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- W2048472169 abstract "Abstract An integrated field development study was performed to develop a shale oil field onshore Australia. Preliminary reservoir characterization indicated that the primary reservoir is very tight with permeability approximately equal to or less than 0.001 mD, containing mainly oil of API gravity close to 41°. Thus, the reservoir is a good candidate for multistage hydraulic fracturing of a long horizontal well oriented along the minimum horizontal stress to achieve a commercially viable recovery level. A geomechanical model was developed for the field characterizing in-situ stresses, direction of the minimum horizontal stress and rock elastic properties for appropriate well orientation and hydraulic fracture design. The primary challenge in hydraulic fracturing optimization for this reservoir was optimizing the treatment to fracture the entire gross thickness of approximately 600 ft while achieving as long a fracture as possible to maximize the recovery. This objective required optimization of fracturing fluid viscosity, injection rate and perforation interval to overcome the stress barriers within the reservoir. The final stage of optimization involved the number of transverse fractures on the horizontal well (i.e. fracture spacing) incorporating the forecast of post-fracture production and net present value for every alternative scenario. Required fluid volume, proppant mass and pump capacity were useful in estimating the total well drilling and completion cost. When the total well cost was compared against the revenue from the predicted recovery resulting from the optimum fracture treatment, the field was found to be marginal. The overall study enabled decision-making for future drilling, completion and production operations in the field." @default.
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- W2048472169 date "2014-11-10" @default.
- W2048472169 modified "2023-09-25" @default.
- W2048472169 title "Multistage Hydraulic Fracturing Optimization for a Shale Oil Field Integrating Geomechanics and Production Modelling" @default.
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- W2048472169 doi "https://doi.org/10.2118/172097-ms" @default.
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