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岩石变形和破坏力学的基本问题 被引量:20
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作者 王明洋 戚承志 +2 位作者 钱七虎 丁常树 罗昆升 《解放军理工大学学报(自然科学版)》 EI 2002年第3期33-37,共5页
岩石具有非均匀和各向异性的特征 ,是非连续介质和复杂的流变体结构。岩石变形和破坏方面的理论可以分成两个基本方向 :变形固体的经典力学和位错理论。这些方法用于研究岩石的变形与破坏 ,取得了较大的成功但均具有局限性。所以 ,目前... 岩石具有非均匀和各向异性的特征 ,是非连续介质和复杂的流变体结构。岩石变形和破坏方面的理论可以分成两个基本方向 :变形固体的经典力学和位错理论。这些方法用于研究岩石的变形与破坏 ,取得了较大的成功但均具有局限性。所以 ,目前还不具有真正意义上的岩石力学。建议对岩石的变形过程和破坏必须至少在三个规模构造水平 (宏观、细观和微观 )上同时加以研究。指出了在研究岩石变形和破坏时平移和旋转是有机相互联系的。变形构造水平所有等级体系随后的演化 ,正好使破坏在不同规模上形成有次序的发展 ,直到形成宏观的破坏。 展开更多
关键词 岩石 构造水平 岩石变形 破坏力学 细观物理力学
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Crustal deformation and tectonic levels of Nujiang Gorge since the Miocene
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作者 LIU ZhiCheng JI JianQing +2 位作者 SA Xiao CHEN YaPeng ZHONG DaLai 《Science China Earth Sciences》 SCIE EI CAS CSCD 2018年第1期93-108,共16页
Crustal deformation shows different patterns at different depths due to changes in the physical properties of rock.Tectonic levels can be defined based on the geometry and deformation mechanisms of crustal deformation... Crustal deformation shows different patterns at different depths due to changes in the physical properties of rock.Tectonic levels can be defined based on the geometry and deformation mechanisms of crustal deformation patterns. Nujiang Gorge, with a high riverbed drop, great erosion depth, and strong deformation, has rock exposures at different tectonic levels and thus provides an ideal lab for deformation study. This paper takes the Nujiang Gorge from Chawalong to Fugong as the object to identify structural deformation patterns at different depths through field study and deformation analysis. At depth, the primary form of deformation is flow deformation, as shown on the outcrops at Maji. Ductile shear deformation can be found in many outcrops within the study region, e.g., the Gaoligong dextral shear zone and Puladi-Songta sinistral shear zone that lie to the south and north of Maji, respectively. Further to the north of Puladi, the dominated deformation pattern is similar fold and dense sub-vertical foliation. In addition, brittle faults, as evidence of shallow deformation, can be seen overprinting on the deeper deformation features all over the region. Based on those observations, this paper identifies four tectonic levels from depth to the surface: flow deformation, ductile shear deformation, similar fold, and brittle fault deformation, all of which result from the NEE-SWW compressive stress field. Further evidence from studies on the region′s thermal evolution and regional tectonics suggests that the development of different tectonic levels is closely linked to the discrepant uplift or denudation since the Miocene(~21 Ma). 展开更多
关键词 Tectonic level Nujiang Gorge Flow deformation Ductile shear deformation Thermal evolution
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