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龙门山南段双石断裂的特征及地质意义 被引量:11
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作者 林茂炳 陈运则 《成都理工学院学报》 CSCD 1996年第2期64-68,共5页
双石断裂是龙门山南段的前山断裂,但并不是真正的盆地与造山带的分界。它是一组兼具走滑性质的道冲断裂,断裂带中具有许多红色地层夹片和印支期不整合残块,充分反映了该断裂发育晚于盆地的真正边界。
关键词 逆冲断层 整合残块 龙门山断裂 地质意义
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龙门山碧口断块的形成及其空间归位研究 被引量:5
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作者 汤军 赵鹏大 +3 位作者 陈建平 历青 靳秀菊 冯春 《中国地质》 CAS CSCD 2002年第3期286-290,共5页
按照地质异常的分析指导思想,本文提出地质异常体空间归位概念,对龙门山北端的碧口断块进行了空间归位分析。文中对碧口断块的运动轨迹进行了复原分析,认为本区地质空间异常体是受青藏高原、华南陆块和华北陆块三重构造运动作用的结果... 按照地质异常的分析指导思想,本文提出地质异常体空间归位概念,对龙门山北端的碧口断块进行了空间归位分析。文中对碧口断块的运动轨迹进行了复原分析,认为本区地质空间异常体是受青藏高原、华南陆块和华北陆块三重构造运动作用的结果。由于它们各自的构造运动方向不同,造成其在不同时间、不同空间位置所起的作用也不相同。笔者将碧口断块运动的主要过程划分为4个阶段:①挤压断裂作用;②西向滑脱作用;③右旋扭转作用;④东向重力挤压作用,这样就解释了本区的地质构造成因。因此在研究该区或者其他复杂地区的地质问题时,要考虑多个作用主体以及在不同时间的影响作用,从时间、空间的动态演变过程来加以认识分析地质体的成因。由于不同构造主体在不同时间的作用,同时也造成了异常地质体在空间分布上的多样性,因此,本文提出的异常地质体空间归位概念,对认识成矿多样性以及成矿谱系研究具有重大的现实意义。 展开更多
关键词 地质异常体 空间归位 构造运动龙门山断裂带 碧口断块
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豫西龙门滑动构造的形成条件研究 被引量:2
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作者 叶建 李恩花 《能源与环保》 2018年第4期95-99,103,共6页
在偃龙煤田西部发现龙门滑动构造已有60多年,尚未整体上对其形成机制及控煤作用深入研究。采用断块掀斜理论和构造应力场理论,通过对物质条件、动力条件、边界条件、诱发条件等运动条件分析,说明龙门滑动构造是在嵩山隆起基础上,受东西... 在偃龙煤田西部发现龙门滑动构造已有60多年,尚未整体上对其形成机制及控煤作用深入研究。采用断块掀斜理论和构造应力场理论,通过对物质条件、动力条件、边界条件、诱发条件等运动条件分析,说明龙门滑动构造是在嵩山隆起基础上,受东西向、北西2组边界断裂组成断块掀斜控制,在华北古板块地壳活动频繁的背景下,诱发重力失稳的煤系岩层由掀起端向倾斜端滑移,经过燕山期晚期至喜马拉雅期早期的长期间断滑动形成的。滑动构造会造成二1煤层上覆岩层缺失,引起煤厚强烈变化和煤层顶板变形,导致水文地质条件复杂化。弄清龙门滑动构造的形成机制,对分析偃龙煤田西部煤层赋存条件、煤厚变化规律等控煤特征及矿床开发管理有重要意义。 展开更多
关键词 龙门 滑动构造 运动条件 断块掀斜 重力失稳
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川东大天池气田龙门区块石炭系黄龙组沉积相研究 被引量:3
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作者 张成富 徐国盛 +2 位作者 龚德瑜 曹竣锋 杨运会 《物探化探计算技术》 CAS CSCD 2010年第4期371-379,336,共9页
龙门区块为四川盆地川东大天池构造带中段东南翼下盘的次一级潜伏背斜,从南到北依次分布有以鞍部相连的明达、龙门、任市三个次一级高点。这里依据川东大天池气田龙门区块石炭系黄龙组的钻井、岩芯、薄片、测井资料,结合区域地质背景,... 龙门区块为四川盆地川东大天池构造带中段东南翼下盘的次一级潜伏背斜,从南到北依次分布有以鞍部相连的明达、龙门、任市三个次一级高点。这里依据川东大天池气田龙门区块石炭系黄龙组的钻井、岩芯、薄片、测井资料,结合区域地质背景,建立了研究区石炭系黄龙组(膏湖~咸化泻湖~陆表海)沉积环境变迁模式。将龙门区块石炭系黄龙组划分为三个亚相带,八个微相带。其中黄龙组二段的泻湖内浅滩是本区有利的沉积相带,主要分布在龙门-明达二高点处,为龙门区块石炭系主力产气相带。 展开更多
关键词 川东地区 大天池气田 龙门区块 石炭系 黄龙组 沉积微相
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The Genetic Mechanism of Wenchuan Earthquake 被引量:2
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作者 WANG Yunsheng HUANG Runqiu LUO Yonghong XU Hongbiao 《Journal of Mountain Science》 SCIE CSCD 2011年第2期336-344,共9页
The genetic mechanism of the 5.12 Wenchuan Earthquake is still being debated and there is still no convincing general explanation for most of the phenomena. This is because researchers have ignored the important role ... The genetic mechanism of the 5.12 Wenchuan Earthquake is still being debated and there is still no convincing general explanation for most of the phenomena. This is because researchers have ignored the important role of the Minshan block in the seismogenic process. The authors present a new opinion based on geological survey and comprehensive analyses. The Minshan block is a key tectonic element of the earthquake occurrence in the northwest triangle faulty block of Sichuan Province. The Minshan block is bordered by Longmen Mountain Range fractures in the south, the Huya fracture in the east, the Tazang fracture in the north and the Mounigou Valley fracture in the west. The rigidity of the block is relatively larger than those of the adjacent regions. The block's eastward movement pushed by regional maximum main geo-stress is limited when it suddenly tapers off near the east triangle end with a bottle-neck effect, and this causes geo-stress concentration around it. The shape of the block is coffin-like, wide in the upper part and narrow in the lower part. When a strong earthquake occurs along the block margins, the lock-up effect temporarily released, resulting in geo-stress transmitted to the Pingwu-Qingchuan (Motianling block) region. This transmission caused the Wenchuan earthquake's aftershocks to be concentrated in Qingchuan region. As the block moved eastward, the back of the block, i.e. the south segment of Mounigou Valley fracture, became active after the Wenchuan Earthquake. Therefore the aftershocks were concentrated along the south segment of Mounigou Valley fracture. Because the south margin is composed of the front range fracture, the geo-stress gradually released, causing many aftershocks along the Guanxian-Anxian fracture. The geological survey made after the Wenchuan Earthquake reveals that the surface ruptures in the south margin of Minshan block occur not along the Beichuan-Yingxiu fracture (central fracture) also along the front range fracture. The length of the surface rupture in the south margin ranges from several meters to several kilometers and it is distributed in en echelon (closely-spaced, parallel or subparallel, step-like surface ruptures). The vertical and horizontal displacements range from place to place and the thrusting component is dominant in the middle segment of Longmen Mountain Range structure belt. Nevertheless, the strike slip of the surface ruptures is dominant in the north segment of Longmen Mountain Range structure belt. Therefore the south margin is the original seismic structure. The sudden thrusting of the south margin of the Minshan block is the source event for the Wenchuan Earthquake. 展开更多
关键词 地震发生 汶川 成因机制 地表破裂 地质调查 构造带 遗传机制 孕震过程
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TECTONIC EVOLUTION OF THE YANGTZE PASSIVE MARGIN AND SONGPAN GARZ? FOLD BELT, CHINA
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作者 Mathew J. Harrowfield,Christopher J.L. Wilson cjlw@myriad.its.unimelb.edu.au) 《地学前缘》 EI CAS CSCD 2000年第S1期185-185,共1页
The Songpan Garzê Fold Belt records Triassic shortening of a relict Palaeo\|Tethyan basin during assembly and accretion of the Cimmerian continental chain to Laurasia’s southern margin. Enclosed by palaeo\|Laura... The Songpan Garzê Fold Belt records Triassic shortening of a relict Palaeo\|Tethyan basin during assembly and accretion of the Cimmerian continental chain to Laurasia’s southern margin. Enclosed by palaeo\|Laurasia and the Cimmerian fragments of Qiangtang (North Tibet) and Yangtze (South China), the Songpan Garzê Fold Belt was shortened by more than 50% during the Indosinian Orogeny c.200Ma. [BW(D(S,,)G2*7][BHDWG2*7,WK*2,WK5,WK15*2,WK17*2,WK*2W] 2000,7(增刊) 地 学 前 缘 [FK(K+6mm。17*2] 4\ Major Topic:Geology of the Inner Tibetan Plateau [BW(S(S,,)G2*7][BHDWG2*7,WK*2,WK17*2,WK15*2,WK5,WK*2W] [FK(K+6mm。17*2] 4\ Major Topic:Geology of the Inner Tibetan Plateau 地 学 前 缘 2000,7(增刊)South\|directed Indosinian compression decolléd onlapping basin sediments from the Yangtze Block’s passive margin—reactivating the margin’s tiered geometry and partitioning strain into margin\|normal and margin\|parallel structures on a large scale. Margin\|normal transport of the allochthonous sedimentary pile was accommodated by southeast\|directed nappe propagation in the Longmen Mountains Thrust—Nappe Belt, whilst conjugate, margin\|parallel (southwest\|directed) transport was accommodated by a flat\|lying detachment at the base of the sedimentary pile.The later is characteristic of deformation of the greater Songpan Garzê Fold Belt. 展开更多
关键词 HIMALAYAN OROGENY INDOSINIAN OROGENY longmen Mountains Songpan—Garzê FOLD Belt YANGTZE block Cimmerian Damba
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