目录序前言第1章 工程地质人员在工程建设中的作用 11.1 工程勘察在工程建设中的作用 11.2 工程地质人员的工作方法 11.3 工程地质人员的技术水平 21.4 工程地质人员的工作内容 21.5 国外工程地质人员技术工作方法 41.6 培养造就新一代的工程地质专家 5第2章 工程地质学理论体系 72.1 工程地质理论问题研究的必要性 72.2 工程地质理论问题研究现状72.3 工程地质学研究内容及其与其他学科的关系 82.4 工程地质学的科学技术观 102.5 工程地质学的理论体系112.6 工程地质基本理论的探讨 14第3章 工程地质耦合理论 183.1 耦合理论的基本思想 183.2 耦合理论的图示模型 213.3 耦合理论的数学模型 233.4 耦合理论的应用步骤及其循环 243.5 工程地质学耦合理论的决策准则 273.6 耦合度及其计算 283.7 耦合风险性分析 313.8 耦合理论与其他学科的关系 313.9 工程地质耦合理论与汶川地震后的反思 33第4章 工程地质条件复杂程度分级 474.1 工程地质条件复杂程度划分的几个概念 474.2 工程地质条件复杂程度各评价项目指标的计算 484.3 工程地质条件复杂程度各评价项目指标的评分 52第5章 工程地质勘察准确度 545.1 工程地质勘察及其准确度 545.2 各种勘察手段的准确度 555.3 地质体勘察准确度计算与评价 575.4 勘察准确度分级及不同勘察设计阶段对准确度的要求 615.5 工程地质形迹预报尺寸 635.6 工程地质预报方法655.7 勘察准确度计算应用例题 685.8 勘察准确度研究在实际工程中的意义 715.9 需要说明的几个问题 71第6章 工程地质评价层序 736.1 工程地质评价中的层序 736.2 工程地质评价中的时间和空间模型 746.3 十三陵抽水蓄能电站地下厂房位置选择的评价层序 79第7章 工程地质分析评价方法 917.1 工程地质评价概述 917.2 工程地质分析评价基本方法 957.3 工程地质综合评价方法 987.4 几种典型工程地质条件的评价方法 104第8章 工程地质决策方法 1188.1 工程地质决策及决策模型 1188.2 工程地质决策方法之一——经验判断法 1198.3 工程地质决策方法之二——工程类比法 1248.4 工程地质决策方法之三——优劣对比法 1298.5 工程地质决策方法之四——决策分析法 1338.6 工程地质决策方法之五——综合决策法 1428.7 工程地质决策程序 142第9章 工程地质学未来发展方向及待研究的问题 1479.1 工程地质学的发展方向 1479.2 工程地质评价研究目前存在的问题 1489.3 耦合理论下一步应研究的问题 151参考文献 152后记 156ContentsForewordPrefaceChapter 1 The Role of Engineering Geologists in Engineering Construction 11.1 The Role of Geological Survey in Engineering Construction 11.2 Working Methods of Engineering Geologists 11.3 Technical Level of Engineering Geologists 21.4 Work Contents of Engineering Geologists 21.5 The Technical Work Methods of Engineering Geologists in Other Countries 41.6 Cultivating a New Generation of Engineering Geology Experts 5Chapter 2 Theoretical System of Engineering Geology 72.1 The Necessity of Research on the Theoretical Problems of Engineering Geology 72.2 The Current Situation of Research on Theory of Engineering Geology 72.3 Research Content of Engineering Geology and Its Relationship with Other Disciplines 82.4 Scientific and Technical View of Engineering Geology 102.5 Theoretical System of Engineering Geology 112.6 Exploration of the Basic Theory of Engineering Geology 14Chapter 3 Engineering Geological Coupling Theory 183.1 The Basic Idea of Coupling Theory 183.2 Graphical Model of Coupling Theory 213.3 Mathematical Model of Coupling Theory 233.4 Implementation Steps and Cycles of Coupling Theory 243.5 Decision Criteria of Engineering Geological Coupling Theory 273.6 Coupling Degree and Calculation 283.7 Coupling Riskiness Analysis 313.8 Relationship Between Coupling Theory and Other Disciplines 313.9 Reflection After Wenchuan Earthquake Through Engineering Geological Coupling Theory 33Chapter 4 Engineering Geological Complexity Classification 474.1 Several Concepts of Engineering Geological Complexity Classification 474.2 Calculation of Indicators for Each Evaluation Item 484.3 Grading of Indicators for Each Evaluation Item 52Chapter 5 Accuracy of Engineering Geological Survey 545.1 Engineering Geological Survey and Its Accuracy 545.2 Accuracy of Various Survey Methods 555.3 Calculation and Evaluation of Survey Accuracy on Geological Body 575.4 Survey Accuracy Grading and Accuracy Requirements for Different Survey and Design Stages 615.5 Forecasting Size of Engineering Geological Defects 635.6 Engineering Geological Forecasting Methods 655.7 An Case of Accuracy Calculation 685.8 Significance of the Study on Accuracy in Actual Project 715.9 Several Issues That Need to be Clarified 71Chapter 6 The Hierarchy of Engineering Geological Evaluation 736.1 The Hierarchy and Sequence in Engineering Geological Evaluation 736.2 Time and Space Models in Engineering Geological Evaluation 746.3 Evaluation Hierarchy for the Selection of Underground Plant Location of the Ming Tombs Pumped Storage Power Station 79Chapter 7 The Methods of Engineering Geological Analysis and Evaluation 917.1 Overview of Engineering Geological Evaluation 917.2 Basic Methods of Engineering Geological Analysis and Evaluation 957.3 Comprehensive Method of Engineering Geological Evaluation 987.4 Evaluation Methods of Several Typical Engineering Geological Conditions 104Chapter 8 Engineering Geological Decisionmaking Methods 1188.1 Engineering Geological Decisionmaking and Decision Model 1188.2 Empirical Judgment Method 1198.3 Engineering Analogy Method 1248.4 Comparison Method Between Advantages and Disadvantages 1298.5 Decision Analysis Method 1338.6 Integrated Decisionmaking Method 1428.7 Decisionmaking Procedure for Engineering Geological Problems 142Chapter 9 Future Development Direct