渗透压梯度对多孔岩石中水扩散的影响:是否会影响渗透试验?

IF 2.6 4区 工程技术 Q2 MECHANICS
Z. Bažant, A. Nguyen
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引用次数: 0

摘要

大型水力裂缝网络的产生不仅对页岩压裂的成功至关重要,而且对最近在玄武岩、橄榄岩和玄武岩(含橄榄岩包裹体)深层封存二氧化碳的方案也至关重要,这些玄武岩是与二氧化碳化学结合的基性岩石。在裂缝网络发育的数值模拟中,一个重要的问题是多孔岩石的渗透率。本文的目的是计算由Ca、Mg、Na等离子浓度梯度引起的渗透压梯度对岩石有效渗透率的影响。在适当的初始条件和边界条件下,给出了基本微分方程的显式解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Osmotic Pressure Gradient Effects on Water Diffusion in Porous Rock: Can They Pervert Permeability Tests?
Generation of a large network of hydraulic cracks is of key importance not only for the success of fracking of shale but also for the recent scheme of sequestration of CO2 in deep formations of basalt, peridotite and basalt with peridotite inclusions, which are mafic rocks that combine chemically with CO2. In numerical simulation of the development of fracture network, an important problem is the permeability of the porous rock. The objective of this paper is to calculate the effect of osmotic pressure gradients caused by gradients of concentration of the ions of Ca, Mg, Na, etc. on the effective permeability of rock. The basic differential equation are formulated and their explicit solution for appropriate initial and boundary conditions are obtained under certain plausible simplifications.
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来源期刊
CiteScore
4.80
自引率
3.80%
发文量
95
审稿时长
5.8 months
期刊介绍: All areas of theoretical and applied mechanics including, but not limited to: Aerodynamics; Aeroelasticity; Biomechanics; Boundary layers; Composite materials; Computational mechanics; Constitutive modeling of materials; Dynamics; Elasticity; Experimental mechanics; Flow and fracture; Heat transport in fluid flows; Hydraulics; Impact; Internal flow; Mechanical properties of materials; Mechanics of shocks; Micromechanics; Nanomechanics; Plasticity; Stress analysis; Structures; Thermodynamics of materials and in flowing fluids; Thermo-mechanics; Turbulence; Vibration; Wave propagation
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