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致密氣滲流規(guī)律與氣藏工程方法:英文 版權(quán)信息
- ISBN:9787518351602
- 條形碼:9787518351602 ; 978-7-5183-5160-2
- 裝幀:一般膠版紙
- 冊(cè)數(shù):暫無(wú)
- 重量:暫無(wú)
- 所屬分類(lèi):>
致密氣滲流規(guī)律與氣藏工程方法:英文 內(nèi)容簡(jiǎn)介
本書(shū)總結(jié)了致密氣藏滲流機(jī)理,闡述了致密氣試井分析技術(shù),研究了致密氣生產(chǎn)動(dòng)態(tài)特征和氣井、區(qū)塊、氣田的遞減規(guī)律分析方法,討論了致密氣合理生產(chǎn)制度建立方法與遞減方法應(yīng)用,給出了產(chǎn)水氣井生產(chǎn)特征與動(dòng)態(tài)優(yōu)化配產(chǎn)方法。 本書(shū)可供從事致密氣藏開(kāi)發(fā)的科研人員參考。
致密氣滲流規(guī)律與氣藏工程方法:英文 目錄
Section 1 Single-phase Seepage Characteristics of Gas in Tight Gas Reservoirs
Ⅰ.Slippage effect of gas single-phase flow in tight gas reservoirs
Ⅱ.Research on gas single-phase starting law in tight gas reservoirs
Ⅲ.High-velocity non-Darcy effect of gas flow
Section 2 Stress Sensitivity Characteristics of Tight Gas Reservoirs
Ⅰ.Stress sensitivity characteristics of tight cores under the condition of containing bound water
Ⅱ.Stress sensitivity characteristics using different effective stress loading modes
Ⅲ.Stress sensitivity characteristics of artificial fractures filled with proppants
Section 3 Saturation Change Characteristics of Tight Gas Movable Fluid
Ⅰ.Saturation change characteristics of tight gas movable fluid in self-absorption state
Ⅱ.Saturation change characteristics of tight gas movable fluid in the production process
Section 4 Gas-water Two-phase Seepage Law in Tight Gas Reservoirs
Ⅰ.Gas starting pressure characteristics of water-bearing tight gas reservoirs
Ⅱ.Relative permeability of gas-water two phases in tight gas reservoirs
Chapter 2 Production Performance Characteristics and Classified Evaluation of Typical Tight Gas Reservoirs
Section 1 Production Performance Characteristics and Classified Evaluation of Typical Tight Gas Wells in Sulige Gas Field
Ⅰ.Production performance characteristics of typical tight gas wells in Sulige gas field
Ⅱ.Classification standard for tight gas wells in Sulige gas field
Ⅲ.Production law of different types of gas wells in Sulige gas field
Ⅳ.IC index variation law of different types of wells
Section 2 Production Performance Characteristics and Classified Evaluation of Typical Tight Gas Wells in Xujiahe Formation Gas Reservoir
Ⅰ.Classification of water production in Xujiahe Formation gas reservoir
Ⅱ.Classification of performance characteristics of water-producing gas wells in Xujiahe Formation gas reservoir
Ⅲ.Production law o different types of water-producing gas wells in Xujiahe Formation
Section 3 Intrinsic Relationship between Production Performance Characteristics and gas reservoir Seepage Mechanism of Tight Gas Wells
Ⅰ.The relationship between microscopic mechanism and macroscopic performance characteristics of vertical wells
Ⅱ.The relationship between microscopic mechanism and macroscopic performance characteristics of horizontal wells
Chapter 3 Transient Testing Interpretation Theory and Application for Tight Gas
Section 1 Transient Testing of Fractured Vertical Wells in Tight Gas Reservoirs
Ⅰ.Physical model and mathematical model of a fractured vertical well
Ⅱ.Analysis of pressure dynamic characteristics of a fractured vertical well
Section 2 Transient Testing of Staged Fractured Horizontal Wells in Tight Gas Reservoirs
Ⅰ.Physical model and mathematical model of a staged fractured horizontal well
Ⅱ.Analysis of pressure dynamic characteristics of the staged fractured horizontal
Section 3 Transient Testing under the Recharge Boundary Condition well
Ⅰ.Physical model and mathematical definition of recharge boundary
Ⅱ.Analysis of transient seepage flow characteristics and influencing factors of fractured vertical wells with recharge boundary in tight gas reservoirs
Ⅲ.Analysis of the testing curve characteristics and influencing factors of a fractured
Chapter 4 Productivity Evaluation Methods for Tight Gas Reservoirs and Their Applications
Section 1 Tight Gas Productivity Evaluation Methods
Ⅰ.Back pressure test data analysis method for gas wells
Ⅱ.Isochronal testing data analysis method for gas wells
Ⅲ.Modified isochronal testing data analysis method for gas wells
Ⅳ.Single-point test data interpretation method
Ⅴ.Back pressure test method without shut-in
Section 2 Analysis of Inlluencing Factors
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