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1.
中国大陆现今实测地应力场的状态与板块构造环境、活动断裂带分布、地形地貌以及地壳结构呈现一定相关性. 在中国大陆西缘,印度洋板块与欧亚板块陆发生陆碰撞,在中国大陆东缘,菲律宾海板块、太平洋板块俯冲到欧亚板块之下. 中国大陆内部被大型活动断裂带分割为多个块体,各个块体的地壳结构和厚度呈不均匀分布,地形地貌起伏具有很大的差异. 笔者以中国大陆块体模型为基础,把板块构造作用和重力势作为主要影响地应力状态的两个主要要素,在现今活动构造、GPS和实测地应力等成果的约束下,利用线性黏弹体球壳有限元模拟分析了中国大陆现今地应力场的分布特征和控制因素. 结果表明: (1)构造应力场总体上呈现出西部挤压,东部拉张的特征,印度板块与欧亚板块的持续碰撞形成了青藏高原及其周缘的挤压性质的构造应力场,而东部菲律宾板块与太平洋板块的俯冲形成了黄海、东海和环渤海区域的拉张性质的构造应力场,中间为拉张环境和挤压环境的过渡,最大主应力的方向受到板块构造环境和活动构造分布的控制;(2)重力的影响主要体现在地形梯度大和地壳厚度结构变化大的地壳浅部区域,在藏南、滇西北局部地区的地壳浅部由于受到重力势控制,呈现为张性应力场,在塔里木地区由于重力势引起的应力场与构造应力场同为挤压性质,因此该区的挤压强度得以增加;(3)中国大陆浅部地应力场的状态主要受到区域板块构造环境、块体边界活动构造带的展布和地形的控制,总体上以南北构造带为界,西部以较强的压性构造环境为主,东部为较弱的压性构造环境,藏南和滇西北局部地区存在有张性构造环境;构造应力对地应力的贡献比重随着深度增加而增加;(4)采用黏弹性模型的构造应力场模拟结果比完全弹性模型的模拟结果能够更好地与实测地应力场相吻合,利用完全弹性模型分析由地震等诱发的地应力瞬时变化是有效的;(5)青藏高原东南缘最大主应力方向发生了较大的偏转,其主要控制因素有:印度板块持续的碰撞、中下地壳对上地壳拖曳以及印度板块通过实皆断裂对欧亚板块的剪切拉伸作用. 中国大陆现今地应力场是整个地壳岩石黏弹特性长期演化和断裂活动的结果,是地应力场动态演化过程中在现今时间点上的状态,受到板块构造环境、大陆内部活动断裂分布、地形地貌和地壳结构等因素不同程度的控制,模拟结果为中国大陆地应力场提供了一个定量的参考模型.  相似文献   

2.
南北地震带中段地震活动的板块动力学研究   总被引:2,自引:0,他引:2  
在大陆造山带研究的最新成果基础上论述了南北地震带中段地壳的定变过程,结合造山带内部的高温韧性滑脱构造及地球物理深部探测成果和新生代以来的板块运动探讨了南北地震 段地震的地壳动力学过程及成因机制。  相似文献   

3.
I suggest that earthquake precursors can be divided into two major categories, physical and tectonic. I define physical precursor to be a direct or indirect indication of initiation or progression of an irreversible rupture-generating physical process within the preparation zone of a forthcoming earthquake. Tectonic precursor is defined as a manifestation of tectonic movement which takes place outside the preparation zone of an impending earthquake as a link in a chain of particular local tectonism in each individual area preceding the earthquake.Most intermediate-term, short-term and immediate precursors of various disciplines within the source regions of main shocks are considered physical ones. Some precursory crustal deformations around the source regions are, however, possibly tectonic precursors, because they may be caused by episodic plate motions or resultant block movements in the neighboring regions of the fault segments that will break. A possible example of this phenomena is the anomalous crustal uplift in the Izu Peninsula, Japan, before the 1978 Izu-Oshima earthquake ofM s 6.8. Some precursory changes in seismicity patterns in wide areas surrounding source regions also seem to be tectonic precursors, because they were probably caused by the particular tectonic setting of each region. A typical example is a so-called doughnut pattern before the 1923 Kanto, Japan, earthquake ofM s 8.2.Although most studies on earthquake precursors so far seem to regard implicitly all precursory phenomena observed as physical ones, the two categories should be distinguished carefully when statistical analysis or physical modeling is carried out based on reported precursory phenomena. In active plate boundary zones, where a practical strategy for earthquake prediction may well be different from that in intraplate regions, tectonic precursors can be powerful additional tools for intermediate-term earthquake prediction.  相似文献   

4.
华北GPS地形变监测网的建立   总被引:4,自引:4,他引:4  
李延兴  沈建华 《中国地震》1993,9(3):256-263
全球定位系统GPS是利用监测地壳运动进行地震预测的新手段。华北是一个重要的地震监视区。应用GPS技术在华北布设了一个四维地形变监测网。由于采取了一系列先进的方法和措施,首次观测获得了高精度的成果,为今后大震预测和地球动力学的研究奠定了基础。  相似文献   

5.
本文对泉州市区域地壳结构、地质构造、构造应力场和地震活动性进行了综合分析。结果表明,泉州市在第四纪中更新世之前位于环太平洋中、新生代构造一岩浆活动带中,地壳运动频繁而又强烈,地质构造复杂;现代处于菲律宾海板块对欧亚板块挤压形成的“台湾动力触角”影响区,但区内的断裂不具全新世活动性,新构造运动不强烈,有史以来未见≥5.0级地震记载,属于地壳相对稳定区,未来遭遇6.0级地震的危险性不大,其地震破坏性影响主要来自周边孕震区,特别是东部海域,与“台湾动力触角”的作用和滨海断裂带的活动有关。  相似文献   

6.
详细讨论了地球自转变化的天文地球动力学效应。地球表面的任何方向的水平运动,在惯性空间中看来都是转动,由此产生的离心力矩是地壳极移运动的原因,极移使地球发生相应的形变,也是大规模地壳运动和地震活动的原因之一。此外,地球自转产生的Coriolis力是重力分异中的地球各圈层产生差异旋转运动的原因,地球的差异旋转是地球自转速率近十年变化、黄赤交角的非摄动长期变化以及近周日自由摆的原因。  相似文献   

7.
近期完成的北北东向的繁峙~太仆寺旗宽角反射/折射剖面,由山西断隆进入内蒙地轴,它穿过了山西地震带的大同~阳高震区和北西西向张家口~渤海地震带的西北缘。其主要目的是探测研究张~渤地震带及其两侧壳幔构造与速度结构的差异及其与地震活动的相关性。结果表明:张~渤地震带壳内界面及莫霍面较其两侧有1.0~2.0km的不同程度的上隆;在阳原~张家口之间地壳结构纵向与横向非均匀性明显,上地壳和下地壳上部有局部的速度逆转,下地壳下部的低速层由山西断隆一直延伸至内蒙地轴,上地幔顶部的速度梯度明显增大;在阳原、怀安和张北附近分别存在着延伸至莫霍面的地壳深断裂带;在内蒙地轴一系列壳内界面不明显。  相似文献   

8.
Borehole strain observation is playing an increasingly important role in the study on the crustal movements. It has been used by many countries such as China, USA, Japan, Peru, Australia, South Africa, Iceland and Italy, in research fields of plate tectonics, earthquake, volcanic eruption, dam safety, oil field subsidence, mining collapse and so on. Borehole strainmeter has been improved rapidly and tends to get more and more components included in one probe. Based on observations by this kind of instruments, studies on seismic strain step, slow earthquake, earthquake precursor and volcanic eruption forecasting have made remarkable achievements. In the coming years, borehole strain observation is going to become one major goedetic means, together with GPS and InSAR. Foundation item: National Natural Science Foundation of China (40374011) and Joint Seismological Foundation of China (1040037).  相似文献   

9.
Based on the geodetic data taken from the National GPS Network established by China Climbing Program "Investigation of Crust Motion and Geodynamics in Modern Time",we derived the movement velocities of the GPS sites. In terms of the power series expansion of a rotation function for horizontal velocities on a spherical surface proposed by Haines and Holt (1993), we computed the horizontal velocity and strain-rate field. We preliminarily studied the appearances and characteristics of the present-day crustal movement and deformation in the Chinese mainland with the computed results. The researches demonstrated: ① The present-day crustal movement and deformation in the Chinese mainland are being jointly controlled by Indian, Pacific and Philippines Ocean Plates and Siberia-Mongolia block, and these three large plates and block form a situation of tripartite confrontation, but Indian Plate seems to play a leading role; ② The North-South Earthquake Zone plays an important adjustment role in the present-day crustal movement and deformation process, displaying clear characteristics of demarcation line of tectonics in large areas; ③ There seems to be another adjustment zone along the latitude line approximate N35°, but its characteristics are less obvious than that of the former; ④ Dynamic actions of these three large plates and block on the Chinese mainland are dynamic stable; appearing in stable push-press velocities. These results are generally accorded with the results determined from geology, geophysics, and seismology. By the contrast with seismicities, it appears preliminarily that there is some corresponding relation between intense shear strain zone and future strong seismicity area, but this problem needs further examination of earthquake examples.  相似文献   

10.
Introduction The Earth′s crust deforms in the regional tectonic stress field. Borehole strain observation isone important means for studies on the crustal deformation and the stress field. QIU and ZHANG(2002) have introduced the current situation of borehole strain observation in China. OutsideChina, early in September of 1968, Sacks of Carnegie Institution of Washington and Evertson ofUniversity of Texas firstly invented a borehole dilatometer in the world (Sacks, Evertson, 197…  相似文献   

11.
池顺良 《地震》1998,18(4):348-352
将地震前兆探测分为依赖地震孕育过程中漏能释放的第一类检测方法和不依赖漏能释放的第二类检测法二种,当前,除改进第一类方法外还应积极发展第二类前兆检测技术,根据地壳运动观测频域的高频端已建立测震台网,低频端正在建设GPS密集台网,极重要的中频段台站稀少的现实,提出当前应积极建设定点形变观测密集台风,填补中频段的监测弱视盲区,同时定点形变观测仪器要打好基础,进一步提高观测精度和信噪比。  相似文献   

12.
Based on the precise reieveling data of more than 260,000 km carried out from 1950 to 1991 in the Chinese mainland,recent crustal vertical movement is studied.By means of some quantitative indices,such as the pattern of crustal vertical movement,the intensity of differential movement,the maximum gradient and its distribution,etc.,the properties of movements are analyzed on a large scale.The results suggest that all the properties have a profound tectonic background of their own and are closely related to the zoning and seismic activity of active subplates.The driving force for the movement comes mainly from the northward push of the India plate acting on the Eurasia plate.The effects of motions of the Pacific and Philippine Sea plates in the east are much less significant.  相似文献   

13.
利用板块构造、活断层分布、地壳运动这三个方面的最新资料将台湾地区划分为东、西两个地震区和六个地震带。对各地震带11a来的地震目录计算了广义维数Dq和多标度分形谱f(α),然后绘制成Dq—q曲线和多标度分形谱f(α)—α以及分维时程曲线。综合分析后发现:(1)地震活动的时间结构是多分形而非单一分形结构;(2)台湾地区在大震前后的1~2a内,大震所在的地震带内地震时间结构的Dq—q曲线和多标度分形谱f(α)—α大都出现异常形态;(3)功时程曲线分析可以为强震的时间预报提供有效的客观依据。  相似文献   

14.
攀西裂谷地带构造复杂,地震频繁,并有着多期岩浆活动。为了研究这一地带的地热活动、热流分布特征及其与该区构造运动和深部过程的关系,对地表温泉分布、并结合地球物理场和地质构造特征来探讨攀西地带的地壳热状态及其该区成矿规律、地震活动与成因以及构造运动间的内在联系。结果表明,这是一个被动“活化”的古裂谷地带。  相似文献   

15.
汶川8.0级地震前区域地壳运动与变形动态过程   总被引:13,自引:6,他引:7       下载免费PDF全文
利用GPS等观测资料研究了2008年汶川8.0级地震前的区域地壳运动与构造变形、应变积累,以及大区域地壳运动微动态变化过程,结合同震位移场分布等分析、讨论了汶川地震前近10年区域地壳变形的表象所反映的大震孕震最后阶段的物理过程.结果表明,发生汶川8.0级地震的龙门山断裂带1999~2004年相对稳定的华南地块无明显的相对运动,2004~2007年有一定程度的相对运动显示,以右旋活动为主,年速率为1.6mm/a.龙门山断裂带西北侧的巴颜喀拉地块东部为右旋剪切为主兼有推挤的大尺度缓慢变形状态,右旋扭动变形率为2.1±0.2(10-8/a),地壳总体缩短变形率为-0.7±0.1(10-8/a).由GPS基准站资料计算的基线时间序列显示,2005年以来大尺度北东向地壳缩短的相对运动明显增强,青藏块体相对华南地块的北东向运动明显增强.对汶川大地震前应变积累的特殊性等问题进行了初步讨论,分析认为,汶川大地震的发生是四川盆地西缘的龙门山断裂带受到其西侧巴颜喀拉地块推挤导致大尺度、长时期、缓慢的地壳应变积累的结果.在发震前不仅龙门山断裂带为显著闭锁状态,且孕震区域可能存在地壳弹性变形趋于极限后难以发生变形的相持阶段,大尺度地壳运动与动力环境的动态变化对汶川大地震的发生有促进影响.  相似文献   

16.
本文研究了唐山地震台内的唐山断裂形变、断层活动协调比、断层土壤气CO2的变化特征。结果显示,唐山地震台内的唐山断裂近35年来整体上在水平方向呈微弱的右旋张性活动,垂直方向呈正断活动,但不同时段的运动状态有所不同;综合分析认为,唐山地震台形变和流体前兆观测对附近及华北因区域地壳应力场调整引起的中小地震有一定的显示,说明该台具有一定的前兆异常显示能力;随着观测资料和经验的持续积累,在该区域发生更大地震前,有望捕捉到更显著的前兆异常。  相似文献   

17.
GPS技术在监测地震与地壳运动中已经得到应用,北京市地震局在北京市2002年启动建设的全球卫星定位综合应用服务系统基础上,于2003年开始GPS形变监测工作系统的建设,这是一个小区域连续的高密度GPS形变监测工作系统,获取高精度的北京市GPS基准站地心三维坐标,为地震监测和地壳运动的科学研究提供良好的GPS数据素材。  相似文献   

18.
地震地表破裂特征及其对应的分析方法   总被引:3,自引:0,他引:3  
介绍了Kocaeli地震和集集地震的板块构造和区域地震的活动特性,及地震引起的地表破裂,提出了一种基于动力学和界面系统的、局部宏观尺寸的震源动力破裂过程分析方法。归纳出基于材料破坏分析基础的地震地表破裂的5种主要特征,应用材料和界面本构描述的控制方程稳定性讨论,阐明了地表破坏类型对应的力学机制,提出了相应的分析方法。  相似文献   

19.
The Sumatra (Indonesia) earthquake of December 26, 2004 (M w = 9.0?9.3), is among the strongest seismic events (occupying the second to fourth place) recorded in the epoch of instrumental seismological observations. In addition, this earthquake appears to be the first event of such a scale for which results of up-to-date high-precision geodetic measurements are available. Therefore, it is of particular interest for studies of geodynamics of mobile belts, seismogenic zones, and the Earth’s crust as a whole. The available geological, geophysical, and geodetic data for the Mediterranean-Caucasian segment of the Alpine-Himalayan mobile belt, the Greater Caucasus, and the Tajik depression suggest that the tectonic structure, geological zonality, seismicity, and present-day geodynamics of these structural elements of the Earth’s crust are controlled by the interaction of two different mechanisms of tectogenesis. First, this is the mechanism of independent self-development of the aforementioned structural elements and, first of all, the mobile belt as a whole; this mechanism acts through an intense increase in the volume and area of laminated rocks of the crust/lithosphere, apparently, due to the influx of additional mineral material supplied by an ascending flow of deep fluids. The second type of mechanisms is related to the external plate-tectonic action on the mobile belt and the other structural elements due to lateral movements of lithospheric plates. The joint analysis of geological, geodetic (GPS), and seismological data on the Sumatra earthquake area shows that these two mechanisms also act in the Indonesian part of the Alpine-Himalayan mobile belt. However, the Sumatra earthquake itself is a result of an independent (unrelated to plate tectonics) process in the mobile belt rather than the convergence of adjacent lithospheric plates.  相似文献   

20.
As the most basic geophysical field, the earth gravity field has achieved wide attention, and its spatial anomaly characteristics and dynamic variation can provide important scientific basis for studying the internal structure and dynamics of the Earth. Based on the mobile gravity observation data of the southeastern Tibetan plateau from 2013 to 2016, the dynamic variation tendency and anomaly characteristics of the regional gravity field in different temporal resolutions are obtained before and after the Ludian and Jinggu earthquakes in the study area respectively. The method of wavelet multi-scale decomposition is used to analyze the relationships of gravity field variation with the earth movement, material density change, and strong earthquake preparation. The deep material variation, dynamic process and the mechanism of earthquake inoculation in the southeastern Tibetan plateau are further discussed. Results indicate that the gravity field variation in the source region before the Ludian and Jinggu earthquake respectively is characterized by obvious positive and negative anomalous transition zone and gradient zone that are consistent with the direction of fault tectonics, suggesting the strong crustal movement and mass migration during the earthquake incubation period. The result of wavelet multi-scale decomposition of the gravity field during the period from September 2013 to April 2014 shows that the gravity field variation at different depth and space scale in the crust and upper mantle of the southeastern Tibetan plateau is significantly correlated with seismic distribution and the location of active fault zone. This indicates that the earthquake inoculation in the study area is closely related to the fault movement and the distribution of material density in the crust and upper mantle, which may be affected by the complex deep dynamic process of the material migration in the crust and mantle. The characteristic that strong earthquakes always occur near positive and negative anomaly transition zones and gradient zones of gravity field change is preliminarily explained, based on the dynamic process of material migration in the crust and upper mantle of the southeastern Tibetan plateau. The research results of this paper have some reference value to the study on the earth movement and seismogenic mechanism.  相似文献   

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