Natural fractures in the Barnett Shale and their importance for hydraulic fracture treatments

Естественные трещины в сланце Барнетт и их значение для обработки гидравлическим разрывом пласта
Robert M. Reed, Julia Gale, Jon Holder
2007-03-14

Barnett Shalefracture clusteringhydraulic fracture stimulationnatural fracturessubcritical crack index
Abstract Gas production from the Barnett Shale relies on hydraulic fracture stimulation. Natural opening-mode fractures reactivate during stimulation and enhance efficiency by widening the treatment zone. Knowledge of both the present-day maximum horizontal stress, which controls the direction of hydraulic fracture propagation, and the geometry of the natural fracture system, which we discuss here, is therefore necessary for effective hydraulic fracture treatment design. We characterized natural fractures in four Barnett Shale cores in terms of orientation, size, and sealing properties. We measured a mechanical rock property, the subcritical crack index, which governs fracture pattern development. Natural fractures are common, narrow (<0.05 mm; <0.002 in.), sealed with calcite, and present in en echelon arrays. Individual fractures have high length/width aspect ratios (>1000:1). They are steep (>75°), and the dominant trend is west-northwest. Other sets trend north-south. The narrow fractures are sealed and cannot contribute to reservoir storage or enhance permeability, but the population may follow a power-law size distribution where the largest fractures are open. The subcritical crack index for the Barnett Shale is high, indicating fracture clustering, and we suggest that large open fractures exist in clusters spaced several hundred feet apart. These fracture clusters may enhance permeability locally, but they may be problematic for hydraulic fracture treatments. The smaller sealed fractures act as planes of weakness and reactivate during hydraulic fracture treatments. Because the maximum horizontal stress trends northeast-southwest and is nearly normal to the dominant natural fractures, reactivation widens the treatment zone along multiple strands.
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Fracture clusters may locally enhance permeability but could be problematic for hydraulic fracture treatments.
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Fractures have very high length/width aspect ratios (>1000:1) and the population may follow a power-law size distribution with the largest fractures open.
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Individual natural fractures are steep (>75°) with dominant west-northwest trend and secondary north-south sets.
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Measured high subcritical crack index indicates fracture clustering, suggesting large open fractures exist in clusters spaced several hundred feet apart.
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Narrow sealed fractures cannot contribute to reservoir storage or permeability but act as planes of weakness that reactivate during hydraulic fracturing, widening the treatment zone along multiple strands.
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Natural opening-mode fractures in the Barnett Shale are common, very narrow (<0.05 mm), and sealed with calcite.
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Present-day maximum horizontal stress trends northeast-southwest, nearly normal to dominant natural fractures, promoting reactivation and lateral widening of hydraulic fractures.

Natural opening-mode fractures in the Barnett Shale

Their geometry, orientation, size distribution, sealing and mechanical properties (including subcritical crack index), and their role in reactivation and influence on hydraulic fracture treatment effectiveness and treatment-zone widening

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2007-03-14
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Robert M. Reed
Julia Gale
Jon Holder
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