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261.
Collision leading to multiple-stage large-scale extrusion in the Qinling orogen: Insights from the Mianlue suture 总被引:10,自引:5,他引:10
Sanzhong Li Timothy M. Kusky Lu Wang Guowei Zhang Shaocong Lai Xiaochun Liu Shuwen Dong Guochun Zhao 《Gondwana Research》2007,12(1-2):121
The geologic framework of the Phanerozoic Qinling–Dabie orogen was built up through two major suturing events of three blocks. From north to south these include the North China craton (including the north Qinling block), the Qinling–Dabie microblock, and the South China craton (including the Bikou block), separated by the Shangdan and Mianlue sutures. The Mianlue suture zone contains evidence for Mesozoic extrusion tectonics in the form of major strike–slip border faults surrounding basement blocks, a Late Paleozoic ophiolite and a ca. 240–200 Ma thrust belt that reformed by 200–150 Ma thrusts during A-type (intracontinental) subduction. The regional map pattern shows that the blocks are surrounded by complexly deformed Devonian to Early Triassic metasandstones and metapelites, forming a regional-scale block-in-matrix mélange fabric. Five distinct tectonic units have been recognized in the belt: (1) basement blocks including two types of Precambrian basement, crystalline and transitional; (2) continental margin slices including Early Paleozoic strata, and Late Paleozoic fluviodeltaic sedimentary rocks, proximal and distal fan clastics, reflecting the development of a north-facing rift margin on the edge of the South China plate; (3) out of sequence oceanic crustal slices including strongly deformed postrift, deep-water sedimentary rocks, sheeted dikes, basalts, and mafic–ultramafic cumulates of a Late Paleozoic ophiolite suite, developing independent of the rift margin in a separate basin; (4) out-of-sequence island-arc slices; (5) accretionary wedge slices. All the tectonic units were deformed during three geometrically distinct deformation episodes (D1, D2 and D3 during 240–200 Ma). Units 2–4 involved southward thrusting and vertical then southward extrusion of about 20 km of horizontal displacement above the autochthonous basement during the D1 episode. Thrust slices 20 km south of the Mianlue suture are related to this vertical extrusion due to the same rock assemblages, ages and kinematics. The D2 and D3 episodes folded all the units in a thick-skinned style about east–west (D2) and west–northwest (D3) axes in the Mianlue suture zone. An early foreland propagating sequence of accretion of Late Paleozoic rocks deposited above the Yangtze craton is not involved in D1 deformation but is temporally equivalent to the D2 and D3 deformation in the Mianlue suture. Two stages of strike–slip faulting mainly occurred at the end of D2 and D3, respectively. During D2 deformation, the Bikou block was obliquely indented to the ESE into the Mianlue suture, rather than being thrust over the Mianlue suture from the north as a part of the Qinling–Dabie microblock. During D3 deformation, however, the Bikou block was bounded by the south boundary fault of the Mianlue suture, and the Yangpingguan fault on the south. These faults are coeval strike–slip faults, but of opposite senses, and accommodated minor southwestward extrusion of the Bikou block into Songpan–Ganze orogen. The other basement blocks north of the Mianlue suture were extruded eastward by about 20 km of lateral displacement, based on the offset of the Wudang dome, during the D3 episode due to the northeastward indentation of the Hannan complex of the South China craton. Post-D3 emplacement of granite, cutting across the strike–slip faults such as the Mianlue suture, provides a minimum age of 200 Ma for D3 deformation. Therefore, based on insights from the evolution of the Mianlue suture, the D2 and D3 episodes in the Mianlue suture and its neighbors are not responsible for and associated with the two-stage extrusion of the Dabie UHP-HP terranes from the Foping dome to the present erosional surface (more than 350 km). 相似文献
262.
首先应用MATLAB语言,编制了多边形法计算基底界面深度的程序,计算了一条基底界面深度。以区域地质资料和物性资料为依据,对黑龙江省虎林市幅1∶20万重磁场进行了综合分析。根据虎林盆地布格异常和区域场特征,结合重力异常和航磁异常等综合资料,按结晶基底起伏状态,将虎林盆地划分为3个隆起区,2个凹陷区。应用Sufer软件以及3D成图技术恢复出盆地基底起伏界面全貌。 相似文献
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无线GIS空间数据动态副本管理研究 总被引:2,自引:0,他引:2
针对GIS海量空间数据更新要求,研究了无线网络环境下空间数据传输和存储的副本动态复制与管理技术。通过分析空间数据移动复制服务策略,设计了基于无线网络的动态副本管理系统(DRMS)来实现空间数据的移动动态复制,并研究副本管理模型和副本更新算法,保证了无线网络传输的稳定性。 相似文献
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基于模糊划分中存在的分类不确定性因素和空间数据的空间位置特征,提出了一种新的空间数据模糊聚类有效性函数。实验结果表明,这种新的有效性函数能够对模糊聚类结果的有效性进行正确的评价,特别是对于空间数据模糊聚类有效性评价,其分类效果较理想,同其他有效性指标相比,能得到较优的分类数。 相似文献
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地质遗迹资源保护利用价值是合理划分保护区的基础.本文以盐津乌蒙峡谷地质公园地质遗迹资源为例,从地质遗迹资源利用性和脆弱性两个方面构建地质遗迹资源保护利用价值评价指标体系,运用层次分析法确定地质遗迹资源保护利用价值评价因子权重.采用专家咨询法建立地质遗迹资源保护等级划分标准.利用菲什拜因-罗森伯格模型对盐津地质公园典型地质遗迹资源进行保护利用价值评价并划分保护等级.根据保护利用价值评价结果,利用Sufer9.0软件制作地质遗迹资源保护利用等值线图,结合地质遗迹资源保护的便利性与地方相关规划的协调性,绘制出盐津乌蒙峡谷地质公园地质遗迹资源保护分区图,结果为:盐津乌蒙峡谷地质公园特级保护区面积0.06 km2,一级保护区面积11.74 km2,二级保护区面积23.47 km2,三级保护区面积75.07 km2. 相似文献
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