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  • Basic log analysis (1-2 days)
  • Unconventional Reservoir Analysis – Tight Sand, Shale and Coal (1 -4 days)
  • Cement Sheath Evaluation (1/2 day)
  • Combining Petrophysics, Stimulation and Reservoir Performance to compare treatment practices to determine the optimal treatment design.
  • Unconventional reservoirs, tight sand, coal and shale
  • Log to core studies delivery proprietary models
  • Reservoir characterization
  • Volumetric analysis of hydrocarbon in place
  • Mechanical rock property analysis
  • Geomechanical stress state analysis
  • Bypassed pay and resource potential
  • Log normalization and curve re-construction
  • Calculate the minimum horizontal stress from a Geomechanical consideration
  • Basis for understanding fracture diagnoistics
  • Wellbore failure analysis in hard rocks
  • Calculate Mechanical Rock Properties and Index of Brittleness of all rock strata with or without dipole sonic data
  • Uses measured sonic data to calibrate the model for specific areas or fields
  • Identify Coal for completion
  • Estimate Gas in Place
  • Volumetric oil or gas in place in surrounding rock strata
  • Identify potential water producing zones adjacent to the coals
  • Mechanical Rock Properties and Index of Brittleness of rock strata
  • Identify organic rich shale intervals
  • Quantify organic properties and maturity
  • Best place to frac or go horizontal
  • Volumetric oil or gas in place
  • Mechanical Rock Properties and Index of Brittleness
  • Determine proprietary relationships between core and log analysis parameters
  • Focused on determining the appropriate measurements to estimate Clay volume, Mineralogy, Porosity, Permeability and Rock Properties
  • Deliverables include the specific equations used in the analysis
  • Simplify completion decisions
  • Evaluate each zone for their resource potential
  • Mechanical Rock properties and Index of Brittleness
  • Average reservoir characterization and rock properties for each zone