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Exact(6)
Therefore, a 3-D model of shale lithofacies was constructed for the Longmaxi-Wufeng Shale in Fuling Gas Field, Sichuan Basin.
The coupling of molecular dynamics and LBM in tandem is proposed to simulate the CO2-shale gas displacement process based on the 3D digital model of shale obtained from focused ion beams and scanning electron microscopy.
In the present study, the Lower Silurian shale from the Fuling Block was taken as an example to establish a geological model of shale gas storage capacity and loss (Fig. 7).
The geological model of shale gas content and loss would vary with different types of shale and their geological conditions, but the basic characteristics presented in Fig. 7 should be representative of the Lower Paleozoic shale in south China.
Combined with the lost gas caused by the decrease of pressure coefficient in the shale system, the geological model of shale gas content and loss was established (Fig. 8).
In the present study, a conceptual model of shale gas content versus maturity is preliminarily suggested, which is based on the available data from the Lower Paleozoic shale of the Sichuan Basin as well as the North American shale (Fig. 6).
Similar(54)
The 3-D modeling of shale lithofacies is very helpful for optimizing the design of horizontal well trajectories and hydraulic fracture stimulation strategies.
Xiao et al. discussed the controlling factors and enrichment area evaluation of shale gas of the Lower Paleozoic marine strata in south China, and established geological and loss models of shale gas for uplifted/folded and faulted/folded areas.
Taking the southern area of the Sichuan Basin and the southeastern area of Chongqing as examples of uplifted/folded and faulted/folded areas, respectively, geological models of shale gas content and loss were proposed.
Is it then appropriate to use the classical Kn scale to develop models of shale gas flow in tight reservoirs where the nanopores are in the range of 1 1000 nm, and pore pressures can be as high as 10,000 psi?
Two example problems are presented: a smaller, three fluid/two solid/one reaction simplified model of oil shale combustion, and a larger, nine fluid/10 solid/15 reaction simulation of in situ oil shale retorting with time-dependent boundary conditions.
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