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1.
华北及邻区地壳上地幔三维速度结构的地震走时层析成像   总被引:5,自引:2,他引:3  
利用华北及邻区475个地震台站的区域地震走时资料,反演了该地区的地壳上地幔三维P波和S波速度结构。地震走时的计算用近似弯曲射线追踪方法,三维速度模型的反演用LSQR算法。用检测板方法对走时数据进行成像分辨率分析,结果表明反演模型在水平方向上以0.5°×0.5°的节点分布,垂直方向上以1km、10km、25km、42km、60km为节点作网格划分是合理的。研究区域内,秦岭—大别造山带两侧的华北块体与扬子块体有不同的速度异常特征:华北块体地壳速度结构复杂,而扬子块体则相对简单。华北块体地壳内存在较明显的低速异常,而扬子块体则正常或高速异常。自中新生代以来华北块体地壳经历挤压到伸展的强烈变形,而扬子块体相对稳定。华北块体的构造活动依然强烈,表现为频繁的地震活动。华北地块地壳速度结构的主要特征是:①主要构造带(如燕山构造带、太行山山前构造带、汾渭构造带、郯庐断裂带以及秦岭-大别构造带)位于地壳上地幔的低速或高低速过渡区内;②在唐山及附近地区25 km、42 km和60 km深处连续的低速异常,可能意味着上地幔热的物质上涌,到达上地壳的下部后停止上升过程。  相似文献   

2.
利用非连续变形数值方法研究块体运动及其应力场初探   总被引:9,自引:0,他引:9  
依据非连续变形数值分析方法(DDA法)的基本理论,提出利用地壳形变观测资料解算块体运动及其应力场的“位移载荷法”,给出了相应的计算公式,根据断裂分布格局建立华北不连续块体模型,利用经过穗主基准变换的华北GPS网观测资料计算了块体的运动方向,结果与观测资料比较吻合,块体视应力场的计算结果反映了本区的应力场状况初步研究表明,DDA是一种值得进一步深入研究的新方法。最后对存在的问题和应用前景作了阐述。  相似文献   

3.
中国活动构造基本特征   总被引:168,自引:9,他引:168  
最近20年来我国活动构造研究进入了定量研究阶段, 并取得了很大的进展. 总结这些定量研究成果, 编制了1∶400万中国活动构造图, 尽可能详尽地表示了活动断裂、活动褶皱、活动盆地、活动块体、火山和地震等不同类型的活动构造及其运动学参数, 总结了中国活动构造的基本特征. 喜马拉雅和台湾为板块现代活动边界构造带, 活动强烈, 断裂滑动速率大于15 mm/a; 大陆板内地区构造活动以块体运动为特征, 可以划分出不同级别的地壳和岩石圈块体, 其中以青藏、新疆和华北断块区现代构造活动最为强烈; 各区200多条活动构造带的运动学特征表明, 板内构造活动是一种有限制的低速率块体运动, 块体边界构造带的水平滑动速率一般小于10 mm/a, 最大为10~15 mm/a, 因而不支持高速率滑动的逃逸理论.  相似文献   

4.
华北克拉通是近年来我国地学界研究的热点之一.本文利用布设在华北东北部地区的华北地震科学台阵所记录的远震波形资料,用波形互相关方法拾取了9105条S波走时残差数据,进而用体波走时层析成像方法反演获得了研究区从地表至600 km深度的S波速度结构.所获得的S波层析成像结果表明,华北克拉通中部块体的山西断陷带低速异常一直从地面延伸至上地幔约300 km深处,推测该低速异常体可能与中、新生代的大同火山群的形成与活动有关.研究发现华北东部存在一高速异常体由东部渤中凹陷的地壳一直向西延伸至太行山山前断裂下方地幔转换带410 km附近,推测该高速异常体可能为太平洋板片向西俯冲在华北克拉通东部块体下方地幔过渡带内的滞留.研究结果显示华北克拉通东部的华北盆地表现为高低速相间分布,表明该地区下方的岩石圈发生了破坏,而位于华北克拉通北缘的燕山造山带显示为高速异常,表明燕山造山带下方的岩石圈没有明显的破坏迹象.  相似文献   

5.
利用GPS观测结果对我国地壳水平形变强度的分析   总被引:7,自引:2,他引:5  
顾国华  符养  王武星 《地震》2004,24(2):1-6
介绍利用中国地壳运动观测网络区域网(包括基本网与基准网)1999年与2001年2期GPS观测所获得的中国大陆地壳水平位移速率结果, 研究块体的划分、 块体位移与块体变形, 提出了用位移(速率)离散度分析块体或局部水平变形强度的方法, 分析了中国大陆现今地壳运动的基本特征及2001年11月14日昆仑山口西8.1级大地震前的地壳水平运动。  相似文献   

6.
青藏块体及其周边地震活动   总被引:1,自引:0,他引:1  
本文从青藏块体及其周边地区地震活动幕的划分入手,分析各期地震活动的图象特征,寻求本区地震发生的时空规律,探讨本区的地震活动与印度板块运动的内在联系,从而对今后本区地震活动的大形势进行了预测。  相似文献   

7.
中国大陆特别是华北及邻近区域内,曾多次发生7级以上强震,地震活动频繁.自 1966年以来,又连续发生了系列成串性强震.对于大面积的华北块体,对弱震能量、频度、小震群,以及b值等地震活动性,在统一应力场中成串性强震成因上的联系,巳有论述,运用板块构造学说,对我国境内地震发生的地质背景,亦有专门讨论.本文基于地震活动性,综合考虑地质构造条件,划出“蒙古发震块体”,用以解释华北北部地震发生的条件和活动方式,分析了蒙古发震块体内地震活动的特征及其地震趋势.二、蒙古发震块体的边界划分由地壳和上地幔组成的刚性岩石圈,因内力作用而断裂,形成若干块体,也有人提出地球的自转运动和重力、热力作用的原因,岩石因遭到破坏,形成许多断块.  相似文献   

8.
青藏块体东北缘近期水平运动与变形   总被引:61,自引:2,他引:61       下载免费PDF全文
利用青藏块体东北缘地区13、1年GPS观测资料,给出了本区地壳水平运动速度场及视应变场分布图,提出了由位移观测值直接求解块体旋转和变形参数的方法,初步研究了本区构造块体运动与变形特征.结果表明:①本区存在整体性向东-东南方的运动(速率约mm/a);②南部的甘肃-青海块体的运动较快,而北部的阿拉善块体的运动较慢,二者运动速率相差近6mm/a,祁连-海原断裂带左旋走滑运动显著.③自西向东存在北北东-北东东向压性运动;④阿拉善块体、甘肃-青海块体内部存在北西西向张性变形,阿拉善块体的整体张性变形更显著,鄂尔多斯块体西侧的块体交接地带为压性运动.  相似文献   

9.
川西及其邻近地区活动构造基本特征与强震复发模型   总被引:75,自引:9,他引:75       下载免费PDF全文
川西及其邻近地区位于青藏高原东缘川滇、巴颜喀拉和华南三大活动块体的交接部位,发育着多组具有发震能力的活动断裂。由于横向次级活动断裂的存在,川滇块体可进一步划分为滇中和川西北2个次级块体,巴颜喀拉块体可划分出东端的龙门山次级块体。深部探测反映出川滇和巴颜喀拉块体地壳中均存在着低速-高导层(体),它们是上地壳多震的原因之一。地质研究和现今GPS观测表明:各级块体均存在着SE向或SSE向平移运动、顺时针转动和隆升运动,但量值存在着一定差异。文中还给出了各主要活动断裂带的地质或GPS滑动速率,讨论了目前存在的主要科学问题  相似文献   

10.
张晓亮  江在森  陈兵  王琪  张希 《中国地震》2005,21(4):463-468
本文提出的将拟准检定法与DDA正分析方法相结合进行区域活动块体的划分,改善了观测资料缺乏区域的活动块体划分结果,为完整地研究区域活动块体运动变形提供了一种思路。另外,以川滇地区为实例,对该方法的具体实施作了简单的介绍。  相似文献   

11.
In this paper, the discrepancy between the movements of intraplate blocks and plates isdiscussed, and the method to divide the intraplate active blocks is presented by selecting Bursaformula as the kinematic model for the intraplate blocks. Based on the data of three GPScampaigns in North-China network in l995, 1996 and l999, respectively, the northern area inNorth China is divided into eight small blocks with the mathematical model and methodpresented in this paper. The divided blocks based on tbe horizontal and vertical crustalmovements in the paper are consistent or approximate with each other in the area as a whole.The divided blocks in the paper is also basically accordant with the neotectonic movement,which indicates that the current movement of active blocks in this area is the succession anddevelopment of neotectonic movement. Moreover, some new activity characteristics in the areahave been revealed by the tectonic units divided with the horizontal crustal movement.  相似文献   

12.
IntroductionSituated in the southeastern part of Eurasia Plate and surrounded by the India Plate, Eurasia Plate, Pacific Plate and Philippine Sea Plate, Chinese mainland especially the area of Qinghai-Xizang (Qingzang) Plateau and the south-north tectonic zone is the area with the most intensive neotectonic deformation. The main component of tectonic activity in Chinese mainland is active blocks. Therefore, it is quite important to study active blocks in the research of tectonic activit…  相似文献   

13.
研究了中国大陆地壳垂直运动的特征,提出利用中国大陆现代地壳垂直形变速率图划分活动地块的思路和原则,并把中国大陆划分为东西2个I级地块,东北、华北、华南、西藏、甘青藏和新疆6个Ⅱ级地块和16个Ⅲ级地块.本文划分的活动地块边界与新构造活动的图象在总体上是一致的,局部地区有些差别.这表明,中国大陆地壳现今活动是第四纪以来新构造活动的继续,但也出现了一些新的活动趋势.   相似文献   

14.
The Chinese mainland is regarded as the best area for studying the continental crustal movement and dynamics. In the past, based on the ground surface observation, it was very difficult to study the movement of the intraplate blocks within a range of larger space and a time scale of several years quantitatively. In this paper, a method of calculating the Euler vectors of present-time motion among blocks by using Cardan angles has been given completely based on two periods of GPS repetition measurement data of the National Ascending Plan of China (NAPC) — the study and application of current crustal movement and geodynamics in 1994 and 1996. A present-time blocks movement model on the Chinese mainland (PBMC-1), which describes the motion of seven blocks—Tibet, Chuan-Dian, Gan-Qing, Xinjiang, South China, North China and Heilongjiang block, is established preliminarily. The velocity field of the relative motion among the intraplate blocks and boundary motion in the Chinese mainland are firstly given within several years time scale. It is shown by the results calculated with the model that the velocity-rate of each block is reduced gradually from the south to north and from the west to east, and the motion direction changes gradually from NNE to E, even SEE or SE. The collision of Indian plate plays a leading role in the movement of the intraplate blocks in the Chinese mainland, while the motion manner and velocity-rate of block boundary zone (fracture zone) depend on the motion of every block again. The present-time motion of a time scale of several years computed with the model is not only largely consistent with the average motion of a time scale of several million years derived from geology, but also very coincident with the results of geophysical and astronomic observation. It is shown preliminarily that the observed results of space geodesy techniques such as GPS etc. are capable of discovering the crustal movement at present. This study is supported by the National Natural Science Foundation of China (NNSFC), National Ascending Plan of China (NAPC) and Chinese Joint Seismological Science Foundation (CJSSF).  相似文献   

15.
Horizontal crustal movement in Chinese mainland from 1999 to 2001   总被引:3,自引:0,他引:3  
Introduction In the Crustal Movement Observation Network of China (CMONOC) there are 25 fiducialstations, 56 basic stations and 1 000 regional stations. They are scattered on 10 major blocks inChinese mainland with high density of observation stations on the blocks of high seismic activityin the regional networks. 10 major blocks or regions (they will be referred to as blocks in the paper,a letter is used as a symbol for each block) were divided during the design of the regionalnetwo…  相似文献   

16.
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   

17.
In the paper, the establishment, measurement, data-processing program and monitoring accuracy of the GPS seismic monitoring network in North China, especially in the Capital-Circle area, have been presented briefly. The relation of horizontal crustal deformation to tectonic movement, stress-field variation and seismicity has been analyzed in detail. The results indicate that the accuracy of GPS measurement has reached the order of 10-9 and the annual rate of horizontal crustal deformation in North China is about 4 ~5 mm. Horizontal crustal movement is a direct indication of the regional stress field. Therefore, by monitoring the time-sequence variation of horizontal crustal motion, it would be possible to investigate the change in the stress field, to analyze the tendency of seismicity and to determine the seismogenic zones.  相似文献   

18.
华北地区GPS形变测量结果及其地震地质意义   总被引:9,自引:3,他引:6       下载免费PDF全文
简要介绍了华北地区GPS形变监测网1995~1996年两次观测概况,利用伯尔尼软件进行数据处理的主要过程、水平形变计算与应变分析的方法和结果及垂直形变的结果。分析了GPS成果的地震地质意义,认为GPS观测到的水平形变可能反映了上地壳层块构造活动的某些特征  相似文献   

19.
Chinese scientists proposed that large earthquakes that occurred in mainland China are controlled by the movement and deformation of active tectonic blocks. This scientific hypothesis explains zoned phenomenon of seismicity in space. The active tectonic blocks are intense active terranes formed in late Cenozoic and late Quaternary, and the tectonic activity of block boundaries is the intensest. Global Navigation Satellite System(GNSS)has advantages of high spatio-temporal resolution, broad coverage, and high accuracy, and is utilized to monitor contemporary crustal deformation. High accuracy and resolution of GNSS velocity field within mainland China and vicinities provided by previous studies clearly demonstrate that different active tectonic blocks behave as different patterns of movement and deformation, and block interaction boundaries have intense tectonic deformation. The paper firstly introduces the GPS networks operated by the Crustal Movement Observation Network of China(CMONOC)since 1999, and GNSS data processing methods, including GAMIT, BERNESE and GIPSY/OASIS, and discusses the advantages of using South China block as a regional reference frame for GNSS velocity field, then proposes three strategies of block division, F-test, quasi-accurate detection(QUAD), and clustering analysis. Furthermore, we introduce rigid and non-rigid block motions. Rigid block motion can be denoted by translation and rotation, while non-rigid block motion can be described by rigid motion and internal strain deformation. Internal strain deformation can be divided into uniform and linear strains. We also review the usage of F-test to distinguish whether the block acts as rigid deformation or not. In addition, combining with recent GNSS velocity results, we elaborate the characteristics of present movement of rigid block, such as the South China, Tarim, Ordos, Alashan, and Northeast China, and that of non-rigid block, such as the Tibetan plateau, Tian Shan, and North China plain. Especially, the Tibetan plateau and Tian Shan seem to deform continuously with significant internal deformation. In order to enrich and perfect the active tectonic block hypothesis, we should carefully design dense GNSS networks in inner blocks and block boundaries, optimize utilizing other space geodesy technologies such as InSAR, and strengthen combining study of geodesy, seismogeology and geophysics. Through systematic summary, this paper is very useful to employing GNSS to investigate characteristics of block movement and dynamics of large earthquakes happening in block interaction boundaries.  相似文献   

20.
The paper introduces the horizontal crustal movement obtained from GPS observations in the regional networks (including the basic network and the fiducial network) of the Crustal Movement Observation Network of China (CMONOC) carried out in 1999 and 2001. This paper is characterized by the acquisition of the horizontal displacement velocities during the period from 1999 to 2001 at the observation stations in the regional networks with datum definition of a group of stable stations with small mutual displacements in east China. Based on the most detailed map of horizontal crustal movement in Chinese mainland, the division of blocks, their displacements and deformations are studied. An approach to analysis of the intensity of the horizontal crustal deformation is proposed. The general characteristics of the recent horizontal crustal movement in Chinese mainland and that before the Kunlunshan earthquake of M=8.1 on November 14, 2001 are analyzed. Foundation item: The National Development and Programming Project for Key Basic Research (95-13-03-07).  相似文献   

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