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Open AccessJournal ArticleDOI

Nonlinear Seepage Model of Gas Transport in Multiscale Shale Gas Reservoirs and Productivity Analysis of Fractured Well

Ting Huang, +2 more
- 27 Sep 2015 - 
- Vol. 2015, pp 1-10
TLDR
In this paper, the effects of slippage and diffusion in nanoscale based on Beskok-Karniadakis (BK) equation, which can be applicable for different flow regimes including continuum flow, slip flow, transition flow, and free-molecule flow.
Abstract
Shale is abundant in nanoscale pores, so gas flow in shales cannot be simply represented by Darcy formula anymore. It is crucial to figure out the influence of gas flow in nano/micro pores on actual productivity, which can provide basic theories for optimizing parameters and improving the gas production from engineering perspective. This paper considers the effects of slippage and diffusion in nanoscale based on Beskok-Karniadakis (BK) equation, which can be applicable for different flow regimes including continuum flow, slip flow, transition flow, and free-molecule flow. A new non-Darcy equation was developed based on the analysis of effects of high order terms of BK equation on permeability correction factor. By using the conformal transformation principle and pressure coupling method, we established the productivity formula of fractured well (infinite and limited conductivity) satisfying mass variable seepage flowing in fractures. The simulation results have been compared with field data and influencing parameters are analyzed thoroughly. It is concluded that slippage effect affects gas production of fractured well when wellbore pressure is less than 15 MPa, and the effects of slippage and diffusion have greater influence on gas production of fractured well for reservoir with smaller permeability, especially when permeability is at nano-Darcy scale.

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Citations
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Apparent and True Diffusion Coefficients of Methane in Coal and Their Relationships with Methane Desorption Capacity

TL;DR: In this article, a particle method using the unipore model and the counter-diffusion method is adopted to measure the methane diffusion coefficients, and the relationship between the apparent diffusion coefficient and the true diffusion coefficient is analyzed, and a desorption capacity factor (DCF) is proposed to reflect the gap between them.
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Numerical Simulation of Shale Gas Multiscale Seepage Mechanism-Coupled Stress Sensitivity

TL;DR: In this paper, an apparent permeability model which covers continue, slip, transition, and molecular flow and geomechanical effect was presented, and a mathematical model comprising multiscale, geometrically, and adsorption phenomenon was proposed to characterize gas flow in the shale reservoir.
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Effects of tectonism on the pore characteristics and methane diffusion coefficient of coal

TL;DR: In this paper, the pore characteristics of the intact coal and tectonic coal were tested using mercury intrusion porosimetry (MIP) and the physisorption method, while the counterdiffusion experiments were adopted to measure the methane diffusion coefficients of both coal samples.
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Experimental Study of Sand Distribution among Perforation Clusters in Horizontal Wellbore of Shale Gas Reservoir

TL;DR: In this paper, an experimental model to simulate horizontal lateral and perforated clusters is designed, where fresh water was pumped to transport proppant flowing into different clusters, and the volume of water and proppants through each cluster was qualified.
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Experimental study on geometric parameters of pore structure and quantitative evaluation of complexity of pulverized coal with different metamorphic degrees

TL;DR: In this article , the pore structure complexity of coal was quantified using low pressure argon adsorption method (LP-ArGA) and quantitative evaluation of complexity of pulverized coal.
References
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Journal ArticleDOI

Morphology, Genesis, and Distribution of Nanometer-Scale Pores in Siliceous Mudstones of the Mississippian Barnett Shale

TL;DR: In this article, the authors used scanning electron microscopy to characterize the pore system in the Barnett Shale of the Fort Worth Basin, Texas, showing that the pores in these rocks are dominantly nanometer in scale (nanopores).
Journal ArticleDOI

Nanopores and Apparent Permeability of Gas Flow in Mudrocks (Shales and Siltstone)

TL;DR: In this article, an apparent permeability term that includes the complexity of flow in nanopores was introduced, and it takes the form of the Darcy equation so that it can easily be implemented in reservoir simulators.
Journal ArticleDOI

Report: a model for flows in channels, pipes, and ducts at micro and nano scales

TL;DR: In this paper, a general boundary condition that accounts for the reduced momentum and heat exchange with wall surfaces is proposed and its validity is investigated and it is shown that it is applicable in the entire Knudsen range and is second-order accurate in Kn in the slip flow regime.
Journal ArticleDOI

Nanoscale Gas Flow in Shale Gas Sediments

TL;DR: In this paper, a combination of a nanopore network connected to a micrometre pore network is used to model the gas flow in shale gas sediments, which is consistent with the Knudsen diffusivity which supports the slip boundary condition at the nanopore surfaces.
Journal ArticleDOI

Effective Correlation of Apparent Gas Permeability in Tight Porous Media

TL;DR: In this paper, a unified Hagen-Poiseuille-type equation for gaseous flow regimes through tight porous media is described by rigorous application of a unified formulation.
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