[1] |
宋胜武. 基于稳定性评价的坡体结构统一分类研究[J]. 岩石力学与工程学报,2022,41(1):1-9.(SONG Shengwu. Unified classification system of slope structure based on stability evaluation[J]. Chinese Journal of Rock Mechanics and Engineering,2022,41(1):1-9.(in Chinese))
|
[2] |
《中国水力发电工程》编审委员会. 中国水力发电工程:工程地质卷[M]. 北京:中国电力出版社,2000:192-197.(Editorial Review Committee of Hydropower Engineering in China. Hydropower engineering in China:Engineering geology volume[M]. Beijing:China Electric Power Press,2000:192-197.(in Chinese))
|
[3] |
中华人民共和国国家标准编写组. GB/T 50218—2014 工程岩体质量分级标准[S]. 北京:中国计划出版社,2015.(The National Standards Compilation Group of the People?s Republic of China. GB/T 50218—2014 Engineering rock quality grading standard[S]. Beijing:China Planning Press,2015.(in Chinese))
|
[4] |
陈祖煜,徐佳成,孙 平,等. 重力坝抗滑稳定可靠度分析:(一)相对安全率方法[J]. 水力发电学报,2012,31(3):148-159.(CHEN Zuyu,XU Jiacheng,SUN Ping,et al. Reliability analysis on sliding stability of gravity dams:Part I,an approach using criterion of safety margin ratio[J]. Journal of Hydroelectric Engineering,2012,31(3):148-159.(in Chinese))
|
[5] |
中华人民共和国行业标准编写组. NB/T 10512—2021 水电工程边坡设计规范[S]. 北京:中国水利水电出版社,2021.(The Professional Standards Compilation Group of People?s Republic of China. NB/T 10512—2021 Hydropower engineering slope design code[S]. Beijing:China Water Power Press,2021.(in Chinese))
|
[6] |
陈祖煜. 岩质边坡稳定分析:原理•方法•程序[M]. 北京:中国水利水电出版社,2005:195.(CHEN Zuyu. Stability analysis of rocky slopes:principles-methods-procedures[M]. Beijing:China Water Power Press,2005:195.(in Chinese))
|
[7] |
BISHOP A W. The use of the slip circle in the stability analysis of slopes[J]. Géotechnique,1955,5(1):7-17.
|
[8] |
陈祖煜. 建立在相对安全率准则基础上的岩土工程可靠度分析与安全判据[J]. 岩石力学与工程学报,2018,37(3):521-544.(CHEN Zuyu. Reliability analysis and safety criterion in geotechnical engineering based on the index of safety margin[J]. Chinese Journal of Rock Mechanics and Engineering,2018,37(3):521-544.(in Chinese))
|
[9] |
汪小刚. 岩体结构面网络模拟原理及其工程应用[M]. 北京:中国水利水电出版社,2010:128-133.(WANG Xiaogang. Principles of network simulation of rock structure and its engineering application[M]. Beijing:China Water and Power Press,2010:128-133.(in Chinese))
|
[10] |
BIENIAWSKI Z T. 工程岩体分类:采矿、土建及石油工程师与地质工作者的通用手册[M]. 吴立新,王建锋,刘殿书,等译. 徐州:中国矿业大学出版社,1993:26-38.(BIENIAWSKI Z T. Classification of engineering rocks:a general handbook for mining,civil and petroleum engineers and geologists[M]. Translated by WU Lixin,WANG Jianfeng,LIU Dianshu,et al. Xuzhou:China University of Mining and Technology Press,1993:26-38.(in Chinese))
|
[11] |
BARTON N,LIEN R,LUNDE J. Engineering classification of rock masses for the design of tunnel support[J]. Rock Mechanics,1974,6(4):189-236.
|
[12] |
中华人民共和国行业标准编写组. NB/T 10513—2021 水电工程边坡工程地质勘察规程[S]. 北京:中国水利水电出版社,2021.(The Professional Standards Compilation Group of People?s Republic of China. NB/T 10513—2021 Specification for geological investigation of hydropower project slopes[S]. Beijing:China Water Power Press,2021.(in Chinese))
|
[13] |
张鲁渝,郑颖人,赵尚毅,等. 有限元强度折减系数法计算土坡稳定安全系数的精度研究[J]. 水利学报,2003,34(1):21-27. (ZHANG Luyu,ZHENG Yingren,ZHAO Shangyi,et al. Study on the accuracy of the finite element strength reduction factor method for calculating the factor of safety of soil slope stability[J]. Journal of Hydraulic Engineering,2003,34(1):21-27.(in Chinese))
|
[14] |
黄润秋. 岩石高边破稳定性工程地质分析[M]. 北京:科学出版社,2012:17.(HUANG Runqiu. Engineering geological analysis of stability of rocky high-sided breaks[M]. Beijing:Science Press,2012:17.(in Chinese))
|
[15] |
彭土标. 水力发电工程地质手册[M]. 北京:中国水利水电出版社,2011:313-317.(PENG Tubiao. Handbook of hydropower engineering geology[M]. Beijing:China Water Power Press,2011:313-317.(in Chinese))
|
[16] |
FISHER R. Dispersion on a sphere[J]. Proceedings of the Royal Society A:Mathematical,Physical and Engineering Sciences,1953,217:295-305.
|