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Firstly, a three-dimensional (3D) reservoir model including multiple natural fractures was built to investigate the flow of nanoparticles and the distribution of volume magnetic susceptibility (VMS) when injecting magnetic nanoparticles.
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In addition, complex fracture network is more easily formed if multiple weakly cemented natural fractures are orthogonal to the hydraulic fracture propagation direction.
Unlike conventional model, this new model considers multiple fractures conditions and the intersection method between natural fractures and perforated borehole.
Many tight reservoirs are extremely complex producing oil or gas from multiple layers with low permeabilities that often require enhancement by natural fractures.
Third column: Drilling-enhanced natural fractures (DENF).
Finally, the hydraulic fractures connect with the natural fractures to form a complex fracture network system.
When there are natural fractures around the wellbore, proppants can plug the natural fractures.
The induced fractures (outer fracture network) developed by the intersection of natural fractures and hydraulic fractures provide the other 20%.
Natural fractures can affect essential reservoir characteristics tremendously.
They may or may not contain natural fractures.
The creation of the natural fractures is from random sampling.
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