Streamline Numerical Well Test Interpretation: Theory and Method
The conventional and modern well test interpretation methods are an important tool in the petroleum engineer’s toolkit. Used in the exploration and discovery phase of a field, they are performed to determine the quality of a well or to permit estimation of producing rates at different producing pressures. However once a field enters the middle and later development phase, the reservoir flow environment grows increasingly complex and conventional or modern methods do not satisfy the needs of old field development and evaluation. Based on over 10 years of field and research experience, Streamline Numerical Well Test Interpretation Theory and Method provides an effective method for the determination of residual oil distribution for the middle and mature phases of a field.

One of the most advanced books available, the author explains the development history of well test theory, analyzes the limitation of modern well test interpretation method, and proposes the concept and framework of numerical well test. This is quickly followed by an introduction of basic principles and solution procedures of streamline numerical simulation theory and method. The book then systematically applies streamline numerical well test interpretation models to a multitude of reservoir types, ranging from single layer reservoir to multi-layer reservoirs. The book presents multi-parameter streamline numerical well test automatic match interpretation method based on double-population genetic algorithm, which lays the foundation to fast automatic match of numerical well test. The book introduces streamline numerical well test interpretation software with independent intellectual property right which is programmed based on the above theoretical studies.

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Streamline Numerical Well Test Interpretation: Theory and Method
The conventional and modern well test interpretation methods are an important tool in the petroleum engineer’s toolkit. Used in the exploration and discovery phase of a field, they are performed to determine the quality of a well or to permit estimation of producing rates at different producing pressures. However once a field enters the middle and later development phase, the reservoir flow environment grows increasingly complex and conventional or modern methods do not satisfy the needs of old field development and evaluation. Based on over 10 years of field and research experience, Streamline Numerical Well Test Interpretation Theory and Method provides an effective method for the determination of residual oil distribution for the middle and mature phases of a field.

One of the most advanced books available, the author explains the development history of well test theory, analyzes the limitation of modern well test interpretation method, and proposes the concept and framework of numerical well test. This is quickly followed by an introduction of basic principles and solution procedures of streamline numerical simulation theory and method. The book then systematically applies streamline numerical well test interpretation models to a multitude of reservoir types, ranging from single layer reservoir to multi-layer reservoirs. The book presents multi-parameter streamline numerical well test automatic match interpretation method based on double-population genetic algorithm, which lays the foundation to fast automatic match of numerical well test. The book introduces streamline numerical well test interpretation software with independent intellectual property right which is programmed based on the above theoretical studies.

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Streamline Numerical Well Test Interpretation: Theory and Method

Streamline Numerical Well Test Interpretation: Theory and Method

by Yao Jun
Streamline Numerical Well Test Interpretation: Theory and Method

Streamline Numerical Well Test Interpretation: Theory and Method

by Yao Jun

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Overview

The conventional and modern well test interpretation methods are an important tool in the petroleum engineer’s toolkit. Used in the exploration and discovery phase of a field, they are performed to determine the quality of a well or to permit estimation of producing rates at different producing pressures. However once a field enters the middle and later development phase, the reservoir flow environment grows increasingly complex and conventional or modern methods do not satisfy the needs of old field development and evaluation. Based on over 10 years of field and research experience, Streamline Numerical Well Test Interpretation Theory and Method provides an effective method for the determination of residual oil distribution for the middle and mature phases of a field.

One of the most advanced books available, the author explains the development history of well test theory, analyzes the limitation of modern well test interpretation method, and proposes the concept and framework of numerical well test. This is quickly followed by an introduction of basic principles and solution procedures of streamline numerical simulation theory and method. The book then systematically applies streamline numerical well test interpretation models to a multitude of reservoir types, ranging from single layer reservoir to multi-layer reservoirs. The book presents multi-parameter streamline numerical well test automatic match interpretation method based on double-population genetic algorithm, which lays the foundation to fast automatic match of numerical well test. The book introduces streamline numerical well test interpretation software with independent intellectual property right which is programmed based on the above theoretical studies.


Product Details

ISBN-13: 9780128103746
Publisher: Elsevier Science
Publication date: 08/19/2016
Pages: 328
Product dimensions: 6.00(w) x 9.00(h) x (d)

Table of Contents

Chapter 1: Numerical Well Testing Interpretation Theory and Method

Chapter 2: Streamline Numerical Simulation Theory and Method

Chapter 3: Streamline Numerical Well-testing Interpretation Model for Single Layer Sandstone Waterflooding Reservoir

Chapter 4: Streamline Numerical Well-testing Interpretation Model for Multi-layer Sandstone Waterflooding Reservoir

Chapter 5: Streamline Numerical Well-testing Interpretation Model under Complex Near Wellbore Conditions

Chapter 6: Streamline Numerical Well-testing Interpretation Model for Chemical Flooding Multilayer Sandstone Reservoir

Chapter 7: Streamline Numerical Well-testing Interpretation Model Considering Components

Chapter 8: Streamline Numerical Well-testing Interpretation Model for Multi-layer Reservoir in Double Porosity Media

Chapter 9: Streamline Numerical Well-testing Interpretation Model of Horizontal Well

Chapter 10: Multi-parameter Streamline Numerical Well-testing Interpretation Method

Chapter 11: Software Programming of Streamline Numerical Well-testing Interpretation

Chapter 12: Field Application of Streamline Numerical Well-testing Interpretation Software

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Provides an effective method for the application of well testing data in reservoir dynamic fine description, especially the determination of residual oil distribution

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