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《Geotectonica Et Metallogenia》 2001-01
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ANALYSIS OF STRUCTURAL STYLES OF THE BASIN-RANGE SYSTEMS IN THE CENTRAL-CHINA OROGENIC CHAIN OF YANGTZE VALLEY AND THE DYNAMIC MECHANISM

HU Bao qing, LI Xu , MU Shi chun (Changsha Institute of Geotectonics, Chinese Academy of Sciences, Changsha 410013, China)  
Basin and orogenic belt belong to the same tectonic system which have close connections in spatial evolution and dynamic mechanism. Structural styles analysis of basin range system,not only may rebuild basin range coupling process and landscape evolution of orogenic belt and its adjacent basin,but also become the foundation in exploring how orogenesis control relief, climate, resources, energy and environment. In the light of dynamic mechanism,three main basin range system types may be reduced to, namely, compress, stretch, strike slip complex type. In combination with their geotectonic settings, a comprehensive classification scheme may be deduced for structural styles of basin range system. Natural disasters and eco environment in the Yangtze Valley have been restricted and impressed by crustal movement and Qinling Dabie orogenesis since the Mesozoic and Cenozoic. In terms of collocating relation and contacting basin prototype and orogenic belt around the basin for cause of formation, typical structural styles of basin range system in the central orogenic chain within the Yangtze Valley comprises coupling Tongbo Dabie orogenic belt and Jianghan Tongting fault basin at the northern margin of the central Yangtze landmass,and coupling Qinling Dabie mountain margin thrust orogenic belt and Sichuan foreland basin at the northern margin of the upper Yangtze landmass. The paper analyzes evolutionary features of two typical structural styles of basin range system during late orogenic and post orogenic stages, and probes into their dynamic mechanism. It is emphasized that, in different stages of basin range system of different properties and basin mountain transformation process, different structural styles may be formed; and different associations of structural styles can form different types of natural disasters and eco environment systems.
【Fund】: 中国科学院知识创新工程项目! (KZCX2 - 113)的成果之一
【CateGory Index】: P542
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