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- W2388897887 abstract "With the ordinal addition of dispersed clay particles,oil drops,conducting matrix grains,laminated shale to water and successive integration over the addition of a single inclusion,generalized matrix-conducting pore combination model in laminated and dispersed shaly sands is established.By analyzing effects of parameters of the model,we find out that shale distribution largely affects water saturation calculated by the model.Difference between the corresponding formation conductivities for the two matrix grain resistivities or the two clay particle resistivities hardly varies with total water saturation,and difference between the corresponding formation conductivities for the two laminated shale resistivities increases as total water saturation increases.The curves between formation conductivity and total water saturation are most affected by cementation exponent of matrix grains,while they are least affected by cementation exponent of dispersed clay particles.The effect of saturation exponent on the curves between formation conductivity and total water saturation increases as total water saturation increases.Testing on artificial samples with conducting rock grains it proves that the model can be applied in clay-free porous rocks with conducting grains,with a condition of formation water resistivity being less than rock grain resistivity.Two sets of rock sample data in dispersed shaly sands and logging data in laminated shaly sands and in laminated and dispersed shaly sands show that this model may be applied not only in dispersed shaly sands but also in laminated shaly sands,also can be applied in laminated and dispersed shaly sands." @default.
- W2388897887 created "2016-06-24" @default.
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- W2388897887 date "2005-01-01" @default.
- W2388897887 modified "2023-09-25" @default.
- W2388897887 title "Generalized matrix-conducting pore combination resistivity model in laminated and dispersed shaly sands" @default.
- W2388897887 hasPublicationYear "2005" @default.
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