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GEOMARK RESEARCH STUDY

High to Low Frequency Nuclear Magnetic Resonance Comparisons and Learnings

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Objective

Compare and contrast the learnings from high versus low frequency nuclear magnetic resonance (NMR) acquisitions on the same samples to understand benefits or limitations of both. Develop an improved, innovative workflow for fluid-filled pore body measurements and the impact on quantification.

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Business Impact

Recommends Best Practices in quantification of fluid-filled storage, as well as noting scalar challenges when integrating into wireline data extrapolation.

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Interpretation

The data shown below are from an integrated petrophysical workflow, where rotary sidewall core measurements were used to constrain property evaluation. In addition, T1T2 2D maps and interpretation were utilized to differentiate hydrocarbon versus water-prone pore volumes as an indication of formation potential.

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