Transient Flow of Non-Newtonian Power-law Fluids in Porous Media

Transient Flow of Non-Newtonian Power-law Fluids in Porous Media PDF Author: C. U. Ikoku
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 570

Get Book Here

Book Description

Transient Flow of Non-Newtonian Power-law Fluids in Porous Media

Transient Flow of Non-Newtonian Power-law Fluids in Porous Media PDF Author: C. U. Ikoku
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 570

Get Book Here

Book Description


Non-Newtonian Flow Through Porous Media

Non-Newtonian Flow Through Porous Media PDF Author: Thomas Jefferson Sadowski
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 496

Get Book Here

Book Description


The Flow of Non-Newtonian Fluids Through Porous Media

The Flow of Non-Newtonian Fluids Through Porous Media PDF Author: Hee Chung Park
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 746

Get Book Here

Book Description


Theoretical Studies of Non-newtonian and Newtonian Fluid Flow Through Porous Media

Theoretical Studies of Non-newtonian and Newtonian Fluid Flow Through Porous Media PDF Author: Yu-Shu Wu (Petroleum engineer)
Publisher:
ISBN:
Category :
Languages : en
Pages : 506

Get Book Here

Book Description


Theoretical Studies of Non-newtonian and Newtonian Fluid Flow Through Porous Media

Theoretical Studies of Non-newtonian and Newtonian Fluid Flow Through Porous Media PDF Author: Yushu Wu
Publisher:
ISBN:
Category :
Languages : en
Pages : 568

Get Book Here

Book Description


Theoretical Studies of Non-Newtonian and Newtonian Fluid Flowthrough Porous Media

Theoretical Studies of Non-Newtonian and Newtonian Fluid Flowthrough Porous Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 279

Get Book Here

Book Description
A comprehensive theoretical study has been carried out on the flow behavior of both single and multiple phase non-Newtonian fluids in porous media. This work is divided into three parts: (1) development of numerical and analytical solutions; (2) theoretical studies of transient flow of non-Newtonian fluids in porous media; and (3) applications of well test analysis and displacement efficiency evaluation to field problems. A fully implicit, integral finite difference model has been developed for simulation of non-Newtonian and Newtonian fluid flow through porous media. Several commonly-used rheological models of power-law and Bingham plastic non-Newtonian fluids have been incorporated in the simulator. A Buckley-Leverett type analytical solution for one-dimensional, immiscible displacement involving non-Newtonian fluids in porous media has been developed. Based on this solution, a graphic approach for evaluating non-Newtonian displacement efficiency has been developed. The Buckley-Leverett-Welge theory is extended to flow problems with non-Newtonian fluids. An integral method is also presented for the study of transient flow of Bingham fluids in porous media. In addition, two well test analysis methods have been developed for analyzing pressure transient tests of power-law and Bingham fluids, respectively. Applications are included to demonstrate this new technology. The physical mechanisms involved in immiscible displacement with non-Newtonian fluids in porous media have been studied using the Buckley-Leverett type analytical solution. The results show that this kind of displacement is a complicated process and is determined by the rheological properties of the non-Newtonian fluids and the flow conditions, in addition to relative permeability data. In another study, an idealized fracture model has been used to obtain some insights into the flow of a power-law fluid in a double-porosity medium. For flow at a constant rate, non-Newtonian flow behavior in a fractured medium is characterized by two-parallel straight lines on a log-log plot of injection pressure versus time. Transient flow of a general pseudoplastic fluid has been studied numerically and it has been found that the long time pressure responses tend to be equivalent to that of a Newtonian system.

Theoretical Studies of Non-Newtonian and Newtonian Fluid Flow Through Porous Media

Theoretical Studies of Non-Newtonian and Newtonian Fluid Flow Through Porous Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 253

Get Book Here

Book Description
A comprehensive theoretical study has been carried out on the flow behavior of both single and multiple phase non-Newtonian fluids in porous media. This work is divided into three parts: development of numerical and analytical solutions; theoretical studies of transient flow of non-Newtonian fluids in porous media; and applications of well test analysis and displacement efficiency evaluation to field problems. A fully implicit, integral finite difference model has been developed for simulation of non-Newtonian and Newtonian fluid flow through porous media. Several commonly-used rheological models of power-law and Bingham plastic non-Newtonian fluids have been incorporated in the simulator. A Buckley-Leverett type analytical solution for one-dimensional, immiscible displacement involving non-Newtonian fluids in porous media has been developed. An integral method is also presented for the study of transient flow of Bingham fluids in porous media. In addition, two well test analysis methods have been developed for analyzing pressure transient tests of power-law and Bingham fluids, respectively. Applications are included to demonstrate this new technology. The physical mechanisms involved in immiscible displacement with non-Newtonian fluids in porous media have been studied using the Buckley-Leverett type analytical solution. In another study, an idealized fracture model has been used to obtain some insights into the flow of a power-law fluid in a double-porosity medium. Transient flow of a general pseudoplastic fluid has been studied numerically. 125 refs., 91 figs., 12 tabs.

FEFLOW

FEFLOW PDF Author: Hans-Jörg G. Diersch
Publisher: Springer Science & Business Media
ISBN: 364238739X
Category : Science
Languages : en
Pages : 1018

Get Book Here

Book Description
FEFLOW is an acronym of Finite Element subsurface FLOW simulation system and solves the governing flow, mass and heat transport equations in porous and fractured media by a multidimensional finite element method for complex geometric and parametric situations including variable fluid density, variable saturation, free surface(s), multispecies reaction kinetics, non-isothermal flow and multidiffusive effects. FEFLOW comprises theoretical work, modeling experiences and simulation practice from a period of about 40 years. In this light, the main objective of the present book is to share this achieved level of modeling with all required details of the physical and numerical background with the reader. The book is intended to put advanced theoretical and numerical methods into the hands of modeling practitioners and scientists. It starts with a more general theory for all relevant flow and transport phenomena on the basis of the continuum approach, systematically develops the basic framework for important classes of problems (e.g., multiphase/multispecies non-isothermal flow and transport phenomena, discrete features, aquifer-averaged equations, geothermal processes), introduces finite-element techniques for solving the basic balance equations, in detail discusses advanced numerical algorithms for the resulting nonlinear and linear problems and completes with a number of benchmarks, applications and exercises to illustrate the different types of problems and ways to tackle them successfully (e.g., flow and seepage problems, unsaturated-saturated flow, advective-diffusion transport, saltwater intrusion, geothermal and thermohaline flow).

Mechanics of Oil and Gas Flow in Porous Media

Mechanics of Oil and Gas Flow in Porous Media PDF Author: Dang Li
Publisher: Springer Nature
ISBN: 9811573131
Category : Science
Languages : en
Pages : 343

Get Book Here

Book Description
This book discusses various aspects of percolation mechanics. It starts with the driving forces and driving modes and then examines in detail the steady state percolation of single-phase incompressible fluids, percolation law of natural gas and percolation of non-Newtonian fluids. Progressing from simple to complex concepts, it also analyzes Darcy’s law, providing a basis for the study of reservoir engineering, oil recovery engineering and reservoir numerical simulation. It serves as a textbook for undergraduate students majoring in petroleum engineering, petroleum geology and groundwater engineering, and offers a valuable reference guide for graduate students, researchers and technical engineers engaged in oil and gas exploration and development.

Flow of Highly Non-Newtonian Fluids Through Porous Media

Flow of Highly Non-Newtonian Fluids Through Porous Media PDF Author: Robert Edward Sheffield
Publisher:
ISBN:
Category : Non-Newtonian fluids
Languages : en
Pages : 430

Get Book Here

Book Description