A mathematical model for estimating effective stimulated reservoir volume

Ibrahim, A.U. and Negash, B.M. and Rahman, M.T. and Suleiman, A. and Kwaku, D.D. (2021) A mathematical model for estimating effective stimulated reservoir volume. Journal of Petroleum Exploration and Production Technology.

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Abstract

This study presents a model application for the evaluation of Effective Stimulated Reservoir Volume (ESRV) in shale gas reservoirs. This current model is faster, cheaper, and readily available for estimating ESRV compared to previously published models. Key controlling parameters for efficient ESRV modeling, including geomechanical parameters and time, are considered for the model development. The model was validated for both single and multi-stage fractured reservoirs. For the single fractured reservoir, an ESRV of 3.07 � 106 ft3 was estimated against 3.99 � 106 ft3 of ESRV-FEM field data. Whereas, 7.00 � 109 ft3 ESRV was estimated from the multi-stage fractured reservoir against 7.90 � 109 ft3 of fractal-based model results. Stress dependence, time dependence, and permeability dependence of shale gas reservoirs are found to be essential parameters for the successful calculation of ESRV in reservoirs. An ESRV determined using this method can obtain the estimated ultimate recovery, propped volume, optimal fracture length, and spacing in fractured shale gas reservoirs. © 2021, The Author(s).

Item Type: Article
Impact Factor: cited By 0
Uncontrolled Keywords: Estimation; Fractals; Fracture; Petroleum reservoir engineering; Petroleum reservoirs; Shale gas, Effective stimulated reservoir volume; Fractal geometry; Fractured reservoir; Microseismic events; Model application; Multi-stages; Shale gas reservoirs; Stimulated reservoir volume; Stimulated reservoir volumes, Hydraulic fracturing
Depositing User: Ms Sharifah Fahimah Saiyed Yeop
Date Deposited: 25 Mar 2022 01:34
Last Modified: 25 Mar 2022 01:34
URI: http://scholars.utp.edu.my/id/eprint/29356

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