency domain survey data. The program is self-contained
and provides a layered earth inversion engine that can be used for
both discrete and smooth inversion outputs.
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The University of British Columbia,
Geophysical Inversion Facility, has for many years been at the leading
edge of geophysical inversion technology with sponsorship from leading
exploration companies and government organisations.
Some of the research applications have been released and can be purchased through Encom. The programs include MAG3D and GRAV3D for voxel based potential field inversion, EM1DFM for frequency domain layered inversion, and DCIP2D and DCIP3D for resistivity and IP inversion.
MAG3D
MAG3D is a program for carrying out forward modelling and smooth
inversion of surface, airborne, and/or borehole magnetic data in three
dimensions. MAG3D uses a semi-regular 3D mesh where each volume
element (voxel) is allocated a magnetic susceptibility and the
distribution of magnetic properties created by the inversion assists
with the understanding of the subsurface geology.
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GRAV3D
GRAV3D is a program for carrying out forward modelling and smooth
inversion of surface, airborne, and/or borehole gravity data in three
dimensions. GRAV3D uses a semi-regular 3D mesh where each volume
element (voxel) is allocated a density and the distribution of
densities created by the inversion assists with the understanding of
the subsurface geology.
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DCIP2D
Performs forward modelling and inversion of DC resistivity and IP data
in two dimensions. All linear survey surface-array types, including
non-standard or un-even arrays, can be inverted. However, the GUI only
works with dipole-dipole, pole-dipole and pole-pole arrays. Wenner,
Schlumberger, gradient and other arrays can all be inverted but the
user interface does not yet handle those types of arrays.
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DCIP3D
The DCIP3D is a program that performs forward modelling and inversion
of DC resistivity and IP data over a 3D distribution of electrical
conductivity and chargeability. The programs in the library work with
data that are acquired using general electrode configurations and at
arbitrary observation locations either on the earth's surface or in a
borehole. 3D surface topography is also fully incorporated in the
modelling and inversion.
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EM1DFM
The powerful application developed at the University of British
Columbia (UBC-GIF) is used for the inversion of almost any ground or
airborne frequency domain survey data. The program is self-contained
and provides a layered earth inversion engine that can be used for
both discrete and smooth inversion outputs.
More
