State of the art Test Method to Quantify Progression Rate of Carbonation of Wellbore Sealing Materials
Author:
Affiliation:
1. Halliburton, Tananger, Norway
2. Halliburton, Houston, Texas, USA
3. Department of Reservoir Technology, Institute for Energy Technology, Kjeller, Norway.
Abstract
Publisher
SPE
Link
https://onepetro.org/SPEEURO/proceedings-pdf/doi/10.2118/220113-MS/3418956/spe-220113-ms.pdf
Reference19 articles.
1. Geomechanical Behavior of Caprock and Cement: Plasticity in Hydrodynamic Seals;Carey;Energy Procedia,2014
2. Cement Sheath Integrity for CO2 Storage – An Integrated Perspective;Bois;Energy Procedia,2013
3. Thermoporoelastic model for the cement sheath failure in a cased and cemented wellbore;Valov;Journal of Petroleum Science and Engineering,2022
4. Vrålstad, T., Todorovic, J., Saasen, A., and Godøy, R. 2016. Long-Term Integrity of Well Cements at Downhole Conditions. Paper Number: SPE-180058-MS presented at the SPE Bergen One Day Seminar, Grieghallen, Bergen, Norway, April 2016. https://doi.org/10.2118/180058-MS
5. Long-term pozzolanic reaction of fly ash in hardened cement-based paste internally activated by natural injection of saturated Ca(OH)2 solution;Bui;Mater Struct,2018
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