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基于模拟退火算法的边坡稳定分析方法
引用本文:张发明,郭丙跃,庞正江,周祖权,周民权.基于模拟退火算法的边坡稳定分析方法[J].岩土力学,2006,27(4):514-518.
作者姓名:张发明  郭丙跃  庞正江  周祖权  周民权
作者单位:1. 河海大学,地质及岩土工程系,南京,210098
2. 长江科学院,岩基所,武汉,430000
3. 天荒坪抽水蓄能电站,浙江,安吉,313000
基金项目:国家电力公司资助项目;河海大学校科研和校改项目
摘    要:岩石边坡开挖中存在大量的随机结构面,结构面与岩桥的组合破坏是边坡破坏的一种重要形式。如何确定抗剪强度最小的滑裂面是边坡工程中的重要研究方向。在岩体结构面调查统计基础上,运用随机网络模拟的方法得到边坡的裂隙网络图像,在此基础上应用模拟退火算法,搜索出边坡由结构面与岩桥组合形成的潜在最危险滑裂面的位置,将结构面组合滑动面与Sarma分析方法结合,形成一种改进的分析岩石边坡稳定性的方法——Sarma-SA分析法,通过一工程实例验证了该方法的合理性。

关 键 词:裂隙岩质边坡  裂隙随机网络  模拟退火算法  极限平衡分析  稳定分析
文章编号:1000-7598-(2006)04-0514-05
收稿时间:2005-08-29
修稿时间:2005-11-21

Fractured rock slope stability analysis based on simulated annealing method
ZHANG Fa-ming,GUO Bing-yue,PANG Zheng-jiang,ZHOU Zu-quan,ZHOU Min-quan.Fractured rock slope stability analysis based on simulated annealing method[J].Rock and Soil Mechanics,2006,27(4):514-518.
Authors:ZHANG Fa-ming  GUO Bing-yue  PANG Zheng-jiang  ZHOU Zu-quan  ZHOU Min-quan
Institution:1. Geology and Geotechnical Engineering Department, Hohai University, Nanjing 210098, China; 2. Rock Engineering Research Department, Yangtze River Scientific Research Institute, Wuhan 430000, China; 3. Tianhuangping Pumping and Storage Power Station, Anji 313000, China
Abstract:There are lots of discontinuities whose geometry exhibits a random behavior in rock excavated slopes, and the failure surface of the slope is normally consisted of the joints and rock-bridges. To determine the lowest shear strength of the slope failure surface becomes the most important subject in slope engineering. Based on field investigation and statistic of the joints and Monte-Carlo simulation method, the joint mapping of the slope rock mass was determined. Then, the sliding surface of the slope can be determined by using the simulated annealing method and the stability factor of the slope can be calculated via a new improved two dimensional Sarma’s limit equilibrium method. A practical example was given to verify this method.
Keywords:fractured rock slope  joint network  simulated annealing method  limit equilibrium  stability analysis
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