Research on risk evaluation methods of groundwater bursting from aquifers underlying coal seams and applications to coalfields of North China. (2018)
- Record Type:
- Book
- Title:
- Research on risk evaluation methods of groundwater bursting from aquifers underlying coal seams and applications to coalfields of North China. (2018)
- Main Title:
- Research on risk evaluation methods of groundwater bursting from aquifers underlying coal seams and applications to coalfields of North China
- Further Information:
- Note: Yifan Zeng.
- Authors:
- Zeng, Yifan
- Contents:
- Intro; Supervisor's Foreword; Parts of this thesis have been published in the following journal articles:; This research was supported by the following projects; Contents; 1 Introduction; 1.1 Research Background and Purposes; 1.1.1 Present Situation of Water Hazards in Coal Mines of China; 1.1.2 Current Situation of Water Hazards from Coal Floor in Coalfields of North China; 1.2 Research Status of the Subject; 1.2.1 Current Situation of Research in the World; 1.2.2 Current Situation of Research in China; 1.3 Main Content and Technical Approach; 1.4 Innovation Points of the Research. 1.5 Chapter SummaryReferences; 2 Structural Pattern and Characteristics of Floor Rock's Water-Soluble and Flushing Water System; 2.1 Sedimentation Characteristic in Coalfields of North China; 2.1.1 Main Deposition Law of the Carboniferous Coal-Bearing Rock Series; 2.1.2 Main Sedimentary Regularity of Permian Coal-Bearing Rock Series; 2.2 Hydrogeological Features and Characteristics of Water-Filled Coalfields in North China; 2.2.1 Hydrogeological Features; 2.2.2 Hydrogeological Features in Profiles; 2.2.3 Tectonic Reconstruction on Hydrogeological Conditions of Coal Fields. 2.3 Main Features of Floor Rock's Water-Soluble and Flushing Water System in North China Coalfields2.3.1 Coexistence of Coal and Water; 2.3.2 Three-Dimensional Recharge Characteristics; 2.3.3 Karst Development Characteristics; 2.3.4 Natural Water-Resisting Feature of Paleo-Weathered Crust on Unconformity Surface; 2.4 WaterIntro; Supervisor's Foreword; Parts of this thesis have been published in the following journal articles:; This research was supported by the following projects; Contents; 1 Introduction; 1.1 Research Background and Purposes; 1.1.1 Present Situation of Water Hazards in Coal Mines of China; 1.1.2 Current Situation of Water Hazards from Coal Floor in Coalfields of North China; 1.2 Research Status of the Subject; 1.2.1 Current Situation of Research in the World; 1.2.2 Current Situation of Research in China; 1.3 Main Content and Technical Approach; 1.4 Innovation Points of the Research. 1.5 Chapter SummaryReferences; 2 Structural Pattern and Characteristics of Floor Rock's Water-Soluble and Flushing Water System; 2.1 Sedimentation Characteristic in Coalfields of North China; 2.1.1 Main Deposition Law of the Carboniferous Coal-Bearing Rock Series; 2.1.2 Main Sedimentary Regularity of Permian Coal-Bearing Rock Series; 2.2 Hydrogeological Features and Characteristics of Water-Filled Coalfields in North China; 2.2.1 Hydrogeological Features; 2.2.2 Hydrogeological Features in Profiles; 2.2.3 Tectonic Reconstruction on Hydrogeological Conditions of Coal Fields. 2.3 Main Features of Floor Rock's Water-Soluble and Flushing Water System in North China Coalfields2.3.1 Coexistence of Coal and Water; 2.3.2 Three-Dimensional Recharge Characteristics; 2.3.3 Karst Development Characteristics; 2.3.4 Natural Water-Resisting Feature of Paleo-Weathered Crust on Unconformity Surface; 2.4 Water Control Characteristics of Structure in Coalfields of North China; 2.4.1 Water Control Characteristics of Regional Structures; 2.4.2 Water Control Characteristics of Ore District Structure; 2.4.3 Water Control Characteristics in Coal Mine. 2.5 Geological Structural Model of Water-Soluble System and Coal-Bearing Stratum2.5.1 Monoclinic Order Type of Structural Patterns and Features; 2.5.2 Monoclinic Inversion Type of Structural Patterns and Features; 2.5.3 Syncline Basin Type of Structural Patterns and Features; 2.5.4 Directional Type of Structural Patterns and Features; 2.5.5 Fault Block and Other Types of Structural Patterns and Features; 2.6 Summary; References; 3 Acquisition and Quantification of Main Controlling Factors of Water Inrush from Coal Seam Floor in Coalfields of North China. 3.1 Main Controlling Factors of Water Inrush from Coal Seam Floor3.1.1 Confined Aquifer; 3.1.2 Aquifuge of Coal Seam Floor; 3.1.3 Geological Structures; 3.1.4 Disturbance of Mining; 3.1.5 Deposited and Discontinuous Plaeo-Weathered Crust; 3.2 Qualification of Main Control Factors; 3.2.1 Water Inrush Quantification; 3.2.2 Quantification of Coal Seam Floor; 3.2.3 Geological Structure; 3.3 Dimensionless Processing of Main Control Factor Index; 3.4 Summary; References; 4 Vulnerability Index Method Based on Partition Variable Weight Theory; 4.1 Information Fusion Model of Water Inrush Evaluation. … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2018
- Extent:
- 1 online resource (xiv, 151 pages), illustrations (some color)
- Subjects:
- 622/.8
Earth sciences
Mine water
Coalfields -- North Carolina
Coal mines and mining -- North Carolina
TECHNOLOGY & ENGINEERING -- Mining
Coal mines and mining
Coalfields
Mine water
Science -- Earth Sciences -- General
Mathematics -- Applied
Science -- Earth Sciences -- Geography
Economic geology
Mathematical modelling
Geographical information systems (GIS) & remote sensing
Hydraulic engineering
Geographical information systems
Science -- Earth Sciences -- Hydrology
Hydrology & the hydrosphere
North Carolina
Electronic books - Languages:
- English
- ISBNs:
- 9783319790299
3319790293 - Related ISBNs:
- 9783319790282
3319790285 - Notes:
- Note: Includes bibliographical references.
Note: Online resource; title from PDF title page (SpringerLink, viewed April 25, 2018). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- British Library HMNTS - ELD.DS.367557
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