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Tectonic evolution and the analysis of unfavorable geology in a tunnel

Tectonic evolution and the analysis of unfavorable geology in a tunnel
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摘要 Based on the theory of geomechanics and using geologic analytical methods,analyed the fault characteristics, mechanical properties, displacement mode, tectonic system, structural pattern, activity mode of stress, tectonic activity, and tectonic evolution ofthe area of the Xiamen submarine tunnel, the strike NWW 295^(。), which is the main unfavorable geological structure that affects the safety of the tunnel construction; the macrogeological prediction concludes that weathered troughs and groundwater-rich zonesformed by its larger-scale fault fracture zones are the main unfavorable geological bodiesprovides a basis for preventing the geo-logical hazards in the tunnel construction. Based on the theory of geomechanics and using geologic analytical methods, analyed the fault characteristics, mechanical properties, displacement mode, tectonic system, structural pattern, activity mode of stress, tectonic activity, and tectonic evolution of the area of the Xiamen submarine tunnel, the strike NWW 295~, which is the main unfa- vorable geological structure that affects the safety of the tunnel construction; the macro geological prediction concludes that weathered troughs and groundwater-rich zones formed by its larger-scale fault fracture zones are the main unfavorable geological bodies provides a basis for preventing the geo-logical hazards in the tunnel construction.
出处 《Journal of Coal Science & Engineering(China)》 2009年第4期374-381,共8页 煤炭学报(英文版)
基金 Supported by the National Natural Science Foundation of China(10702072) the Education Department of Hebei Province (Z2006428) Doctoral Foundation of Hebei Normal University of Science & Technology
关键词 TUNNEL tectonic evolution unfavorable geological body macro geological prediction geological analytical method 厦门海底隧道 地质分析 构造演化 断层破碎带 地质力学 故障特征 力学性能 位移模式
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