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Use of image log can provide fracture static parameters, and welltest analysis can provide data related to reservoir dynamic parameters.
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Use of electrical image logs also suffers from uncertainty if the absolute aperture is large.
An evaluation of the borehole condition and the mechanism of borehole failure by using image log tools would clearly help.
Orientation of predicted fractures using FEM-based geomechanical restoration correlated well with the orientation of the image log fractures.
Numerically simulated pressure responses from straddle packer tests, modelled using image logs, are matched with measured ones and the method enables the determination of permeabilities of the straddled layers.
Using welltest permeability and image log fracture spacing and aperture as input data into Eq. (10), it resulted in fracture permeability of 174,000 md.
RHOB, NPHI, GR, DT, PEF, and CAL logs used in this study, and they are the best types of logs that can be used in the identification of fracture zones and will be used for old wells without image log and core data.
The image log porosity can be used to verify accuracy of average fracture porosity estimated from welltest analysis.
Image log is a high resolution "pseudo picture" of borehole wall.
In this study, we present a novel method that can be used to estimate formation permeability and porosity from borehole image logs –instead of simple logs– using deep autoencoders.
Finally, the precision of the geomechanical model was evaluated using natural fracture observations in the FMS image logs.
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