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1.
青藏块体东北缘现今构造形变与蕴震特征   总被引:8,自引:1,他引:8  
利用青藏块体东北缘近30年的精密水准网、跨断层形变测量网复测资料,以及近年来GPS观测分析结果,结合地质构造与地震活动,初步研究和探讨了区域构造形变与强震蕴育的一些特征.结果表明:① 本区现今构造形变时空分布很不均匀:主要边界断裂附近构造形变相对强烈,远离则衰减.垂直差异运动强度和变形状态随时间演变,水平运动与变形呈明显的挤压走滑特征;② 印度板块的北推碰撞引起的青藏块体持续NE 向挤压运动所产生的构造应力场,是本区构造形变与地震蕴育的主控应力.构造形变及地震活动的时空分布演化,与块体活动及区域构造应力场动态演化密切相关;③ 构造块体边界地带出现的垂直形变异常隆起与高梯度形变带,以及显著地断层形变异常,是块体运动受阻、构造应力场强化而蕴育强震的一个标志,往往伴随有6级左右及以上强震活动,但地震并不一定发生在运动幅度最大的部位.断层形变异常呈现趋势积累——加速——转折变化特征的地段及附近,往往是应变能积累、强震蕴育发生的场所.   相似文献   

2.
南北地震带区域形变异常特征与地震关系研究   总被引:1,自引:0,他引:1  
利用南北地震带及附近地区20世纪70年代以来的区域水准网和90年代以来的GPS监测网资料, 结合地质构造和监测区发生的多次6级左右及以上震例, 分析了震前区域性形变场异常的基本特征。 进而根据资料支持程度, 分别以GPS、 区域水准观测位移为地表约束, 以“973”项目活动地块划分结果为地质依据, 进行非震负位错模型反演计算, 研究了数值模拟结果反映的活动块体和边界断裂构造变形状态与地震的关系。 在此基础上, 定性与定量相结合分析研究了强震前区域性水平、 垂直构造形变异常特征及可能的机理, 初步总结了基于区域水准、 GPS观测与数值模拟的强震前区域构造形变异常的一些判据。  相似文献   

3.
青藏高原北部地区构造变形特征及与强震关系   总被引:6,自引:0,他引:6  
通过对1993~1999、1999~2001年青藏高原北部地区GPS水平运动资料的非震负位错模型反演和形变应变场时空演化分析,结合地质构造和有资料积累以来的强震活动,研究块体及边界带的构造变形特征,以及与强震孕育的关系.结果表明:(1)5级以上,特别是6级左右及6级以上地震多发生在区域应变场剪切应变率或面膨胀率高值区、边缘或其附近,尤其是与区域主干断裂构造运动一致的剪切应变率高值区;形变差异显著的块体边界附近;沿块体边界断裂带的高应变积累的闭锁区段及其附近.(2)1999~2001年较1993~1999年大范围的水平运动速率明显减弱,但应变率的减弱幅度不大,可能揭示昆仑山口西8.1大震孕育对北东向的构造应力传递起了某种“阻隔和调制作用”及太平洋板块的西进作用加强.(3)目前应变场分布高值区、块体间差异运动显著的边界带及高应变积累闭锁段有阿尼玛卿断裂中东段与鄂拉山断裂交汇区、祁连山构造带中东段及与海原断裂西段交汇区、日月山一拉脊山断裂与西秦岭北缘断裂交汇区、庄浪河断裂与西秦岭北缘断裂交汇区、六盘山断裂附近.  相似文献   

4.
大地形变是地壳构造运动变形在地表的反映.基于区域水准、GPS等大地形变监测得到的、与构造有关的区域性形变异常,是伴随着强震孕育到一定阶段的外在表现,它具有定量直观、物理意义明确的特点.然而,由于区域水准垂直形变复测间隔较长(几年或更长),GPS资料积累的时间又短、震例较欠缺,使得将区域性形变异常用于地震的中短期预测受到限制.近年启动的中国地震局"十五"重点科研项目"强地震中期预测新技术、物理基础及其应用研究"的主要内容之一,就是将区域水准、GPS等监测得到的大范围区域性形变异常背景场、应变场分布与地质构造活动背景相结合,应用国家重点基础研究"大陆强震机理与预测"(973)项目"活动地块"方面的研究成果,从大的空间分布上研究与强震孕育有关的区域性形变、应变场异常分布特征,进行强震中期(1~3年)预测研究.  相似文献   

5.
强震的孕育、发生涉及大尺度的地壳运动和构造形变的分布.中国大陆西部现今构造形变强烈,一些强烈活动的深大断裂的分布,把地壳分割成了若干活动地块.GPS观测获得的大范围的水平运动速度场分布具有较好的空间有序性和协调性.大区域水平相对运动和变形的协调与平衡,主要是通过一些大的断裂带(活动地块的边界带)的剧烈运动和变形来调整实现的.大区域的继承性构造运动决定了这些大的活动断裂带的相对运动与变形的性质及其空间分布趋势.强震前局部区域的相对运动和变形的异常是与大区域的地壳运动和整体变形相联系的.强震活动引起的调整总体上是维护大区域地壳运动和变形的协调与平衡的趋势.研究大断裂带构造变形的趋势背景和识别异常区段,是预测未来强震地点的重要途径.  相似文献   

6.
中国大陆的强震活动与活动地块   总被引:190,自引:6,他引:190  
中国大陆晚新生代和现代构造变形以地块运动为主要特征,活动地块是被形成于晚新生代、晚第四纪(10~12万年)至现今强烈活动的构造带所分割和围限、具有相对统一运动方式的地质单元。不同活动地块的运动方式和速度是不同的,地块间的差异运动在其边界最强烈。强震是在区域构造作用下,应力在变形非连续地段不断积累并达到极限状态后突发失稳破裂的结果,活动地块边界带由于其差异运动强烈而构造变形非连续性最强,最有利于应力高度积累而孕育强震。我国大陆几乎所有8级和80%~90%的7级以上强震发生在活动地块边界带上,表明地块间的差异运动是大陆强震孕育和发生的直接控制因素。  相似文献   

7.
丽江7.0级和唐山7.8级地震前形变场动态演化与异常特征   总被引:3,自引:0,他引:3  
对1996年丽江7.0级和1976年唐山7.8级地震前的形变动态演化过程做了对比分析,结果表明:(1)两次强震前形变场均存在大范围垂直差异运动增强以及与构造相关的形变高梯度带(区);(2)震前数年(或更长)垂直形变场的趋势改变,并出现形变局部化。结合强震前区域地震活动,研究了这两次地震前垂直形变动态演化与孕震形变的异常特征,认为与构造相关的强烈差异运动是孕震应变能积累的主要方式。  相似文献   

8.
中国大陆活动地块与强震活动关系   总被引:16,自引:0,他引:16  
研究了中国大陆各Ⅰ级活动地块区强震活动特点, 包括强震活动的总体水平、地震应变能释放速率、震级频度关系、震源破裂特性和地震应力场特征等, 以及由GPS资料给出的各活动地块运动变形特征, 如各地块运动的速度、地块变形的应变速率、最大主压应变方向、地块运动变形中的张、压状态等. 在此基础上, 对中国陆区Ⅰ级活动地块区的强震活动特点和地壳运动变形性状进行对比研究, 给出各活动地块的构造动力环境及其运动变形的性状决定其地震活动的总体状况, 包括: 活动地块现今地壳运动变形的应变速率与地震应变能释放呈线性相关; 由震源机制给出的各活动地块的地震应力场与由GPS观测给出的现今地壳运动应变(应力)场的同一性, 以及震源破裂类型与地壳形变张、压状态的一致性等. 这些结果显示了中国大陆活动地块及其运动性状对强震孕育发生的控制作用.  相似文献   

9.
鄂尔多斯地块及其周缘地区的地震动力学和强震危险性研究,是检验和发展活动地块理论的理想场所。近年来,伴随青藏高原动力学研究视角的不断扩大,逐渐成为国内外新的地学研究热点。项目以"丝绸之路"经济带东端、我国重点强震危险区之一的鄂尔多斯活动地块为研究对象,构建活动地块及边界带三维深浅结构和构造变形模式,建立适用于板块内部的强震孕育动力学模型,完善大陆强震孕育和发生的活动地块理论,研发具有物理意义的时间相关强震预测理论模型,提出地震危险性理论预测技术规程。我国科学家20世纪末提出的大陆强震受控于活动地块的理论,为中国大陆强震危险地点预测提供了重要理论指导,但是如何将该理论更好地应用于实际的强震危险性预测研究中,还需要进一步深入研究活动地块运动和变形如何控制边界带强震的孕育和发生过程。选择鄂尔多斯活动块为研究的目标区,重点开展以下几个方面的研究内容:地块边界带断裂活动习性与强震复发行为;地块及周缘现今三维地壳运动与应变分配;地块及边界带深部结构与深-浅构造耦合;活动地块理论完善与边界带强震危险性研究。项目执行两年来,在几个方面均取得了进展和初步成果,建立了主要边界带断裂强震复发行为模式,获得了地块及周缘不同类型现今三维地壳运动状态,建立了关键区域地块边界带深-浅构造耦合构造模型,开展了边界带强震危险性研究。  相似文献   

10.
中国大陆活动地块变形与地震活动的关系   总被引:4,自引:0,他引:4  
王辉  张国民  吴云  马宏生 《中国地震》2003,19(3):243-254
本文在中国大陆及邻区活动地块研究的基础上,利用球面上的非连续变形分析方法(DDA)和近10年来的GPS测量结果,对整个中国大陆及其周边地区各活动地块的运动和变形状况进行了初步研究。研究结果表明,虽然中国大陆东西部各活动地块的运动速率和应变率相差较大,但位于同一个地块区的各个活动地块之间的运动和变形具有一定的协调性。文中还计算了活动地块边界带之间的相对运动,讨论了现今地壳运动和强震活动的关系。发现1988年以来,中国陆区的7级以上地震都发生在GPS测量所给出最大剪切应变率差异大的活动地块的边界带和现今滑动速率大的活动地块的边界断裂上。  相似文献   

11.
Introduction The northeast margin of Qinghai-Xizang block has become the place with close attentions from geo-specialists at home and abroad for its significant tectonic movement and intensive seismicity. Quite a number of achievements have been obtained from the studies on geological structures and strong earthquake activities (DING, LU, 1989, 1991; GUO, et al, 1992, 2000; GUO, XIANG, 1993; HOU, et al, 1999; Tapponnier, et al, 1990; Gaudemer, et al, 1995). In the Development Program…  相似文献   

12.
In this study, we systematically analyzed the relationship between regional gravity changes, 3D crustal deformation, regional tectonic environment and strong earthquakes based on the relative gravity measurements(2011-2014), GPS data and the background vertical deformation from the leveling measurements conducted from 1970 to 2011. Subsequently, we further characterized the temporal-spatial patterns and discussed the mechanism of regional gravity changes and the crustal deformation. The results can be summarized as follows:1)The regional gravity changes, the GPS-derived horizontal deformation and the vertical deformational obtained from leveling data showed a close spatial relationship:The gravity increased along with the direction of horizontal movement, and the gravity decreased with the crustal uplift and vice versa, which reflects the inherited characteristics of neotectonic activities. 2)The crustal deformation was closely related to the active faults. The contour lines of gravity changes and vertical deformation were generally along with the Qilian-Haiyuan Fault(the strike is NWW), and the crustal horizontal deformation showed left-lateral strike slip motion near the Qilian-Haiyuan Fault. 3)The strong earthquakes usually occur in the active faults where intensive gravity change and vertical and/or horizontal deformation occurred. The extrusion deformation, surface compression rate and gravity changes were obvious near the epicenter of 2016 Menyuan earthquake. The 2013 Minxian-Zhangxian MS6.6 earthquake occurred in the direction-turning area of intense gravity gradient zone and the transitional area of surface compression and vertical deformation. The first author of this paper has made a medium-term forecast before the Minxian and Menyuan earthquakes, especially the location of the earthquake. Based on the above understandings, we emphasized that:there are still possibilities of strong or huge earthquakes within medium-long term in the areas of crustal deformation anomalies in the study region.  相似文献   

13.
Introduction Both Sichuan and Yunnan are provinces with more earthquakes. Based on catalogue of strong earthquakes in China compiled by the Prediction Department of China Earthquake Administration, there are 639 M5.0 earthquakes during 26 B.C.~A.D. 2001. Among them, 475 are M=5.0~5.9 events, 124 are M=6.0~6.9 events, 39 are M=7.0~7.9 events, and one is M=8 event occurred in Sichuan and Yunnan area. Here is one of the areas where seismic activities are most active in China. Sichuan-Yun…  相似文献   

14.
Introduction ZHANG and ZHONG (1977), ZHANG, et al (1978) and ZHANG (1984) pointed out that Chinese mainland is divided into two parts by the NS-trending tectonic belt, i.e., the eastern area and the western area, and each area is divided into tectonic blocks by faults. In the eastern area, the faults are trending NNE and NNW, mainly NNE, and the long axis strike of blocks is nearly trending NS. In the western area, faults are trending NEE and NWW, mainly NWW, long axis strike …  相似文献   

15.
地块活动与成组地震关系的初步探讨   总被引:11,自引:1,他引:10       下载免费PDF全文
中国大陆构造的成块性与中国地震活动的成组性构成中国地震构造和地震活动的一个突出现象.本文在前人对中国大陆地震成组划分的结果和地块划分方案的基础上,研究了中国大陆地块与成组地震活动之间的关系,发现大部分强震分布于地块边界断层上,成组地震的孕育和发生与块体活动有关.由成组地震震中分布图表现出来的地块活动方式主要有4种:单缝式活动型、单地块活动型、多地块活动型和地块内部活动型.地块活动频度以单缝式活动型为最高,在成组地震中则以单地块活动型为多.大陆内部各地块的活动性有差别,东部比较活跃的地块有太行山和华北平原地块,西部比较活跃的地块有川滇和昆仑-松潘地块.   相似文献   

16.
Introduction According to the negative dislocation model (Matsu′ura et al, 1986), the relative motion be-tween active blocks under contemporary crustal movement is likely to be partially blocked on the boundaries. Suppose the lower ductile zone of boundary could slip freely, while due to the fric-tional resistance, etc., the upper brittle zone would restrict such kind of relative motion, so as to give rise to stress and strain accumulation. Namely, the surface displacement in the block bound-…  相似文献   

17.
利用甘肃岷县漳县6.6级地震区所在的青藏块体东北缘地区的区域水准、GPS、流动重力和跨断层短测线等地形变监测资料,结合地质构造、动力环境和已往的研究结果,分析了不同类型资料反映的震前区域性地壳变形背景、断层形变异常特征和可能的机理.结果认为:(1)岷县漳县6.6级地震前西秦岭、六盘山等构造区不同程度地存在着GPS水平挤压闭锁高应变积累、垂直隆升异常高梯度带和重力升、降差异剧烈变化等中长期背景;(2)震前到震时发震断裂附近及其外围相关构造区域断层形变异常在空间和时间上的起伏波动变化显著,尤其是汶川地震以来的波动变化在一定程度上反映了与本区构造比邻的龙门山断裂带剧烈右旋错动对本区的影响,与本次岷县6.6级地震过程有关;(3)本区有地形变监测资料积累以来缺乏6级以上震例,虽然存在不同程度的中长期形变背景异常,但何时进入短期-短临阶段确实很难把握,需要不断积累总结和探索提高.  相似文献   

18.
强震造成的活动地块地壳形变差异探讨   总被引:1,自引:0,他引:1       下载免费PDF全文
20 0 1年 11月 14日发生在昆仑山口西的 8 1级地震 ,在地表产生了长度大于 35 0km的破裂带 ,最大水平位移 6m左右 ,为左旋走滑断层。在昆仑山口西 8 1级地震周围不同活动地块内不同构造部位布设的GPS基准站对地震的响应存在明显的差异。其中位于柴达木活动地块内部的德令哈基准站在地震的当天观测到 7 5mm的同震位移 ,位于川滇活动地块西南边界带的下关基准站在震后 3d发生了 6 8mm以上的明显位移 ,而位于同一地块内部的昆明基准站和位于祁连山活动地块内的西宁基准站、位于拉萨活动地块内的拉萨基准站震时和震后都没有产生明显的位移。GPS基准站的观测资料表明 ,强震所处的活动地块和其相邻活动地块对强震有明显的响应 ,如果相隔一活动地块 ,则受强震的影响较小 ;在活动地块内 ,活动强烈的边界带或其它活动较强的部位对强震引起的地壳形变的响应明显大于活动强度较弱的部位 ;强震对相邻活动地块影响的差异 ,主要与强震所处活动地块运动时对其产生的作用方式的差异有关  相似文献   

19.
Northwest Guangxi is located in the Youjiang fold belt and the Hunan-Guangxi fold belt of secondary structure unit of South China fold system. The South China fold was miogeosyncline in the early Paleozoic, the Caledonian fold returned and transformed into the standard platform, and the Indosinian movement ended the Marine sedimentary history, which laid the basic structural framework of this area. Since the neotectonic period, large areas have been uplifted intermittently in the region and Quaternary denudation and planation planes and some faulted basins have been developed. Affected by the strong uplift of Yunnan-Guizhou plateau, the topography of the region subsides from northwest to southeast, with strong terrain cutting and deep valley incision. Paleozoic carbonate rocks and Mesozoic clastic rocks are mainly exposed on the earth's surface, and its geomorphology is dominated by corrosion and erosion landforms. The dating results show that most of the structures in northwest Guangxi are middle Pleistocene active faults, and the movement mode is mainly stick-slip. According to the seismogeological research results of the eastern part of the Chinese mainland, the active faults of the middle Pleistocene have the structural conditions for generating earthquakes of about magnitude 6. In the northwest Guangxi, the crustal dynamic environment and geological structure are closely related to Sichuan and Yunnan regions. Under the situation that magnitude 6 earthquakes occurred successively in Sichuan and Yunnan region and magnitude 7 earthquakes are poised to happen, the risk of moderately strong earthquakes in the northwest Guangxi region cannot be ignored. Based on the analysis of deep structure and geophysical field characteristics, it is concluded that the Tian'e-Nandan-Huanjiang area in the northwestern Guangxi is not only the area with strong variation of the Moho surface isobath, but also the ML3.0 seismic gap since September 2015, and the abnormal low b value area along the main fault. Regions with these deep structural features often have the conditions for moderately strong earthquakes. The paper systematically analyzes the spatial and temporal distribution features and mechanism of regional gravitational field and horizontal crust movement and further studies and discusses the changes of regional gravitational field, crustal horizontal deformation and interaction between geologic structure and seismic activity based on 2014-2018 mobile gravity measurements and 2015-2017 GPS observation data in the northwestern Guangxi. The results show that:1)On July 15, 2017, a MS4.0 earthquake in Nandan happened near the center of four quadrants of changes of gravity difference, and the center of abnormal area is located at the intersection of the Mulun-Donglang-Luolou Fault, the Hechi-Nandan Fault and the Hechi-Yizhou Fault. The dynamic graph of differential scale gravitational field reflects the gravity changes at the epicenter before and after the Nandan earthquake, which is a process of system evolution of "local gravity anomaly to abnormal four-quadrant distribution features → to earthquake occurring at the turning point of gravity gradient zone and the zero line to backward recovery variation after earthquake". Meanwhile, according to the interpretation of focal mechanism of the Nandan earthquake, seismogram and analysis of seismic survey results, the paper thinks that the four-quadrant distribution of positive and negative gravity, which is consistent with the effect of strike-slip type seismogenic fault before Nandan earthquake, demonstrates the existence of dextral strike-slip faulting; 2)The pattern of spatial distribution of gravitational field change in northwestern Guangxi is closely related to active fault. The isoline of cumulative gravity generally distributes along Nandan-Hechi Fault and Hechi-Yizhou Fault. The gravity on both sides of the fault zone is different greatly, and gradient zone has influences on a broad area; the spatial distribution of deformation field is generally featured by horizontal nonuniformity. Tian'e-Nandan-Huanjiang area is located at the high gradient zone of gravity changes and the horizontal deformation surface compressional transition zone, as well as near the intersection of Hechi-Yizhou Fault, Hechi-Nandan Fault and Du'an-Mashan Fault; 3)The geometric shape of gravitational field in northwestern Guangxi corresponds to the spatial distribution of horizontal crustal movement, which proves the exchange and dynamic action of material and energy in the region that cause the change and structural deformation of fault materials and the corresponding gravity change on earth's surface. The recent analysis of abnormal crustal deformation in northwestern Guangxi shows that Tian'e-Nandan-Huanjiang is a gradient zone of abnormal gravity change and also a horizontal deformation surface compressional transition zone. It locates at the section of significant change of Moho isobaths, the seismicity gap formed by ML3.0 earthquakes and the abnormal low b-value zone. According to comprehensive analysis, the region has the risk of moderately strong earthquake.  相似文献   

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