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With that in mind, a second approach was developed that read the experimental cumulative distribution of throat radii and generated a best fit to the original shape of throat radius distribution.
The table shows that the high-porosity and high-permeability reservoir in the Jidong Oilfield has a strong heterogeneity, which creates the large difference and disperse distribution of throat radius.
The results show that after long-term flooding, the probability distribution of throat radius of core increases as water cut increases, which is consistent with the feature of digital core and variation of fractal dimension of pore structure.
It is showed in 3D digital core constructed based on X-ray CT scanning and study on microstructure of 3D pore network model that after long-term water flooding, the probability distribution of throat radius of core increases, and the microheterogeneity of core decreases as the water cut increases.
Here we present the results of a study of the endemic Skyros wall lizard (Podarcis gaigeae) where we study the frequency distribution of throat color morphs in different populations to infer the nature of the selective processes that are acting on the throat color morphs in mainland- and islet populations of this species.
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If permeability is greater than 1 × 10−3 μm2, the distribution range of throat will become more spreading out.
At the same time, the distribution range of throat radius becomes wider obviously, changing from 0.2 3.4 to 0.2 8.8 μm.
The distribution range of throat is narrow, changing from 0.2 0.5 to 0.2 1.0 μm, and the throat peak radius slightly increases along with an increasing permeability (as illustrated in Fig. 3).
On the contrary, if the permeability is greater than 1 × 10−3 μm2, the average throat radius will be greater than 1 μm and the distribution range of throat will spread from 0.2 3.4 to 0.2 8.8 μm.
After the cores are washed by long-term water flooding, and as the water cut increases, the fractal dimensions of large and small pore gradually decrease, mean and medium pore diameters increase, the relative sorting coefficient decreases, the distribution probability of throat radius of core generally increases, and the microheterogeneity of reservoir weakens.
Open image in new window Fig. 7 Relation between probability distribution of pore throat radius of core and water cut in Well LN2-6 Open image in new window Fig. 8 Relation between probability distribution of pore throat radius of core and water cut in Well GJ315-7.
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