Ultra low permeability rocks such as shales exhibit complex fracture networks which must be discretely characterized in our reservoir models to evaluate stimulation designs and completion strategies properly. The pressure (Darcy’s law) and composition driven (Fick’s law) flow mechanisms when combined result in composition, pressure and saturationdependent slippage factor. The approach used in this study is to utilize pressure-dependent transmissibility multipliers to incorporate apparent gas-permeability changes resulting from multi-mechanism flows in commercial simulators. This work further expounds on the effectiveness of the theory by presenting a descriptive analysis between two commercially utilized numerical simulators. The applicability of dynamic slippage as an effective flow mechanism governing gas flow mechanisms within the computational environment of two different simulators is attempted in this analysis. Results indicate that slippage-governed flow in modelling shale reservoirs should not be ignored.
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1 October 2015
Research Article|
October 01 2015
Impact of dynamic slippage on productivity of shale reservoirs
Samarth D. Patwardhan;
Samarth D. Patwardhan
*
1
Petroleum Engineering Program, Department of Ocean Engineering, Indian Institute of Technology Madras, Chennai, India
*E-mail: samarthpatwardhan@gmail.com
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Niranjan Bhore;
Niranjan Bhore
2
Department of Petroleum Engineering, Maharashtra Institute of Technology, Pune, India
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Anirban Banerjee;
Anirban Banerjee
3
Reservoil, Inc., Mumbai, India
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G. Suresh Kumar
G. Suresh Kumar
1
Petroleum Engineering Program, Department of Ocean Engineering, Indian Institute of Technology Madras, Chennai, India
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*E-mail: samarthpatwardhan@gmail.com
Publisher: Emerald Publishing
Received:
May 05 2015
Accepted:
August 29 2015
Online ISSN: 2515-8082
Print ISSN: 1708-5284
World Journal of Engineering (2015) 12 (5): 443–451.
Article history
Received:
May 05 2015
Accepted:
August 29 2015
Citation
Patwardhan SD, Bhore N, Banerjee A, Kumar GS (2015), "Impact of dynamic slippage on productivity of shale reservoirs". World Journal of Engineering, Vol. 12 No. 5 pp. 443–451, doi: https://doi.org/10.1260/1708-5284.12.5.443
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