期刊文献+

Engineering geological classification of the structural planes for hydroelectric projects in Emeishan Basalts 被引量:3

Engineering geological classification of the structural planes for hydroelectric projects in Emeishan Basalts
原文传递
导出
摘要 The scale and characteristics of rock mass are important indexes of the rock mass structural plane classification.This paper firstly analyzes the spatial distribution characteristics,the structural plane types(original structural plane,tectonic structural plane and hypergenic structural plane) and the associated features of the Emeishan basalts and then studies the classification schemes of the built hydropower structure planes of different rock areas(the east district,the central district and the west district) in the Emeishan basalt distribution area,Southwest China.Based on the analysis and comparison of the scale and the engineering geological characteristics of the typical structure planes in the basalt hydroelectric Stations,the types of structural planes are used in the first order classification.The secondary order classification is made by considering the impact factors of rock mass quality,e.g.,the state of the structural planes,infilling,joint opening,extending length,the grade of weathering and strength.The engineering geological classification for Emeishan basalt is proposed.Because there are no evidences of a large structure presenting in study area,the first-order(Ⅰ) controlling structural planes do not appear in the classification,there only appear Ⅱ,ⅡⅠ,Ⅳ and Ⅴ grade structural planes influencing the rock-mass quality.According to the different rock-block types in bedding fault zone,the second-grade(Ⅱ) structural planes consisted of bedding fault zone is further classified into Ⅱ_1,Ⅱ_2 and Ⅱ_3.The third-grade(ⅡⅠ) structural planes constructed by intraformational faulted zones are not subdivided.According to the different characteristics of intrusion,alteration and weathering unloading structural planes,the Ⅳ grade structure plane is divided into Ⅳ_1,Ⅳ_2 and Ⅳ_3.According to the development characteristics of joints and fractures,the Ⅴ grade structure plane is divided into fracture Ⅴ_1 and columnar joint Ⅴ_2.In all,the structural planes are classified into four groups with nine subsets.The research proposes the engineering geological classification of the structural plane for the hydropower project in the Emishan basalts,and the result of the study has a potential application in similar regions. The scale and characteristics of rock mass are important indexes of the rock mass structural plane classification. This paper firstly analyzes the spatial distribution characteristics, the structural plane types (original structural plane, tectonic structural plane and hypergenic structural plane) and the associated features of the Emeishan basalts and then studies the classification schemes of the built hydropower structure planes of different rock areas (the east district, the central district and the west district) in the Emeishan basalt distribution area, Southwest China. Based on the analysis and comparison of the scale and the engineering geological characteristics of the typical structure planes in the basalt hydroelectric Stations, the types of structural planes are used in the first order classification. The secondary order classification is made by considering the impact factors of rock mass quality, e.g., the state of the structural planes, infilling, joint opening, extending length, the grade of weathering and strength. The engineering geological classification for Emeishan basalt is proposed. Because there are no evidences of a large structure presenting in study area, the first-order (Ⅰ) controlling structural planes do not appear in the classification, there only appear Ⅱ, Ⅲ, Ⅳ and Ⅴ grade structural planes influencing the rock-mass quality. According to the different rock-block types in bedding fault zone, the second-grade (Ⅱ) structural planes consisted of bedding fault zone is further classified into Ⅱ1, Ⅱ2 and Ⅱ3. The third-grade (Ⅲ) structural planes constructed by intraformational faulted zones are not subdivided. According to the different characteristics of intrusion, alteration and weathering unloading structural planes, the Ⅳ grade structure plane is divided into Ⅳ1, Ⅳ2 and Ⅳ3. According to the development characteristics of joints and fractures, the V grade structure plane is divided into fracture Ⅴ1 and columnar joint Ⅴ2. In all, the structural planes are classified into four groups with nine subsets. The research proposes the engineering geological classification of the structural plane for the hydropower project in the Emishan basalts, and the result of the study has a potential application in similar regions.
出处 《Journal of Mountain Science》 SCIE CSCD 2016年第2期330-341,共12页 山地科学学报(英文)
基金 funded by the National Natural Science Foundation of China (Grant No.41072228)
关键词 工程地质分类 峨眉山玄武岩 岩体结构面 水电工程 空间分布特征 工程地质特征 岩石类型 岩体质量 Emeishan basalt Hydroelectric project Structural plane Bedding fault zone Engineering geological classification
  • 相关文献

参考文献2

二级参考文献21

共引文献55

同被引文献22

引证文献3

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部