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1.
2012年5月3日金塔—阿拉善盟5.4级地震震源机制解   总被引:1,自引:1,他引:0       下载免费PDF全文
利用甘肃省数字地震台网的波形资料,采用CAP方法反演得到2012年5月3日金塔-阿拉善盟5.4级地震的震源机制解。震源性质为走滑型,断层破裂面为78°,主压应力P轴方向为N32°E,震源深度为9km。  相似文献   

2.
田建慧  罗艳 《地震》2019,39(2):110-121
本文收集了1976—2018年发生在中国大陆及其周边地区(15°~55°N, 65°~125°E)的4303个地震震源机制解, 分析了该区震源机制解和P、 T轴空间分布特征, 并使用这些震源机制解, 反演得到了中国大陆及周边地区二维构造应力场分布。 应力场反演结果表明, 云南大部、 青藏高原大部以及华北华南大部以走滑型应力性质为主, 印度洋板块与欧亚板块的强烈碰撞控制着中国西部地区, 大量的逆断型地震集中分布在青藏高原周缘和西域活动地块的天山地区。 青藏高原内部也存在正断型地震, 且应力场方向在26°N发生了很大的变化。 位于青藏高原东构造线以南的滇缅活动块体, 最大主压应力σ1方向在大致100°E发生突变, 由以西的NNE方向偏转到NNW方向。 中国东部的东北块体到华北块体再到华南块体, 最大主压应力方向有一个从NE向逐渐转变成EW向再变化到NW向的旋转趋势。 应力场总体结果表明, 中国东部应力场主要受到太平洋板块和菲律宾板块对欧亚大陆俯冲的作用, 中国西部主要受印度板块向北碰撞欧亚大陆的影响, 块体内部相互作用、 块体与断裂带相互作用也对应力场变化产生影响。  相似文献   

3.
乌鲁木齐地区活动断层滑动与现代构造应力场   总被引:7,自引:0,他引:7  
通过对乌鲁木齐地区大量活动断层擦痕的测量,利用由断层滑动资料反演构造应力张量的计算方法,获得研究区5个测点的构造应力张量数据,并通过与由震源机制解资料求得的该地区平均应力场结果的对比,获得了研究区现代构造应力场特征:区域现代构造应力场以水平挤压为主,最大主压应力方向(σ1)为近南北向,应力结构以逆断型为主。  相似文献   

4.
利用哥伦比亚大学 GCMT 目录给出的祁连山中东段地区中强地震震源机制资料,研究较大区域(34°-41°N,100°-106°E)的应力场;利用该地区布设的中法微震数字监测台网多年监测资料和甘肃数字监测台网资料,使用 P 波和 S 波初动及振幅比联合反演方法,反演中小地震震源机制解和发震应力场。结果表明,地区构造应力大致为北东40°-45°水平向压应力;景泰地区主压应力方向约北东45°,绝大多数地震为走滑型。天祝-古浪地区有相当部分的逆断层地震分布,主压应力方向约60°,P 轴仰角在10°左右优势分布,大致为水平应力场。这与大区域构造应力场和断层实际分布基本一致。  相似文献   

5.
利用哥伦比亚大学GCMT目录给出的祁连山中东段地区中强地震震源机制资料,研究较大区域(34°-41°N,100°-106°E)的应力场;利用该地区布设的中法微震数字监测台网多年监测资料和甘肃数字监测台网资料,使用P波和S波初动及振幅比联合反演方法,反演中小地震震源机制解和发震应力场。结果表明,地区构造应力大致为北东40°-45°水平向压应力;景泰地区主压应力方向约北东45°,绝大多数地震为走滑型。天祝-古浪地区有相当部分的逆断层地震分布,主压应力方向约60°,P轴仰角在10°左右优势分布,大致为水平应力场。这与大区域构造应力场和断层实际分布基本一致。  相似文献   

6.
以天山地震带520次地震震源机制解数据为基础,应用MSATSI软件包中阻尼最小二乘反演该地区构造应力场的空间分布状态。结果表明,天山地震带主要受到近NS向挤压应力作用,其最大主压应力轴方向从东到西呈NNE―N―NNW向的渐变过程,北天山地震带主应力方向大范围为NS向,乌鲁木齐周边及以东地区为NNE向;南天山地震带西段最大主应力方向为NNW向,东段为NNE向,但西段中的喀什―乌恰地区周围主压应力方向为NNE向。此外研究区普遍的较大R值表明区域含有一定张性成分,并产生张力作用,但相对NS向挤压来说较小,结果较好地反映了天山地震带构造应力场的空间分布特征。  相似文献   

7.
文中收集了新疆测震台网2009—2018年记录的492个MS2.5以上的地震事件,以MS=3.5为界,分别用CAP方法和FOCEMEC程序计算其震源机制解,并收集了GCMT记录的该区域历史地震事件的震源机制解结果。按照全球应力图分类标准对计算得到的震源机制解数据进行分类,发现区域内中强地震主要以逆冲型为主,兼有一定的走滑分量。采用阻尼区域应力场反演方法获取新疆天山中段的构造应力场空间分布特征,结果表明研究区内最大主压应力轴由西向东呈扇形旋转,自西段的NW向逐渐转为NE向,仰角近水平,最大主张应力轴近EW向,仰角近直立。受喀什河断裂、那拉提断裂、博阿断裂、准噶尔南缘断裂和北轮台断裂等大型断裂带的影响,局部区域应力场呈现出复杂的多样性。在帕米尔和塔里木块体持续向N挤压的影响下,天山整体被挤压缩短,但由南向北、由西向东缩短速率逐渐降低,应力形因子自西向东逐渐增大,且中间主压应力轴由偏压缩成分转为偏拉张成分。研究区南侧最大主压应力轴方向为N15°E,而北侧则为近SN向,这与塔里木块体的顺时针旋转有直接关联。区内近期发生的2次MS6.6地震均造成区域应力场的逆时针旋转,震后应力场与主震震源机制解趋于一致。  相似文献   

8.
滇西南地区现代构造应力场分析   总被引:36,自引:5,他引:36       下载免费PDF全文
利用断层滑动资料反演构造应力张量的方法,获得滇西南地区20个构造应力张量数据,并通过与由震源机制解资料求解该地区平均应力场结果的对比,获得了研究区现代构造应力场特征:镇源——营盘山断裂以西至龙陵断裂带以南地区,最大主压应力方向为北北东,应力结构以走滑型为主;龙陵断裂带及其以北的局部地区,最大主压应力方向为近南北或北北西,应力结构为走滑型.   相似文献   

9.
利用Snoke方法求解和收集得到的77次中小地震的震源机制解资料, 采用Gephart应力张量反演方法, 获得了郯庐断裂带鲁苏皖段构造应力场, 最大主压应力方位角为80°, 最小主压应力方位角为172°, 最大、 中等和最小主压应力倾角分别为15°、 65°和19°, 反映了研究区处于近EW向水平作用和近NS向的水平拉张作用环境下。 根据地震活动、 地质构造及震源机制解差异, 我们将郯庐断裂带鲁苏皖段分5个区段开展研究, 结果显示: 5个分区应力场存在局部差异, 最大主压应力方位角处于63°~88°之间, 从北往南总体方向成顺时针偏转的趋势。 跨郯庐断裂带两侧的应力场研究结果显示, 从西到东最大主压应力方向有一个逆时针偏转的趋势, 西侧最大主压应力方向更接近EW向, 东侧更接近NE向, 郯庐断裂带内处于两侧的过渡地段。  相似文献   

10.
北天山中东段中小地震震源机制解及应力场反演   总被引:3,自引:0,他引:3  
主要对北天山中东段中小地震震源机制解系统聚类和应力场反演。 结果表明, 研究区内中小地震震源断错性质主要以逆断层为主, 地震主破裂面基本沿NWW向或近EW向, 与该区域的NWW向构造带基本一致; 研究区内主压应力P轴近NS向, 倾角较小, 主张应力T轴倾角较大, 表明区域应力场主要受NS向水平挤压作用; 分区应力场反演结果显示, 研究区中、 西部最大主应力方向为近NS向, 与北天山西段构造应力场方向相一致。  相似文献   

11.
Using the focal mechanism solutions of 24 moderately strong earthquakes in the northern Tianshan area, we carried out system cluster and stress field inversion analysis. The result indicates that, the focal mechanism solutions of moderately strong earthquakes are mainly dipslip reverse faulting in the northern Tianshan area. The principal rupture planes of earthquakes are NW-oriented. It is basically consistent with the strike of earthquake structure in its adjacent area. The direction of the principal compression stress P axis is nearly NS, and its inclination angle is small; while the inclination angle of the principal extensional stress T axis is large. It shows that the regional stress field is mainly controlled by the near-NS horizontal compressive stress. The direction of the maximum principal stress shows a gradation process of NNE-NS-NW from east to west.  相似文献   

12.
The middle part of the Tianshan Mountains in Xinjiang is located in the north-central part of the Tianshan orogenic belt, between the rigid Tarim Basin and Junggar Basin. It is one of the regions with frequent deformation and strong earthquake activities. In this paper, 492 MS>2.5 earthquake events recorded by Xinjiang seismograph network from 2009 to 2018 were collected. The MS3.5 earthquake was taken as the boundary, the focal mechanism solutions of the earthquake events in this region were calculated by CAP method and FOCEMEC method respectively. At the same time the focal mechanism solutions of GCMT recorded historical earthquake events in this region were also collected. According to the global stress map classification standard, the moderate-strong earthquakes in the region are mainly dominated by thrust with a certain slip component, which are distributed near the combined belts of the Tarim Basin, Junggar Basin, Turpan Basin and Yili Basin with Tianshan Mountains. The thrust component decreases from south to north, while the strike-slip component increases. The spatial distribution characteristics of the tectonic stress field in the middle section of the Tianshan Mountains in Xinjiang are obtained by using the damped regional-scale stress field inversion method. The maximum principal compressive stress in axis the study area rotated in a fan shape from west to east, the NW direction in the western section gradually shifted to NE direction, its elevation angle is nearly horizontal, in the state of near horizontal compression. The minimum principal compressive stress axis is nearly EW, and the elevation angle is nearly vertical. Influenced by large fault zones such as Kashi River, Bolhinur, Nalati, Fukang, the southern margin of the Junggar and the north Beiluntai, the local regional stress field presents complex diversity. Under the influence of the northward extrusion of Pamir and Tarim blocks, the whole Tianshan is shortened by compression, but its shortening rate decreases from south to north and from west to east, the stress shape factor increases gradually from west to east, the intermediate principal compressive stress axis exhibits a change in compression to extension. There are some differences in the characteristics of tectonic stress field between the north and south of Tianshan Mountains. The regional maximum principal compressive stress axis is 15° north by east on the south side, while it is nearly NS on the north side. The deformation of the Tianshan Mountains and the two basins on both sides is obviously larger than that in the inside of the mountain. Changes in the crustal shortening rate caused by the rotation of the rigid Tarim block and Junggar block to the relatively soft Tianshan block, as well as the uplifts of Borokonu and Bogda Mountains, the comprehensive influence of the material westward expansion constitute the stress field distribution characteristics of the north and south sides of the middle section of Tianshan Mountains. The recent two MS6.6 earthquakes in the region caused the regional stress field to rotate counterclockwise. The post-earthquake stress field and the main source focal mechanism solution tend to be consistent. The seismic activity in the study area is week in the south and strong in the north. The focal depth is about 20km. Most strike-slip earthquakes occur near the junction belt of the Tianshan and Junggar Basin.  相似文献   

13.
研究了宁夏南部地区(35°20'~37°40'N,104°30'~106°30'E)小震综合机制解的变化特征.发现在中强地震前,该地区小震综合机制解的P轴方位偏离平均值,向E或SE偏转,其仰角有增大的趋势,同时小震纵波(Pn和Pg)初动符号一致.6次中强地震的震源机制解表明,该地区P轴方位与主压应力方向基本一致,因此该地区发生破坏性地震的可能性不大.近几年来的地震活动图像显示,该地区的地震活动有向中卫、中宁和同心地区集中的迹象.  相似文献   

14.
The seismicity of Longmenshan fault zone and its vicinities before the 12 May 2008 Wenchuan MS8.0 earthquake is studied. Based on the digital seismic waveform data observed from regional seismic networks and mobile stations, the focal mechanism solutions are determined. Our analysis results show that the seismicities of Longmenshan fault zone before the 12 May 2008 Wenchuan earthquake were in stable state. No obvious phenomena of seismic activity intensifying appeared. According to focal mechanism solutions of some small earthquakes before the 12 May 2008 Wenchuan earthquake, the direction of principal compressive stress P-axis is WNW-ESE. The two hypocenter fault planes are NE-striking and NW-striking. The plane of NE direction is among N50°?70°E, the dip angles of fault planes are 60°?70° and it is very steep. The faultings of most earthquakes are dominantly characterized by dip-slip reverse and small part of faultings present strike-slip. The azimuths of principal compressive stress, the strikes of source fault planes and the dislocation types calculated from some small earthquakes before the 12 May 2008 Wenchuan earthquake are in accordance with that of the main shock. The average stress field of micro-rupture along the Longmenshan fault zone before the great earthquake is also consistent with that calculated from main shock. Zipingpu dam is located in the east side 20 km from the initial rupture area of the 12 May 2008 Wenchuan earthquake. The activity increment of small earthquakes in the Zipingpu dam is in the period of water discharging. The source parameter results of the small earthquakes which occurred near the initial rupture area of the 12 May 2008 Wenchuan earthquake indicate that the focal depths are 5 to 14 km and the source parameters are identical with that of earthquake.  相似文献   

15.
欧亚地震带现代构造应力场及其分区特征   总被引:1,自引:0,他引:1  
利用美国哈佛大学矩心矩张量目录中的2818个地震的震源机制解资料,分析了欧亚地震带及其5个分区现代构造应力场的基本特征,给出了5个分区的震源机制主压应力方向分布图。结果表明:①欧亚地震带以逆断型和走滑型断层活动为主;②地中海地震区以走滑断层活动为主,主压应力方向为SSW向;③伊朗—阿富汗—巴基斯坦地震区以逆断型断层活动为主,主压应力优势方向为NNE—NS向;④喜马拉雅地震以逆断型为主,主压应力优势方向为NS和NE向;⑤川—滇—缅地震区以走滑断层活动为主,主应力场方向为NNE向;⑥印度尼西亚地震区以逆断型断层活动为主,主压应力优势方向为NE—SSW向。各分区的主压应力方向明显受其所在区域板块运动的影响,由此推测板块运动可能是产生欧亚地震带构造应力的主要力源。  相似文献   

16.
Using the seismic waveform data recorded by regional seismic network of Yunnan and Sichuan and the method of CAP, we calculate and obtain the focal mechanism of 268 earthquakes with the magnitude of ML≥4.0 occurring in Yunnan during Jan. 1999 to Aug. 2014; then, we analyze the types and the regional feature of the focal mechanism of earthquakes in Yunnan, on the basis of the focal mechanism of 109 earthquakes analyzed by Harvard University. Based on the data of the above focal mechanism solutions, we adopt the method of damped regional-scale stress inversion to calculate the best-fitting tectonic stress tensor of every grid in Yunnan; and adopt the method of maximum principal stress to calculate the direction of maximum horizontal principal stress in Yunnan. The result shows that: (1)the strike-slip type is the most principal type of the earthquake focus in the study area and the second is the normal faulting type; while, the reverse-fault type is relatively small. The spatial distribution of focal mechanism is obvious. This reflects that the dynamic source and acting force are different in different parts of the study area. (2)The direction of the stress field in Yunnan shows a certain spatial continuity. Maximum horizontal principal compressive stress is mainly clockwise from north to south and counterclockwise from the west to the east. The direction of stress field shows inhomogeneity in space. There exist two stress conversion zones respectively in EW and NS direction. The inversion result of stress field shows that the stress field in Yunnan is complex and the principal stress direction changes greatly; and there are obvious differences in different regions.  相似文献   

17.
中国大陆地壳应力场与构造运动区域特征研究   总被引:41,自引:16,他引:25       下载免费PDF全文
系统研究了1918~2006年间中国大陆及其周缘发生的3115个M4.6以上中、强地震的震源机制解,得到中国大陆地壳区域应力场的压应力轴和张应力轴空间分布的统计结果.探讨了大陆应力场的结构,以及周围板块运动对中国大陆应力场影响作用范围及其界线.结果表明,中国东部的华北地区受到太平洋板块向欧亚板块俯冲挤压的同时,又受到从贝加尔湖经过大华北直至琉球海沟的广阔范围内存在的方位为170°引张应力场的控制.华北地区大地震的震源机制解反映出,该区地震发生为NEE向挤压应力和NNW向张应力的共同作用结果.印度洋板块向欧亚板块的碰撞挤压运动所产生的强烈的挤压应力,控制了喜马拉雅、青藏高原、乃至延伸到天山及其以北的广大地区.在青藏高原周缘地区和中国西部的大范围内,压应力P轴水平分量位于20°~40°,形成了近北东方向的挤压应力场,大量逆断层型强震集中发生在青藏高原的南、北和西部周缘地区以及天山等地区. 本文结果表明,正断层型地震集中发生在青藏高原中部高海拔的地区.证明了青藏高原周缘区域发生南北向强烈挤压短缩的同时,中部高海拔地区存在着明显的近东西向的扩张运动.根据本文最新结果,得到了华北、华南块体之间地壳区域应力场的控制边界线,发现该分界线与大地构造、岩石圈板块构造图等有较大差异,特别是在大别及其以东地区, 该分界线向东南偏转,在沿海的温州附近转向东,最终穿过东海直至琉球海沟.台湾纵谷断层是菲律宾海板块与欧亚板块之间碰撞挤压边界,来自北西西向运动的菲律宾海板块构造应力控制了从台湾纵谷、华南块体,直到中国南北地震带南段东部地域的应力场. 地震震源机制结果还表明,南北地震带南段西侧其P轴大约为NNE方向,与青藏高原的P轴方位一致.南北地震带南段东侧其P轴大约为NWW方向,与华南块体的P轴方位一致.因此,将中〖JP2〗国大陆分成东、西两部分的南北地震带南段是印度洋板块与菲律宾海板块在中国大陆内部影响控制范围的分界线.  相似文献   

18.
汶川8.0级地震序列的小震震源机制及应力场特征   总被引:4,自引:1,他引:3  
利用区域地震台网的数字地震波记录资料,由垂直向记录P和S振幅比值,结合部分清晰的P波初动记录资料,反演得到了2008年5月12日至2009年4月12日汶川8.0级地震序列中829个ML≥3.5的小震震源机制解。采用统计和力轴张量计算方法,分析了震源机制解参数并求取了余震区平均应力场。结果表明:用余震区北段小震震源机制解求得的节面为直立或倾斜,走向为NNE-SSW向,主压应力P轴方位为SWW-NEE方向,计算得到的平均应力张量σ1方向为77.1°;用余震区南段小震震源机制解求得的节面倾角较陡,在50°~90°之间,走向相对较分散,平均应力张量σ1方向为92.4°,呈EW向。从余震区南、北段的平均应力场方位随时间演化过程可以看出,余震区在2008年8月、9月、12月和2009年1月处于应力场调整阶段。最后研究了余震区南、北段的震源机制一致性参数θ及逆冲型地震类型随时间的变化,得到了一些有意义的结果。  相似文献   

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