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首页> 外文期刊>Earthquake Research in China >Large-Scale Dextral Strike-Slip Movement and Associated Tectonic Deformation Along the Red-River Fault Zone
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Large-Scale Dextral Strike-Slip Movement and Associated Tectonic Deformation Along the Red-River Fault Zone

机译:沿红河断裂带的大型右旋走滑运动及相关的构造变形

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摘要

Field investigation has revealed that the large-scale dextral strike-slip movement and the associated tectonic deformation along the Red River fault zone have the following features: geometrically, the Red River fault zone can be divided into three deformation regions, namely, the north, central and south regions. The north region lies on the eastern side of the Northwest Yunnan extensional taphrogenic belt, which is characterized by the 3 sets of rift-depression basins striking NNW, NNE and near N-S since the Pliocene time, and on its western side is the Lanping-Yunlong compressive deformation belt of the Paleogene to Neogene; the deformation in the central region is characterized by dextral strike-slip or shearing. The east Yunnan Miocene compressive deformation belt lies on the eastern side of the fault in the south, and the Tengtiaohe tensile fault depression belt is located on its west. In terms of tectonic geomorphology, the aforementioned deformation is represented by basin-range tectonics in the north, linear faulted valley-basins in the central part and compressive (or tensional) basins in the south. Among them, the great variance in elevation of the planation surfaces on both sides of the Cangshan-Erhai fault suggests prominent normal faulting along the Red River fault since the Pliocene. From the viewpoint of spatial-temporal evolution, the main active portion of the fault was the southern segment in the Paleogene-Miocene-Pliocene, which is represented by "tearing" from south to north. The main active portion of the fault has migrated to the northern segment since the Pliocene, especially in the late Quaternary, which is characterized by extensional slip from north to southeast. The size of the deformation region and the magnitude of deformation show that the eastern plate of the Red River fault has been an active plate of the relative movement of blocks.
机译:野外调查表明,沿红河断裂带的大规模右旋走滑运动和相关的构造变形具有以下特征:从几何学上讲,红河断裂带可分为三个变形区域,即北部,中南部地区。北部地区位于滇西北伸展成虫带的东部,其特征是自上新世以来三套裂陷盆地袭击了西北偏北,北北东向和南北近,其西侧为兰坪-云龙。古近纪至新近纪的压缩变形带中心区域的变形以右旋走滑或剪切为特征。云南东部中新世压缩变形带位于断层的东侧,南部,而滕庙河拉张断裂带位于西部。就构造地貌而言,上述变形以北部的盆地范围构造,中部的线性断层谷盆地和南部的压缩(或拉伸)盆地为代表。其中,苍山—E海断裂带两侧平坦面的高度差异很大,表明自上新世以来沿红河断裂带的正断层明显。从时空演化的观点来看,断层的主要活动部分是古近纪-中新世-上新世的南段,以从南向北“撕裂”为代表。自上新世以来,断层的主要活动部分已迁移到北部,特别是在第四纪晚期,其特征是从北向东南伸展。变形区域的大小和变形的大小表明,红河断层的东部板块是块体相对运动的活动板块。

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