Data Driven Woodford Shale Risk Characterization. Kevin Morgan; Phil Fox; John Thorkelson; Madhav M. Kulkarni; Timothy Jensen Marathon Oil Company

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Data Driven Shale Risk Characterization Kevin Morgan; Phil Fox; John Thorkelson; Madhav M. Kulkarni; Timothy Jensen Marathon Oil Company

Outline Mission and Motivation Shale Overview Developing a Play Fairway Conclusions Acknowledgments MRO Cana Infill 2

Mission and Motivation Quickly provide a predictive production risk map using reservoir attributes that demonstrate a tangible impact on hydrocarbon production. Map is used to direct rig placement. Map petrophysical data multivariate linear (MVL) MVL model and key to wells with HRZ risk maps using key and Deliver map to Operation team and implement 3

Shale Overview A Shale Play A A Shale: Late Devonian Early Mississippian Thinly bedded black marine shale 50-500 thick Rich in silica Organic (2%-8% TOC) A Modified from: Northcutt and Campbell, 1995 Johnson and Luza, 2008 Oklahoma Geological Survey Publication EF 9 4

Shale Overview Well #2 12N-9W, Sec. 20 Canadian County, OK Three cores collected by MRO From basinal to upper slope environment of deposition WDFD is subdivided into three members: Upper Up per Middle Lower Midd le Variation in lithofacies and fabric type reflected in log character Lo wer 5

Developing a Play Fairway Play Fairway map was needed Prioritize future drill locations and leasing (re-leasing) opportunities Needed early on in the appraisal process Prior to creation of a large resource database Mapped attributes required Extend trends beyond well locations Quick turnaround requested 6

Central OK / Nemaha Fault Zone Developing a Play Fairway Well #1 15N-9W, Sec. 14 Kingfisher County, OK Map petrophysical risk maps using High EUR Low EUR >=100 <15 Upper Map petrophysical attributes Gross thickness, OGIP, Neutron/Density Convergence thickness, PHIT, RHOB, etc. Middle Compile primary phase gas EUR data Un-shrunk Not normalized 7

Developing a Play Fairway Map petrophysical risk maps using 1,000s of model permutations Use geo and petro attributes to model EUR Results of the analysis Identify the key geologic and petrologic attributes Provide a linear regression equation to model EUR Three Key Geological / Petrophysical Attributes: Gross Thickness N/D Convergence Thickness OGIP Plug data into software to generate 8

Developing a Play Fairway Map petrophysical risk maps using >=300 Shale Thickness Three key attributes 1. Gross Thickness <75 9

Developing a Play Fairway Map petrophysical risk maps using Three key attributes 1. Gross Thickness 2. N/D Convergence Thickness >=100 Convergence Thickness <15 10

Developing a Play Fairway Map petrophysical risk maps using Three key attributes 1. Gross Thickness 2. Convergence Thickness 3. OGIP >=250 BCF/Sec OGIP <50 BCF/Sec 11

Developing a Play Fairway Map petrophysical risk maps using Gross Thickness Play Fairway Risk Map Low Risk Moderate Risk High Risk High EUR Low EUR fairway risk maps for each key attribute Low, Moderate, High Risk cutoffs based on qualitative production / key attribute observations 12

Developing a Play Fairway Map petrophysical risk maps using Low Risk Moderate Risk High Risk High EUR Low EUR N/D Convergence Thickness Play Fairway Risk Map fairway risk maps for each key attribute Low, Moderate, High Risk cutoffs based on qualitative production / key attribute observations 13

Developing a Play Fairway Map petrophysical risk maps using OGIP Play Fairway Risk Map Low Risk Moderate Risk High Risk High EUR Low EUR fairway risk maps for each key attribute Low, Moderate, High Risk cutoffs based on qualitative production / key attribute observations 14

Developing a Play Fairway Map petrophysical risk maps using Low Risk Moderate Risk High Risk High EUR Low EUR Composite Play Fairway Risk Map Combination of all three risk maps 15

Developing a Play Fairway Map petrophysical risk maps using Resulting predictive model for EUR using: Gross Thickness N/D Convergence Thickness OGIP 16

Developing a Play Fairway Map petrophysical risk maps using EUR ranked probability curves Grouped by fairway risk designation Well performance indicates based on location in fairway: Low Risk outperform Moderate Risk Moderate Risk outperform High Risk 17

Developing a Play Fairway Map petrophysical risk maps using EUR bar graph Grouped by fairway risk designation Well performance indicates based on location in fairway: Low Risk outperform Moderate Risk Moderate Risk outperform High Risk 18

Developing a Play Fairway Map petrophysical risk maps using Low Risk Moderate Risk High Risk High EUR Low EUR Low Risk Locations Composite Play Fairway Risk Map 19

Conclusions The Play Fairway concept: Quick and practical method to predict economic risk early on in unconventional play Assumption is that key reservoir attributes impact production Gross Thickness - Relationship to EoD - OM content deposition / preservation OGIP - Incorporates organic richness, PHI, Sw - Determine overall gas potential of reservoir N/D Convergence Thickness - Relationship to shale petrology and mineralogical properties - Siliceous/cherty sub-facies - Predominately brittle (ideal target) - Typically fractured with elevated K and PHI 20

Conclusions Future Work To provide a high resolution assessment of fairway risk, additional multivariate work is needed that includes a more robust set of attributes that may impact production Completion style and success Wellbore targeting / orientation Seismic attributes (tectonic stress / faulting / fracturing) Petrophysical character and quality Wellbore parent / sister relationship Normalized EUR dataset (by effective lateral length) The list goes on Fractures confined to the more competent, chert sub-facies of Shale 21

Thank you! Acknowledgements: Thanks are due to Marathon Oil Company management and staff, in particular David Bernhardt, Darren Williams, Phil Fox, Joan Spaw, Kim Hlava, Dicman Alfred, Tim Moser, Larry Chadwell and the entire Shale Team who assisted with this project. Questions? This document is protected by copyright and may not be reproduced, modified, distributed, displayed, or published without the prior written permission of Marathon Oil Company or, in the case of third party materials, the owner of that content. Do not alter or remove any trademark, copyright or other notice. 22