Creep Properties of Shale and Predicted Impact on Proppant Embedment for the Caney Shale, Oklahoma

Author:

Benge Margaret,Katende Allan,Rutqvist Jonny,Radonjic Mileva,Bunger AndrewORCID

Funder

Oil and Natural Gas

Publisher

Springer Science and Business Media LLC

Subject

Geology,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering

Reference32 articles.

1. ASTM D7012-14 (2014) Standard Test Methods for Compressive Strength and Elastic Moduli of Intact Rock Core Specimens under Varying States of Stress and Temperatures. ASTM International

2. Awejori GA, Luo G, Grider C, Katende A, Radonjic M, Doughty C, Spycher N, Paronish T, O’Connell L, Rihn A (2021) Fracturing Fluid-Induced Mineralogy Changes and Impact on Elastic Properties for the Caney Shale, Oklahoma. Presented at the 55th US Rock Mechanics/Geomechanics Symposium, Houston, 18–25 June. ARMA-21–2004

3. Awejori GA, Doughty C, Spycher N, Paronish T, Radonjic M (2022) Geochemical reactions of simple fracturing fluids with caney shale. Energy Fuels 36(17):10064–10081

4. Bai M (2016) Why are brittleness and fracability not equivalent in designing hydraulic fracturing in tight shale gas reservoirs. Petroleum 2(1):1–19

5. Bandara K, Ranjith P, Rathnaweera T (2019) Improved understanding of proppant embedment behavior under reservoir conditions: a review study. Powder Technol 352:170–192

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