期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
COMPLEXITY AND CHAOTIC DYNAMICS OF ROCK FAULTING 被引量:1
1
作者 tankaixuan XIEYanshi +1 位作者 CHENGuanghao HUANGXiaonai 《Geotectonica et Metallogenia》 2003年第1期104-111,共8页
Fault is a complex dynamic system controlled by the coupling of rock texture, reaction, fluid flow,stress, and rock deformation mechanism. A coupled reaction-transport- mechanical dynamic model for fault system is est... Fault is a complex dynamic system controlled by the coupling of rock texture, reaction, fluid flow,stress, and rock deformation mechanism. A coupled reaction-transport- mechanical dynamic model for fault system is established and described in this paper. An example is presented for the Shuikoushan deposit, Hunan. The results of dynamic simulation indicate that the evolution and magnitude of fracture permeability of different rocks are different, and that faulting can enhance the spatial heterogeneity of rock permeability and facilitate fluid flow and mineralization in local fault zone. The pressure for a fault usually shows a variation mode of aperiodic oscillation with time, which reflects the chaotic behavior of the evolution of a fault. 展开更多
关键词 reaction-transport-mechanical coupling COMPLEXITY chaotic evolution rock faulting
在线阅读 下载PDF
Meso-Cenozoic uplifting and exhumation on Yunkaidashan:Evidence from fission track thermochronology 被引量:9
2
作者 LIXiaoming WANGYuejun +1 位作者 tankaixuan PENGTouping 《Chinese Science Bulletin》 SCIE EI CAS 2005年第9期903-909,共7页
Yunkaidashan, located at the southern South China block (SCB) and closely adjacent to the Indochina block, is an ideal region for better understanding the temporal and spatial framework of tectonothermal overprinting ... Yunkaidashan, located at the southern South China block (SCB) and closely adjacent to the Indochina block, is an ideal region for better understanding the temporal and spatial framework of tectonothermal overprinting at the southern SCB since Mesozoic. Apatite and zircon fission track thermochronology of various-type rocks from Yunkaidashan is presented in this paper. The results show, no matter what rocks are, the apparent ages of zircon fission track range from 97.4 to 133.0 Ma, and those of apatite fission track from 43.2 to 68.4 Ma. The length of apatite fission track yields an average confined track length of ~13 μm and shows normal distribution of unimodal frequency. It is inferred that the uplifting amplitude has been more than 5 km in Yunkaidashan since late Mesozoic. The difference of fission track apparent ages at different locations in Yunkaidashan suggests a paleophysiognomic scenario of the heterogeneous uplift/denudation. These data of the fission track thermochronology provide new constraints for better understanding the tectonophysiognomic pattern of the SCB since late Mesozoic. 展开更多
关键词 岩石学 锆石 磷灰石 风化作用 腐蚀作用
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部