Viscoplastic behavior of evaporites and shales: an experimental approach for evaluating rock creep in the context of abandonment and well closure.

Author:

Nunes Cassiane Maria FerreiraORCID,Velloso Raquel QuadrosORCID,Mantovanelli Gabriel BaldanzaORCID,Zhemchuzhnikov Alexandr,Cirone Alessandro,Fernández Fabricio,Vargas Jr Eurípedes do Amaral

Publisher

Instituto Brasileiro de Petroleo e Gas

Subject

Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference10 articles.

1. Cella, P.R.C. (2003). Desenvolvimento e execução de ensaios triaxiais de fluência estacionária em rochas salinas sob altas pressões e temperaturas [Tese de doutorado, USP]. www.maxwell.vrac.puc-rio.br

2. Chang, C., & Zoback, M.D. (2010). Viscous creep in room-dried unconsolidated Gulf of Mexico shale (II): Development of a viscoplasticity model. Journal of Petroleum Science and Engineering, Volume 72(1–2), 50–55. https://doi.org/10.1016/j.petrol.2010.03.002

3. Costa, A.M. (1995). Simulação do comportamento de fluência do painel D1 e câmara experimental C1D1. Technical Report to Vale do Rio Doce Company. www.maxwell.vrac.puc-rio.br

4. Fjaer, E., Folstad, J.S., & Li, L. (2016). How creeping shale may form a sealing barrier around a well. ARMA 16-482., 1–8. www.armarocks.org

5. Kristiansen, T.G., Dyngeland, T., Kinn, S., Flatebo, R., & Aarseth, N.A. (2018). Activating shale to form well barriers: theory and field examples. SPE-191607-MS, 1–23. www.spe.org/en/

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