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书名:石油高等院校特色教材:油气渗流力学文章源自云智设计-https://www.cidrg.com/tao/12051.html
原价:29.00元文章源自云智设计-https://www.cidrg.com/tao/12051.html
作者:李璗, 陈军斌石油高文章源自云智设计-https://www.cidrg.com/tao/12051.html
出版社:石油工业出版社文章源自云智设计-https://www.cidrg.com/tao/12051.html
出版日期:2012-6-1文章源自云智设计-https://www.cidrg.com/tao/12051.html
ISBN:9787502189631文章源自云智设计-https://www.cidrg.com/tao/12051.html
字数:文章源自云智设计-https://www.cidrg.com/tao/12051.html
页码:251文章源自云智设计-https://www.cidrg.com/tao/12051.html
版次:第1版文章源自云智设计-https://www.cidrg.com/tao/12051.html
装帧:平装
开本:16
商品重量:381 g
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《石油高等院校特色教材:油气渗流力学(英文版)》可作为石油工程、石油地质、地下水工程、油田化学等专业本科生教材,也可作为相关专业研究生的参考书,还可供从事油气田勘探与开发的科研技术人员参考。
目录
Chapter 1 Basic law of percolation
1.1 Static state in reservoirs
1.2 Driving forces and driving mode in reservoir
1.3 Darcy's law
1.4 The limitations of Darcy' s law and non-Darcy percolation
Exercises
Chapter 2 Steady state percolation of single-phase incompressible fluid
2.1 Three basic forms of percolation
2.2 Planar one-dimensional steady state percolation of single-phase incompressible fluid.
2.3 Planar radial fluid flow of single-phase incompressible fluid
2.4 Imperfect well
2.5 Systematic well testing( Step rate testing)
2.6 Differential equation of single-phase fluid percolation
Exercises
Chapter 3 Interference theory of wells under rigid water drive
3.1 Phenomenon of interference of wells
3.2 Superposition principle of potential
3.3 Method of mirror
3.4 Application of complex function theory in the planar percolation field
Exercises
Chapter 4 Unsteady state percolation of slightly compressible fluid
4.1 The physical process of elastic fluid percolation towards wells
4.2 The planar one-dimensional unsteady state percolation in semi-infinite formation
4.3 Pressure transient law of elastic fluid unsteady state percolation towards well bore
4.4 Approximate solution of pressure change of fluid percolation towards well in finite closed elastic formation
4.5 Multi interference of wells of elastic unsteady state percolation
4.6 Unsteady state well testing analysis
Exercises
Chapter 5 Percolation law of natural gas
5.1 Properties of natural gas and its basic differential equation of percolation
5.2 Steady state percolation of gas
5.3 Unsteady state percolation of gas
Exercises
Chapter 6 Foundation of water/oil displacement theory
6.1 Piston like displacement of oil by water
6.2 Bottom water coning
6.3 Theoretical foundation of non-piston like displacement of oil by water
Exercises
Chapter 7 Percolation theory of oil-gas two phases( dissolved gas drive)
7.1 Basic differential equation of oil-gas two-phases percolation
7.2 Oil-gas two-phase steady state percolation
7.3 Unsteady state percolation of gassy fluid
Exercises
Chapter 8 Flow in dual-media
8.1 Flow characteristics in dual-media
8.2 Basic flow equation of single-phase slightly compressible fluid in dual-media
8.3 Pressure distribution in infinite dual-media
8.4 Oil-water two-phase flow in the dual-media
8.5 Flow of fluid in pure fracture formation
Exercises
Chapter 9 Percolation of non-Newtonian liquid
9.1 Mechanical behavior and type of non-Newtonian liquid
9.2 Percolation of non-Newtonian power law liquid
Exercises
Chapter 10 Theory of similarity
10.1 Concept of similarity
10.2 Kinematical and dynamic similarity
10.3 Scaled physical model and law of similarity
10.4 Dimension analysis examples for the known equations of physical system
10.5 Examples of analog
10.6 Partial similarity in the scaling models
10.7 Special aspects of standard fitting of porous medium model
Exercises
Appendix
Appendix A Flow equation in cylindrical coordinate
Appendix B To obtain the solution of one-dimensional unsteady state flow by the Laplace transformation
Appendix C Calculation procedure of error function eft(x)
Appendix D Calculation procedure of exponential integral function -Ei(-x)
Appendix E Calculation procedure of function F(x)
Appendix F Conversion relationship between the commonly used units in reservoir engineering
Appendix G Factor and signs of commonly used prefixes in SI system and imperial system of unit
References
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