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- W1966803669 abstract "SPE Members Abstract An analytical model has been developed to describe the inflow performance and transient pressure behavior of a horizontal well with multiple hydraulic fractures. The model has been used to compare the relative productivities of multiple fractures, the objective being to determine the conditions under which multiple fractures provide significant improvement over a single fracture. The approach used was to approximate the series of fractures as fully penetrating, uniform flux, vertical fractures in a box-shaped reservoir of closed boundaries. Interference between the multiple fractures was accounted for by the superposition of influence functions. The effect of wellbore storage and skin was incorporated by numerically converting the solution into the Laplace space. Introduction Hydraulic fracturing has been shown to be an effective way of significantly enhancing the performance of horizontal wells. It is especially beneficial in low permeability formations, and where low vertical permeability reduces the effectiveness of horizontal wells. Two types of hydraulic fractures are possible with horizontal wells; if the axis of the well is normal to the minimum horizontal stress direction then a single large fracture is formed along the axis of the well. Fractures transverse to the wellbore axis will be created when the well is parallel to the minimum horizontal stress. More complicated fracture geometries will result if the wellbore axis is not normal to either principal horizontal stress directions. This paper describes an investigation into the productivity enhancement achieved by creating multiple transverse hydraulic fractures on a horizontal well The primary objective of the study was to determine whether multiple fractures provide worthwhile improvement over a few or a single fracture. An essential feature of multiple fractures is that the fractures will ultimately interfere with each other, and this will result in reduced effectiveness at later times. Thus, more hydraulic fractures will not necessarily lead to proportionately greater productivity. P. 563" @default.
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- W1966803669 date "1995-03-11" @default.
- W1966803669 modified "2023-09-29" @default.
- W1966803669 title "Relative Productivities and Pressure Transient Modeling of Horizontal Wells with Multiple Fractures" @default.
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- W1966803669 doi "https://doi.org/10.2118/29891-ms" @default.
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