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作 者:李和志 葛莎 贺建清[2] 梅松华 叶智淼 LI He-zhi;GE Sha;HE Jian-qing;MEI Song-hua;YE Zhi-miao(Hunan Urban Construction College,Xiangtan 411104,China;Hunan University of Science and Technology,Xiangtan 411201,China;Zhongnan Engineering Corporation Limited,Changsha 410014,China)
机构地区:[1]湖南城建职业技术学院市政与路桥工程系,湘潭411104 [2]湖南科技大学土木工程学院,湘潭411201 [3]中南电建集团中南勘测设计研究院有限公司,长沙410014
出 处:《科学技术与工程》2024年第10期4222-4228,共7页Science Technology and Engineering
基 金:湖南省自然资源厅科技计划(2023-43);湖南省自然科学基金(2021JJ30252)。
摘 要:根据工程地质分析,北盘江大桥推荐桥位安龙岸边坡施加工程荷载后,存在滑动破坏的可能性。为判断安龙岸边坡的稳定性,分别采用Slide.v6007、Phase2 V9.0边坡稳定分析计算软件和FLAC 3D软件对安龙岸边坡进行二维和三维稳定性计算分析。计算分析显示,安龙岸边坡稳定性计算安全系数大于安全系数设计标准,从理论分析来看该边坡处于稳定状态,并且有一定的安全裕度。相对于二维分析的计算安全系数,三维分析的计算安全系数要大。安龙岸边坡稳定性分析结论为北盘江大桥推荐桥位的初步设计提供了较为合理的依据。According to the engineering geological analysis,there was the possibility of sliding failure on the recommended slope of Beipanjiang Bridge after applying the engineering load.To judge the stability of the Anlong bank slope,FLAC 3D software and slope stability analysis software slide.v6007,Phase2 V9.0 were used to analyze the two-dimensional and three-dimensional stability of the Anlong bank slope,respectively.The calculation and analysis show that the safety factor of Anlong bank slope stability calculation is greater than the design standard of safety factor.From the theoretical analysis,the slope is in a stable state with a certain safety margin.Compared with the calculated safety factor of two-dimensional analysis,the calculated safety factor of three-dimensional analysis was larger.The stability analysis conclusion of the Anlong bank slope provided a reasonable basis for the preliminary design of the recommended position of Beipanjiang bridge.
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