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- W2183403640 abstract "Summary Hydraulic fracturing of low-permeability shales is an essential step in hydrocarbon extraction from these rocks. Often this is accomplished with multiple treatment stages by perforating short lengths of a horizontal borehole and pumping the high pressure fluid through these perforations, with a plug to isolate previous stages, to create fractures in the rock fabric around the borehole. In cases where it is desired to reduce the number of trips in the wellbore to deploy plugs or other tools, a diversion scheme can be used to treat multiple open perforations simultaneously. Diversion ‘slugs’ of fibre, proppant and viscous fluid can be used to control fracturing between various perforations. Realtime microseismic monitoring can be used to track which perforations are being fracc’ed, and assess the effectiveness of the diversions. Microseismic data allows the engineers to retain a large degree of control over where the fracturing fluids should go, essentially steering the fracture treatment in the rock. The case study presented here resulted from a case of poor cement in the heel section of a horizontal well and represents an example of simultaneous fracturing into a large number of open perforations. The objective was to minimize trips in the wellbore to set plugs and to afford a method of dealing with possible communication between stages behind the casing. It shows the use of real-time microseismic imaging of the fracture to guide the application of the diversion ‘slugs’ using proppant, fiber and fluid additives. By using real-time microseismic data the resulting stimulation was successful by achieving an even distribution of fractures along the perforated length of the wellbore." @default.
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- W2183403640 date "2012-01-01" @default.
- W2183403640 modified "2023-09-27" @default.
- W2183403640 title "Real-time microseismic enables effective stimulation through actively managed diversion with a Montney example" @default.
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