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Mostly, overpressured zones are caused by undercompaction in which porosity is abnormally high with depth.
Datasets available in an online repository are used to build a synthetic field model in which porosity and permeability are known everywhere.
The use of ANN permitted to obtain the optimal parameter combinations for which porosity is lowered in the considered parameter ranges.
Our aim is to show that although porosity of as-anodized layers is very similar for all anodization voltages, if a subsequent pore-widening step is applied, the rate at which porosity increases is indeed different.
In reality, porosity changes might also imply changes of liquid flux, which can only be resolved in a fully coupled reactive transport model in which porosity changes imply permeability changes.
This approach is used to calculate the compression performance of aluminum foam based on ABAQUS, of which porosity is set as 56.41%, 56.71% and 58.02%, respectively, and the matrix material is ZL102.
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This second category is referred to as high-porosity model in which the porosity is large often approaching unity.
Stage IIa (85 120 °C, 145 125 Ma) is characterized by late dissolution, which enhanced porosity by 8.8%%, and the porosity increased from 3.7%to12.5%.5 %.
The initial porosity rapidly decreases due to compaction and cementation which produce porosity loss rates of 49.42% and 40.87%, respectively.
There is a slight tendency towards higher bulk porosities with increasing depth until about 3240 m, below which the porosity decreases.
Reservoir rocks may be divided into two main types: (1) those in which the porosity and permeability is primary, or inherent, and (2) those in which they are secondary, or induced.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com