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深部开采扰动的区域应力效应与临灾响应特征(英文版) 版权信息
- ISBN:9787516031131
- 条形码:9787516031131 ; 978-7-5160-3113-1
- 装帧:一般胶版纸
- 册数:暂无
- 重量:暂无
- 所属分类:>
深部开采扰动的区域应力效应与临灾响应特征(英文版) 内容简介
本书针对深部开采中冲击地压灾害孕育、诱发和控制方面的地质条件、构造条件及动力学基础问题, 从区域应力场状态与灾害相关性、开采扰动作用与区域应力场的耦合效应及其演化分析入手, 通过开采扰动作用下区域应力效应的变化过程监测和分析, 揭示了冲击地压灾源体岩体与周边区域地层之间的结构性协同演化机制、力—能传递机理和动力触发条件, 探明了固体潮汐应力对矿震的触发作用。
深部开采扰动的区域应力效应与临灾响应特征(英文版) 目录
1 Introduction
1.1 Research background
1.1.1 Research significance
1.1.2 Questions raised
1.2 Summary of research progress on mining dynamic disasters such as mine earthquake and rock-burst
1.2.1 Research progress of domestic and foreign mine earthquakes
1.2.2 Research progress on shock pressure at home and abroad
1.2.3 Relationship between mining earthquake and rock-burst
1.3 Research scope and research content
2 Impact Hazard Analysis Technology Based on Evolution of Stress State
2.1 Concept of impact danger
2.2 Characteristics of initial stress fields in deep formations
2.2.1 Stress field formed by the earth's gravity field
2.2.2 Main stress directions of tectonic stress field
2.2.3 Geological dynamics of in-situ stress field
2.3 Impact risk assessment method based on the stress state
2.3.1 Establishment and analysis of 3D stress state evaluation indicators
2.3.2 Triaxial test research on evaluation indicators of stress state
2.3.3 Classification of dangerous levels of rock mass stability based on stress state
2.4 Impact hazard analysis technique based on the spatio-temporal change Of stress field
2.4.1 Analysis of regional geological background of Hunting Coalfield
2.4.2 Original geo-stress field measurement
2.4.3 Inversion of regional geo-stress field in Huating Coalfield
2.4.4 Stress field, energy field and geodynamic characteristics of Huafing Coalfield
2.4.5 Evaluation of impact dangerous area based on stress state of floor in Huating Coalfield
2.4.6 Discussing the spatiotemporaI evolution of impact danger
2.5 Summary
3 Correlation and Trigger Mechanism Between Regional Solid Tidal Stress and Mine-induced Earthquakes
3.1 Earth's solid tidal stress theory
3.2 Statistical analysis method of solid tide triggering effect of mine earthquake
3.3 Analysis of triggering effect of solid tide of quake in huating coalfield area
3.3.1 Analysis of background of seismic activity in Huating Coalfield
3.3.2 Correlation analysis between tidal action and roof-type quake activity
3.3.3 Correlation analysis between tidal action and floor-type seismic activity
3.4 Analysis on the relationship between the triggering of solid tide and the scale of mine earthquakes
3.4.1 Analysis of triggering effects of solid tide on roof-type mine earthquakes of different magnitudes
3.4.2 Analysis of triggering effects of solid tide on floor-type mine earthquakes of different magnitudes
3.5 Analysis of trigger mechanism of tidal stress induced mine earthquake
3.5.1 Action mode of tidal stress
3.5.2 Triggering effects of tidal stress on roof-type mine earthquakes
3.5.3 Effect of tidal stress on floor-type mine earthquakes
3.6 Impact of the earthquake process on local tide activity
3.7 Summary
4 Observation and Analysis Methods of Regional Strain Effects of Mining Earthquakes
4.1 Correlation and synergy mechanism between mining disturbance effect and regional stress field
4.2 Geological and engineering background analysis of regional stress (strain) effect observation in Huating mining area
4.3 Observation technology of drilling strain
4.4 Analysis of time series of borehole strain observation data
4.4.1 Fractal feature analysis method
4.4.2 Analysis method of group statistical theory
4.4.3 Analysis method of time history of strain rate
4.5 Summary
5 Analysis of Regional Strain Effects and Disaster-related
Characteristics of Mininginduced Dynamic Disasters
5.1 Regional strain response models and relations to seismic features during mining
5.1.1 Regional strain coseismic response models of mining and natural earthquakes
5.1.2 Relationship between the regional strain response model and the characteristics of a mine earthquake
5.2 Disaster feature extraction analysis based on time history changes of borehole strain data
5.2.1 Feature analysis of fractal box dimension
5.2.2 Parameter analysis of group statistical characteristic
5.2.3 Analysis of strain rate characteristics
5.3 Analysis of precursor characteristics of mining dynamic disasters
5.3.1 Analysis of precursor mechanical mechanism and box dimension characteristics of mining dynamic disasters
5.3.2 Analysis of disaster gestation and precursory characteristics based on the evolution of rock deformation trends
5.4 Summary
6 Research Conclusions and Understanding
6.1 Main conclusions
6.2 Innovation
6.3 Outlook
References
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