arrow
返回

Flow Reversal and Mixing

delete2009-03-15
delete17
PRE
AI
R
Raman K. Jha *
A
Abraham K. John
S
Steven L. Bryant
L
Larry W. Lake
DOI:10.2118/103054-PAdelete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Flow-reversal studies provide insights into mixing mechanisms in flow through porous Media. In these Studies, the direction of flow is reversed after the solute Slug has penetrated into the medium (but not exited) to a predetermined distance. We simulated the effect of flow reversal oil mixing in 2D porous media using two different approaches. In the first approach, we perform direct numerical simulation of it solute-slug transport (by solving Navier-Stokes and convection/diffusion equations) in a surrogate pore space. This approach allows a direct visualization of mixing in simple flow geometries. The effect of flow reversal on mixing is investigated for several diffusion coefficients, penetration depths, and flow geometries. The second approach uses particle tracking to simulate the effect of flow reversal at larger length scales. This approach is free of numerical dispersion, can be used in the absence of diffusion, and has no limits oil the size of the simulation. It is, however, limited to layered-media flow. The simulation studies presented in this paper explain the mechanism of mixing and the origin of the irreversibility of dispersion in flow through porous media. We also explain several experimental observations oil flow-reversal tests found in the literature. Mixing in porous media takes place because of interaction between convective spreading and molecular diffusion. The converging/diverging paths and flow around impervious sand grains cause the Solute front to stretch and split. In this process, the area of contact between the Solute slug and the resident fluid increases by an order of magnitude and diffusion becomes an effective mixing mechanism, This local Mixing, caused by diffusion. is irreversible. For purely convective transport, solute particles retrace their path back to the inlet upon flow reversal. Convective spreading gets canceled, and echo dispersion is 0. Diffusion, even though small in magnitude, is responsible for local mixing and making dispersion in Porous media irreversible. Thus, it is important to include the effect Of diffusion when analyzing miscible displacements in porous media.
Keyword:
POROUS-MEDIA
TRACER DISPERSION
TAYLOR DISPERSION
IRREVERSIBILITY
TRANSITION
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

S
SPE Journal
IF:
3
论文数:
2.4K
被引数:
1.0W

机构

C
chevron
学者数:
674
论文数: 569
被引数: 2
R
royal dutch shell
学者数:
1.5K
论文数: 1.3K
被引数: 0
U
university of texas system
学者数:
18.5W
论文数: 15.6W
被引数: 210
学者 查看更多机构
引用论文

引用论文

err分享
err收藏
Long‐Term Quality of Life of Vestibular Schwannoma Patients: A Longitudinal Analysis
err2022-03-29
err0
errOAAI
errOlaf M. Neve; Jeroen C. Jansen; Radboud W. Koot; Mischa de Ridder; Peter Paul G. van Benthem; Anne M. Stiggelbout; Erik F. Hensen
err分享
err收藏
Estimation of true dispersivity in field-scale permeable media
err2003-09-01
err35
PREAI
errMahadevan, J; Lake, LW; Johns, RT
err分享
err收藏
err分享
err收藏
err
IF0
err
err0
PREAI
err
err分享
err收藏
err
IF0
err
err0
PREAI
err
err分享
err收藏
学者 查看更多内容