Rock Characterization with Ingrain Services - Petrophysics

Obtain quantitative high-frequency CT data and high-resolution petrophysical interpretation

Ingrain’s proprietary methodology CoreHD® service extracts the effects of chemical composition and density through high resolution dual energy computed tomography (CT) imaging. CT bulk density and PE are combined with spectral gamma ray logs to rapidly deliver a detailed analysis of lithology, porosity, rock facies and depositional sequences. This analysis, combined with rock properties obtained at higher resolution (ShalePay® service), provides critical information for identifying optimal landing zones. It also identifies stacked thin-bedded frac barriers not resolved by log data.

Obtain volume fractions while maintaining spatial distribution

Unravel the quantification of all represented pore types at various scales to better understand the effective rock properties contributing to storage and flow in your reservoir. In unconventional shale reservoirs, it quantifies the different porosity types: organic porosity (PAOM), intergranular porosity (IG) and total porosity (PHiT). It also quantifies the fraction of original solid organic matter that has been preserved and converted to porosity, abbreviated “Apparent Transformation Ratio” (ATR).

Cost-effectively predicts fluid flow transport

Compute grain and pore morphology to rapidly asses the fluid flow potential of your reservoir. Use this data to efficiently calibrate openhole logs and other lab data sets for more precise, effective porosity and permeability quantification.

ZoneID® and PoreHD® Services
Understand the pore system and quantify the relative producibility of different rock textures with Ingrain’s state-of-the-art imaging and interpretation in 2D and 3D. Our proprietary offering provides unmatched image quality and a quantitative understanding of representative volume fractions and pore morphology.
CoreHD® Service & CoreHD® Plus Service High Resolution Dual Energy CT Imaging
Providing early visibility into the critical properties of whole core through continuous, high-resolution rock property logs in relevant timeframes.

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