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藏东南某大型水电站工程区地应力状态及反演分析
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作者 李征征 杨文超 +2 位作者 张鹏 李常虎 范玉璐 《地质力学学报》 CSCD 北大核心 2023年第3期442-452,共11页
某水电站作为西藏易贡藏布流域的控制性调节工程,对满足西藏电网的用电需求发挥重要作用。为查明该水电站现今地应力环境,掌握地下厂房、引水隧洞等关键位置地应力分布特征,保障其工程安全,文章综合考虑工程区构造地质背景、岩体条件等... 某水电站作为西藏易贡藏布流域的控制性调节工程,对满足西藏电网的用电需求发挥重要作用。为查明该水电站现今地应力环境,掌握地下厂房、引水隧洞等关键位置地应力分布特征,保障其工程安全,文章综合考虑工程区构造地质背景、岩体条件等,通过布设钻孔开展水压致裂法地应力测量工作,获得4个测点(8个孔)的地应力数据;依据现有地质条件,建立有限元三维地质模型;通过测得的应力状态,获得加载条件,进行工程区应力场反演分析。结果表明:二维地应力测试结果显示最大水平主应力为4.17~16.93 MPa,三维地应力测试结果显示最大主应力为14.20~16.23 MPa,最大水平主应力方位为NE 38°~NE 47°,现今构造应力场以北东向为主导;电站地下厂房区域2995 m高程水平面最大主应力σ1应力值为11.70~12.12 MPa,中间主应力σ2应力值为9.81~10.74 MPa,最小主应力σ3应力值为5.22~6.85 MPa;引水隧洞沿线最大主应力值σ1为11.8~14.05 MPa,中间主应力值σ2为10.13~12.83 MPa,最小主应力值σ3为4.56~8.49 MPa;该水电站地下厂房轴线方向和引水隧洞轴线方向与实测最大主应力方向呈小角度相交,地应力场对工程洞室的稳定性有利。后期施工过程中应综合考虑实际地质情况,采用适宜的隧洞施工技术并加强施工监测,从而确保工程安全建设。 展开更多
关键词 藏东南 水电站 水压致裂法 应力测量 应力场反演分析 工程稳定性
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The Spatial and Temporal Variation of Modern Tectonic Stress Field in North China before and after the 1976 Tangshan Earthquake 被引量:3
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作者 Cui Xiaofeng and Xie FurenInstitute of Crustal Dynamics, CSB, Beijing 100085, China 《Earthquake Research in China》 2002年第1期71-80,共10页
By using 126 earthquake focal mechanism solutions (M S≥4.7) during the period of 1963~1998, modern tectonic stress field in North China is inverted by means of the step by step convergence. The inversion results ind... By using 126 earthquake focal mechanism solutions (M S≥4.7) during the period of 1963~1998, modern tectonic stress field in North China is inverted by means of the step by step convergence. The inversion results indicate that the tectonic stress field in the research region is clearly variational in space and time: (1) The middling principal stress axis σ 2 is basically vertical. The maximum and minimum principal stress axes σ 1 and σ 2 are nearly horizontal, but the azimuths of σ 1 and σ 3 are inconsistent in different districts and periods. (2) Before the Tangshan earthquake in 1976, the three principal stress axes are uniform. The azimuth of maximum principal stress axis σ 1 is 68° (striking in a NEE-SWW direction). (3) After the Tangshan earthquake, the maximum principal stress axis σ 1 and minimum principal stress axis σ 3 have variations in different districts. In the northern area of North China and on the eastern side of the Tancheng-Lujiang fault zone, the maximum principal stress axis σ 1 is also striking in a NEE-SWW direction. Its azimuth is 68°. It is the same as that before the Tangshan earthquake. In the southern area of North China, the maximum principal stress axis σ 1 is striking in a E-W direction and its azimuth is 87°. 展开更多
关键词 Modern tectonic stress field Focal mechanism solution North China Inversion analysis
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