| ISBN | 出版时间 | 包装 | 开本 | 页数 | 字数 |
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Preface
Chapter 1 Overview
1.1 Background
1.2 Overview of geomechanics model tests
1.3 Overview of infrared detection
Chapter 2 Theoretical aspects of the infrared
2.2 Infrared spectralband
2.3 Radiometry fundamentals
2.3.1 Radiant energy
2.3.3 Geometrical spreading of a beam
2.3.6 Radiant exitance
2.3.7 Radiant intensity of a source in a given direction
2.3.9 Radiation scattering
2.3.8 Bouguer's law
2.4 Black bodyradiation
2.4.3 Wien'slaw
2.4.5 Exitance of a black body in a given spectral band
2.4.6 Calculation of exitance of black body
2.4.7 Thermal radiation contrast
2.5.1 Different types of radiator
2.5.2 Emissivity of a material
2.5.3 Stefan-Boltzmann's law for grey body
2.5.5 Electrically conducting materials
Chapter 3 Geomechanical model test
3.1 Literature review on physical model test
3.2 Similarity theory and dimensional analysis
3.2.2 Selection of similarity materials and ratios
3.3.2 In situ rock properties
3.4 Geomechanical model construction
3.4.3 Physico-mechanical parameters of the model
3.4.4 Rock structure simulation
3.4.5 Geomechanical model
3.5.1 Thermography and imaging procedures
3.5.2 Temperature calibration
Chapter 4 Excavation in 600 inclined strata
4.1 Introduction
4.2 Experiment
4.2.2 Geomechanical model construction
4.3.1 Infrared thermography
4.3.2 Thermal-mechanical coupling
4.4 Image processing
……
Chapter 5 Excavation in 450 strata
Chapter 6 Excavation in horizontal strata
Chapter 7 Overloaded tunnel in 450 inclined rocks
Chapter 8 Overloaded tunnel in horizontal strata