k1m190r / reservoir-geomechanics

Worked solutions of Prof. Mark Zoback's Reservoir Geomechanics course (StanfordOnline: GEOPHYSX0001) homeworks implemented using Python in ipynb notebooks

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Reservoir Geomechanics Course by Prof. Mark Zoback (Spring 2020, Stanford Uni)

Worked solutions of Prof. Mark Zoback's Reservoir Geomechanics Spring Course 2020 (StanfordOnline: GEOPHYSX0001) homeworks implemented using Python in ipynb notebooks

His course is provided in EdX online learning website.

👉 Course videos and presentation slides stored in this Google Drive (not free access)

Week Topic Homework PDF Worked Solution
1 Overburden stress and porosity PDF Notebook
2 Estimating the Onset of Overpressure PDF Notebook
3 Estimating Rock Strength from Geophysical Logs PDF Notebook
4 Estimating Bounds on the Maximum Horizontal Stress PDF Notebook
5 Analyzing Natural Fractures PDF Notebook
6 Constraining the Maximum Horizontal Stress from Wellbore Failure PDF Notebook
7 Development of a Geomechanical Model PDF Notebook
8 Identifying Critically Stressed Fractures PDF Notebook

Unconventional Reservoir Geomechanics Course by Prof. Mark Zoback (Spring 2020, Stanford Uni)

Worked solutions of Prof. Mark Zoback's Unconventional Reservoir Geomechanics Spring Course 2020 (Stanford Online: GEOPHYSX0004) homeworks implemented using Python in ipynb notebooks

More advanced course continuation of Reservoir Geomechanics, course also available in EdX.

👉 Presentation slides stored in this Google Drive (not free access)

Week Topic Homework PDF Worked Solution
1 State of Stress in Unconventional Reservoirs PDF Notebook
2 Composition and Elastic Properties PDF Notebook
3 Ductility and Stress Magnitudes PDF Notebook
4 Permeability and Flow Mechanism PDF Notebook
5 Reservoir Seismology PDF Notebook
6 Induced Shear Slip on Faults Unavailable yet Unavailable yet

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Worked solutions of Prof. Mark Zoback's Reservoir Geomechanics course (StanfordOnline: GEOPHYSX0001) homeworks implemented using Python in ipynb notebooks

License:MIT License


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