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GEOMARK RESEARCH STUDY

Atomic Scale Investigation of Mineralogical Constituents and the Relation to Rock Based Laboratory Property Variation

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Objective

Develop in-depth technical association and workflow of ion-ablation results with other laboratory techniques to advance understanding of critical rock property differences in developing plays.

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Business Impact

Provides inexpensive, almost-real-time application of rock property differentiation, based on atomic-scale differences that translates to rock quality assessment.

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Interpretation

Raw wireline data—petrophysical properties, including total organic carbon (wt %), S1 (mg/g), mineralogical model, total porosity (PHIT), and total water saturation (SWT)—were integrated with mud gas isotope-generated data. The data log displayed in the below table shows the utilization of the mud gas isotopes with the petrophysical properties to identify and interpret distinct zones in the Uinta Basin’s stratigraphy.

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