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- W2052110271 abstract "Abstract A theoretical framework is developed for radial flow of a Newtonian fluid from a single, arbitrarily inclined fracture into a borehole, as it is the case during formation fluid influx in underbalance drilling, or during oil production in naturally-fractured reservoirs. The model should be equally well applicable for the simulation of fluid flow from a borehole into a fracture, as it is the case during mudloss events in overbalance drilling. The fracture is assumed to be rectangular in shape and to obey an empirical exponential deformation law, i.e. hydraulic aperture in function of effective stress. A parametric study is carried out in order to investigate the effect of fracture inclination, fracture dimensions, fracture compressibility, and borehole position, on the flow rate dynamics. The largest in-plane size of the fracture has very little effect on the flow rate at the initial stage of the flow. It does not affect the initial peak in the flow rate versus time curve. It affects, however, substantially the flow rate at later stages, and also the total amount of produced (or lost) fluid. The smallest in-plane size of the fracture considerably affects the initial part of the curve. It also affects the total amount of produced /lost fluid. The initial peak in the flow rate is lower and the duration of the discharge is longer in case of a borehole located at the periphery of the fracture in comparison to the one located in the central part of the same fracture. This holds for different types of fracture orientation and geometry, i.e. horizontal and vertical, isometric and elongated fractures. An increase in the fracture's normal compressibility only slightly affects the height of the initial peak in the fluid flow versus time curve, but has a large effect on the tail of the curve. Higher compressibility also leads to that the cumulative amount of produced /lost fluid is higher. The results also show that the proposed model may be useful in estimating hydrocarbon reserves in place based on drilling data as well as for estimating potential production profiles and recovery factor." @default.
- W2052110271 created "2016-06-24" @default.
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- W2052110271 date "2006-11-05" @default.
- W2052110271 modified "2023-10-18" @default.
- W2052110271 title "Numerical Analysis of Radial Flow in a Natural Fracture: Applications in Drilling Performance and Reservoir Characterization" @default.
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- W2052110271 doi "https://doi.org/10.2118/103564-ms" @default.
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