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- W2074469432 abstract "Abstract The industry is faced with the task of producing hydrocarbon from increasingly tighter reservoir rock, including low-permeability sand and shale. As a consequence, the selection of an appropriate well type and fracture-stimulation design is becoming more critical to project success. The purpose of this paper is to provide some clarity by providing a general understanding about the effects of well-type selection and hydraulic-fracture design on hydrocarbon recovery for various reservoir-permeability scenarios. Well types modeled include vertical, stimulated vertical, horizontal, axial-stimulated horizontal, and transverse stimulated horizontal with variations in compartment length and effective fracture length. This information has proven useful in the evaluation and planning of moderate to low to ultralow-permeability well projects. The summaries presented in this paper are a compilation of the results from numerous simulator runs for black oil, gas condensate, and gas cases. These simulator runs included sensitivities on well type and permeability to compare recovery and production. Important conclusions pertaining to the recovery of hydrocarbon from low-permeability reservoirs and shale are made. In addition to validating the obvious conclusion about the increasing difficulty in recovering hydrocarbons from lower-permeability rock, a primary conclusion is that, as reservoir permeability decreases, proper well-type selection and correct hydraulic-fracture-stimulation design becomes much more crucial. The conclusions also show that, for a given permeability, obtaining significant recovery of oil can be a much more difficult problem than with dry gas." @default.
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- W2074469432 date "2010-06-14" @default.
- W2074469432 modified "2023-09-30" @default.
- W2074469432 title "Evaluating the Effects of Well-Type Selection and Hydraulic-Fracture Design on Recovery for Various Reservoir Permeability using a Numeric Reservoir Simulator" @default.
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- W2074469432 doi "https://doi.org/10.2118/130108-ms" @default.
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