IngeosMAP (iMAP)®

IngeosMAP (iMAP)® is the first product in the special-purpose software, and allows to fully solve a wide range of problems related to technologies of G&G data mapping, prediction and integration.

Ten advantages of the IngeosMAP software (iMAP):

  • Complete cycle technology to work with 2D geological models
    • Data import/export
    • Interpretation
    • Analysis
    • Editing
    • Export and printing of graphics
    • Project-based storage of prepared graphical annexes and figures
  • Integration of geological and geophysical information
    • Classification with building a matrix of classes: analysis of geological and geophysical interpretation objects (structural suftaces, thickness maps, petrophysical properties, potential field continuations, etc.), and identification of anomalies of one character against the background of the other
    • Multiple linear regression with automated validation of references and regressors
    • Determination of the best combination from any number of regressors and references
    • Calculation of pair correlation coefficients
    • Statistical values output (both graphical and tabular)
  • Fast, flexible, interactive editing of grid models
    • Temporary polygones: local smoothing, grid blanking taking into account fault lines geometry; copy-paste of grid fragment from one grid to another
    • Interactive editing of grid with the use of vectors: changes in grid occur along any number of vector directions
  • Full-featured graphical visualization of objects
    • Build axonometric projections, visualization in the form of composite vector objects; building pie/clock charts, etc.
    • Colour scale editor for grid-type objects; large variety of icons for well data displaying and line types for linear objects (pich-out, alternation, GWC, etc.); transparency control for all object types.
  • Flexible settings for grid smoothing
    • Along faults, lines, contours
    • Inside/outside of polygons
    • With arbitary window size for each cell (window is grid-dependent), etc.
    • Window-based smooting taking into account fault line geometry (if any) is used
  • Frequency decomposition
  • Automated correction (matching) according to well data and linear objects taking into account faults
  • Method of automated validation
  • Statistical analysis of links
  • Calculator for coordinates conversion
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