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When reservoirs are layered with increasing permeability upward, water may go down to the lower permeable layers at the bottom due to the gravity force, leading to reducing a water flow rate, increasing an oil flow rate and, finally, improving an oil recovery factor.
Increasing permeability leads to increase the velocity amplitudes.
However, the average pore radius does not exhibit a sharp increasing trend with the increasing permeability.
Therefore, with increasing permeability parameter, the resistance to the fluid motion also increases.
The contribution of small throat to the permeability will be decreased with the increasing permeability.
Increasing permeability leads to the increasing magnitudes of amplitudes of velocity.
The first feature is shifted to the lower time edge with increasing permeability.
The results show a trend of increasing permeability with increasing porosity (Figure 11E).
Fracturing – both natural and induced – is extremely important for increasing permeability in otherwise low-permeability rock.
Hydraulic cutting is one of the most effective technologies for increasing permeability and stimulating gas production.
It is found that the velocity decreases but the temperature increases with increasing permeability parameter.
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