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In Phase 1, 5 kPa/min pressure decline is the optimum pressure decline rate.
Pressure decline is largely a function of voidage, and when more reservoir zones can inject water, there is voidage replacement and pressure decline is arrested.
One test was conducted by using a varying pressure decline rate, in which 5 kPa/min pressure decline rate was applied in early timeperoid and then a larger pressure decline rate (12.5 kPa/min) was applied.
Pressure decline is very much related to the oil-in-place.
In addition to these properties, the pressure decline trend and time play significant roles.
This is because pressure decline is largely a function of voidage.
Accordingly, the bottom-hole pressure decline is less gentle than under CO2 injection.
If more zones in the reservoir are injecting water, there is voidage replacement, and thus, pressure decline is arrested.
The behaviors of permeability variations during pressure decline are also related to the pore geometry of ultra-low permeability rocks.
The effects of pressure decline rates on production performance and different driving mechanisms during CSI process were analyzed.
This study is the first to apply the PCA method in analysis of pressure decline curve in reservoir engineering.
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