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1.
利用渭河盆地2001—2008年高精度GPS监测资料,结合区域构造特点建立了渭河盆地有限元动力学模型,基于此研究了区域现今地壳应力场特征,深入分析了构造应力场与盆地内地裂缝群发之间的内在关系,首次基于空间大地测量定量的揭示出了区域构造应力场与盆地内地裂缝群发的内在动力学联系,及盆地东、西部地裂缝分布不均衡的根本成因.研究结果表明:渭河盆地现今地壳应力场差异性显著,主要呈现出中、东部以NW-SE向拉张为主,西部则以NW-SE向压缩应力为主,整体具有相对左旋运动趋势,与区域以往长期构造变形具有较好的继承性;分析揭示出区域NW-SE向拉张构造应力正是盆地内中、东部地裂缝群发的力源机制,而盆地内差异性构造应力场也正是导致盆地东、西部地裂缝发育不均衡的根本原因所在,由此进一步证实了渭河盆地地裂缝的强构造属性,其是由活断层在上述力源机制作用下,以蠕滑形式错断地层使土层破裂而形成的.本文研究结果为盆地地裂缝灾害防治、城市安全建设提供了重要信息.  相似文献   

2.
渤海及其邻区震源机制解特征   总被引:1,自引:0,他引:1  
通过分析渤海及邻区的震源机制解的特征,发现该区现代构造应力场的主压应力方向为NEE-EW向,主张应力方向为NNW-SN,以水平和近水平应力作用为主。渤海盆地及邻区的地壳破裂以NW-WNW和NNE-NE走向的共轭剪切破裂活动为特征,是现代构造应力场作用的构造基础。震源机制解的系统聚类表明,渤海及邻区的地震主要以走向滑动地震为主,其次为正断层地震,对应该区不同的构造运动。  相似文献   

3.
<正>中国及邻区现代构造应力场在空间分布上表现为大区域同一性与局域的非均匀特征,在时间上具有相对的持续稳定性。然而,中国现代构造应力场的格局明显受制于周边板块的动力学作用,东部的力源主要来自太平洋板块俯冲、菲律宾板块推挤的作用,西部的力源则来自印度板块向北碰撞欧亚大陆而产生的挤压。由于中国大陆地壳复杂的构造格局以及地壳固体介质的不均匀性,这些驱动作用传递引起的地壳应力状态的分布是不均匀的,从而现代构造应力场也具有明显的分区性,表现为不同地区应力方向、应力类型  相似文献   

4.
渤海盆地现代构造应力场与强震活动   总被引:12,自引:1,他引:12       下载免费PDF全文
渤海位于北华北新生代裂陷盆地的东部,是一个晚第四纪形成的内陆海盆. 渤海盆地活动断裂发育,地震活动强烈,交会于渤海中部的NE向营口——潍坊断裂带北段、庙西北——黄河口——临邑断裂带及NW向北京——蓬莱断裂带是主要的活动构造带,将海区分成4个次级新构造区,成为现代应力场作用的构造基础. 综合研究38个震源机制解和75个井区应力场等资料,以及构造应力场二维数值模拟计算结果表明,渤海及其邻区现代构造应力场的压应力方向为NE60~90,张应力为SN——NW30;以水平和近水平应力作用为主;不同构造区主应力方向存在一定的差异. 现今渤海地区地壳发育以NNE——NE和NW——WNW走向的共轭剪切破裂为特征,是控制地震活动的主要构造.   相似文献   

5.
一百多年来,地震学家一直在寻求地震预测方法,然而,目前还没有一种可靠的方法可以用于实践(Geller,1997)。由于地震预测在防震减灾方面的重要性,很多科学家致力于各种方法的尝试,地震孕育过程的应力变化相比地壳构造应力有可能是很小的,因此,地壳构造应力场方向相对应当比较稳定。但地壳构造应力与地震孕育应力场变化的比例究竟有多大是一个没有定论的科学问题。  相似文献   

6.
基于观测应力场的大华北地区动力学机制探讨   总被引:8,自引:0,他引:8       下载免费PDF全文
采用伪三维有限元方法, 利用观测应力场应力取向和应力状态作为主要约束, 对华北地区的构造应力场进行了数值模拟. 结果显示, 华北地区应力场主要受到来自太平洋板块和青藏高原挤压作用的控制. 太平洋板块的北西西向的挤压作用对这一地区, 尤其是华北平原地区构造应力场的影响更大. 同时, 上涌地幔沿盆地边缘法线方向的引张, 对这一地区的应力场的形成也起到一定的作用.   相似文献   

7.
应用应力张量方法分析了潮汕盆地的新构造时期构造应力场,这里至少存在着4种应力状态,这与它们在盆地中所处的位置紧密相关.从盆地沉降中心向边缘,水平构造引张应力转为挤压应力.   相似文献   

8.
龙首山地区构造应力场初步探讨   总被引:1,自引:0,他引:1  
讨论了沟谷成因与构造应力场的关系,利用沟谷资料计算了龙首山地区的主压应力方向,结果表明,主压应力为北东向。新构造应力场、现代构造应力场、地震应力场趋于一致。认为晚第三纪以来,龙首山地区地壳构造应力场相对稳定,应该是青藏地块与阿拉善地块相互作用的结果。  相似文献   

9.
太原盆地的应力场特征   总被引:6,自引:0,他引:6  
通过对太原盆地大量震源机制解资料的研究,揭示了该盆地的地壳应力场特征,认为其地壳应力场具有显著的局部小区域应力场特征,即以北西-北北西向水平拉张、北东-北东东向挤压作用为主,而震源类型多为走滑-近走滑,兼有一定的斜滑分量,指明该应力场控制着太原盆地的中小地震活动。得出太原盆地的平均应力场与华北区域应力场完全一致,太原盆地的地壳应力场及地震活动仍严格受华北区域应力场的作用与控制的结论。  相似文献   

10.
板内地震构造的主要控制因素是区域构造应力场和局部的特殊发震构造条件。本文提出江苏南部强地震的主要构造标志是新生代活动盆地,盆地内的隐伏发震断层与区域构造应力场的最大主应力之间的夹角正好有利于剪切破裂的发生。三维有限元数值模拟证明,盆地形成过程中产生的地壳脆弱化,导致构造应力的重新分布和局部集中,盆地内部脆弱体中的隐伏断层是潜在的震源破裂面,盆地边缘积累的弹性应变能则是地震时释放的能量来源。  相似文献   

11.
On the dynamics of extensional basin   总被引:2,自引:0,他引:2  
Geological and geophysical data from the North China-Bohai Basin and “Basin and Range” Province were examined and compared. They are similar to each other in many respects. Surficial geological structures are characterized by a series of half-grabens with their one flank constituted by normal fault. Those extensional structures usually extend to a depth of 6–8 km. Therefore, the stress condition in the upper 8 km can be written as $$\sigma _2 > \sigma _x > \sigma _y$$ wherex, y denote the directions of maximum compression and maximum tension on the horizontal plane, whilez signifies the vertical direction. Some people think that this kind of stress condition exists through the entire crust in the extensional basin. However, the focal mechanisms of the earthquakes in the extensional basins with focal depths usually at 12–20 km are dominated by strike-slip faults. The stress condition in the focal regions can be expressed by $$\sigma _x > \sigma _z > \sigma _y .$$ Geodetic measurements conducted before and after the Tangshan earthquake in 1976 and the Xingtai earthquake in 1966 showed that both horizontal and vertical surficial deformations with magnitudes of a similar order occurred during the earthquakes. The surficial deformations during the earthquakes can be explained by a summation of the motions produced by both stress fields in the upper crust and the middle crust. Dynamical processes other than the homogeneous horizontal regional tectonic field are required to explain the vertical variation of the stress condition in the upper and middle crusts. Evidence from the seismic refractions, reflections and the three-dimensional seismic tomography from both local earthquakes and teleseismic events provide convincing evidence that magmatic intrusions from the uppermost mantle to the middle crust occur near the hypocenters of both the Tangshan and Xingtai earthquakes. The variation from the extensional stress regime at the upper crust to the compressional stress regime in the middle and lower crusts is considered to be the common feature in extensional basins. And the magmatic intrusions from the upper mantle to the middle crust observed in the extensional basin is suggested to be its genetic cause. Numerical simulations of magmatic intrusion from the uppermost mantle to the middle crust were studied. Both the intruded compression and the thermal stress due to magmatic intrusion were considered, also the viscoelasticity of the middle and lower crusts were assumed. The results successfully explain the vertical variation of the stress condition in the crust and the process producing an extensional basin.  相似文献   

12.
Investigation has been made for the upper crust structure and seismotectionic environments in Yunnan Province using the plentiful DSS data of the four profiles.The derived velocity model has a good relationship with the ex-posed basins,uplifts and faults.The low velocity anomaly corresponding to the volcano also has been revealed.There exits a prominent lateral inhomogeneity within the upper crust of Yunnan region.The depth of crystalline basement generally ranges from 0km to 5km,and the bedrocks are exposed on the ground directly in some places,nevertheless the thickness of sedimentary cover also can reack to 8km or even 12km at some targe depressions.Although the Changning-Shuangjiang fault is a boundary between two first class tectonic units,its incision depth within the crust maybe shallow.On the other hand,known as the plates‘seam,the Honghe fault has a distinct evi-dence of extending into the mid-lower crust.The widely spread activity of the volcanoes in the geological era has a close relationship with the earthquake‘s occurrence nowadays.Despite of the ceasing of the volcanoes in some places on the ground,the material in the mid-lower crst is still active,and there still exists strong upward stress-As the ceasing of the volcanoes on the surface,most parts of the power from the lower crust and the upper mantle cannot be released;therefore it accumulates at some appropriate tectonic locations.Moreover,the saturation of the water from the basin,the action of other fluids,and the effects of the outer stress maybe another direct reason ac-count for the strong earthquakes‘occurrence in Yunnan region.  相似文献   

13.
滇西北宾川盆地是发育于红河断裂和程海断裂交汇处的晚新生代张扭断陷盆地,该区活动断裂发育且历史地震比较活跃.对宾川盆地及邻区进行高精度浅层和上地壳精细结构研究,有助于深入认识该区主要发震构造的深浅部特征.基于2017年在宾川盆地及其附近开展的为期2个月的密集台阵观测数据,我们对该区96个小震共拾取了117221条初至P波和5475条初至S波震相,并利用simul2000开展了地震重定位和体波层析成像研究.结果表明:(1)小震活动主要集中在宾川盆地东缘断裂的弧形转折部位,并在洱海南侧呈现沿北东向断裂的条带状分布现象,反映了区域上近南北向至北东向断裂是主要控震构造,其次是北西向断裂带.(2)0 km的速度分布与区域地形有很好的对应关系.山地呈现高速异常,宾川盆地呈现低速异常.从3 km至9 km,高低速分界与断层有很好的对应,并且越往深部,近南北向至北北东向的宾川盆地东缘断裂在上地壳构造的控制作用越明显.(3)上地壳层析成像结果同时揭示了宾川盆地东缘断裂的三维形态变化在空间上呈现出南北部倾角大、中部倾角缓的变化特征,可能与区域地块的旋转变形过程有关.(4)综合高精度浅层速度结构和地震重定位结果可知,区域上的近南北向至北北东向断裂正逐步取代北西向构造,成为主要的区域分界断裂和控震构造.新的研究结果为深入理解该区的主要控震构造及其深部结构特征提供了重要依据.  相似文献   

14.
HUANG Hao  FU Hong 《地震地质》2019,41(6):1413-1428
Using the seismic waveform data of Xiaowan seismic network and Yunnan seismic network, we determined the focal mechanisms of 36 earthquakes(ML ≥ 3.0)from Jun. 2005 to Dec. 2008 and 51 earthquakes(ML ≥ 2.5)from Jan. 2009 to Dec. 2015 by generalized polarity and amplitude technique. We inverted tectonic stress field of the Xiaowan reservoir before impounding, using the focal mechanisms of 36 earthquakes(ML ≥ 3.0)from Jun. 2005 to Dec. 2008 and CAP solutions of 58 earthquakes(ML ≥ 4.0)collected and the solutions in the Global Centroid Moment Tensor(GCMT)catalog; We inverted local stress field of the reservoir-triggered earthquake clustering area, using 51 earthquakes(ML ≥ 2.5)from Jan. 2009 to Dec. 2015. Focal mechanisms statistics show that, the Weixi-Qiaohou Fault is the seismic fault. Focal mechanisms were strike-slip type in initial stage, but normal fault type in later stage. Focal depths statistics of 51 earthquakes(ML ≥ 2.5)show that, the average value of focal depths in period Ⅰ, period Ⅱ and period Ⅲ are 8.2km, 7.3km and 7.8km respectively and the standard deviations are 4.3km, 3.5km and 6.0km respectively. The average value of focal depths is basically stable in different period, only the standard deviation is slightly different. Therefore, there is not positive connection between focal depth and deviation of focal mechanisms. What's more, there are 2 earthquakes(number 46 and number 47 in Fig.5 and Table 3)with almost the same magnitude, epicenter and focal depth, but they have different faulting types as normal and strike-slip. The focal mechanism of event No.46 is strike:302°, dip:40° and rake:-97° for plane Ⅰ, however, the focal mechanism of event No.47 is strike:292°, dip:82° and rake:140° for plane Ⅰ. Likewise, earthquake of number 3 and number 18 have similar characteristic. Therefore, the obvious focal mechanism difference of similar earthquake pair indicates the complexity of Weixi-Qiaohou Fault. Considering the quiet-active character of reservoir-triggered earthquakes, we discussed the change of local stress field in different period. The σ1 of tectonic stress field was in the near-south direction, with a dip angle of 14° before the impoundment, however, the direction of σ1 of local stress field changed continuously, with the dip angle getting larger after the impoundment. The direction of σ1 of local stress field of reservoir-triggered earthquake clustering area is close to the strike of Weixi-Qiaohou Fault, and reservoir impoundment increased the shear stress in the fault, so the weakening of fault was beneficial to trigger earthquakes. Comprehensive analysis suggests that fluid permeation and pore pressure diffusion caused by the water impounding, and the weakening of fault caused by local stress field are the key factors to trigger earthquake in the Xiaowan reservoir.  相似文献   

15.
本研究利用CAP方法反演得到了2013—2017年辽宁地区19个3.5级以上地震的震源机制解.结果显示辽宁地区地震的震源机制以走滑类型为主,P轴和T轴方位分别集中在北东东和北北西方向,分别与区域构造应力场主压和主张应力方向一致.矩心深度结果反映辽宁地区在地壳内各个深度的位置都可能孕震,而以地壳中部最为活跃.灯塔地区地壳极浅部曾发生中等强度的地震,在地震减灾工作中需要引起注意.而盖州地区地壳底部仍有少量地震,显示其附近岩石仍具有脆性特性,且该处邻近一级块体边界,贯穿地壳的断层导致下地壳也有地震发生.震源机制结果显示区域构造应力场对辽宁地区大部分地震的发生有着主导作用,在局部地区复杂的断层构造也会对震源机制产生较大影响.  相似文献   

16.
太原盆地及周边地区双差层析成像   总被引:2,自引:0,他引:2       下载免费PDF全文
山西断陷带位于鄂尔多斯与华北地块交汇处,是我国著名的历史强震活动带之一,尤其是断陷盆地中部区域,6级以上地震频发.本研究旨在揭示忻定盆地中南部、太原盆地及临汾盆地中北部交汇处的深部结构特征,分析盆地的形成和演化,探讨该区域孕震环境.利用山西地震台网观测数据以及固定地震台站融合流动台站得到的地震数据,共7455个地震事件,采用双差层析成像方法,反演得到了太原盆地及周边地区的三维P波速度结构及精定位结果.层析成像结果显示,忻定盆地、太原盆地的中上地壳为明显的低速异常,被高速的石岭关隆起隔开,深部结构特征相对简单.太原盆地、临汾盆地及灵石隆起之间的深部结构特征较为复杂,反映了两个盆地演化过程的复杂性.穿过忻定盆地的速度剖面显示,在中地壳存在明显的低速异常体,且大部分地震都发生在该低速体上方;穿过太原盆地北部的剖面显示,该区域在20~25 km深度范围内有较密集的地震分布,并勾画出交城断裂呈犁形的断层特征;穿过太原盆地中部的剖面显示,太原盆地自西向东沉积层逐渐减薄;穿过临汾盆地的剖面揭示,汾东断裂在浅部倾角较陡,随深度增加倾角逐渐变小,倾向向东.  相似文献   

17.
白志明  王椿镛 《地震学报》2003,25(2):117-127
利用4条DSS丰富的测深资料,对云南地区上部地壳结构和地震构造环境进行了层析成像研究.成像结果显示,得到的速度模型与地表盆地、隆起与断裂有很好的对应关系,显示了与地表火山岩系相应的低速异常体.云南地区上部地壳横向不均匀性显著.结晶基底的深度一般为0~5 km.局部基底高于海平面,基岩直接出露地表,同时在一些大的坳陷处沉积厚度可达8~12 km.作为一级构造单元的昌宁-双江断裂可能切割不深,而红河断裂作为板块缝合线切割较深,有延伸到中下地壳的迹象.云南地区历史上的广泛的火山活动与现今中强地震的发生有紧密联系.有的地方尽管现今地表已不再有火山活动,但中下地壳活动并未停止,存在较大的应力作用.由于地表火山活动停止,来自中下地壳和上地幔的大部分能量得不到释放,而在有利的构造部位积聚,以及盆地水的渗透、其它流体的作用和外动力作用,可能是云南地区经常诱发中强地震的重要原因.   相似文献   

18.
天山中部的地震定位和地壳活动性分析   总被引:11,自引:3,他引:8       下载免费PDF全文
利用宽频带流动台网记录的地震P波和S波到时,根据一维和三维地壳速度模型,对天山中部及其邻近地区1997~1998年的地震进行了重新定位,以重新确定的震源参数为依据分析了地壳的活动性.震源分布表明,造山带边缘和内部的大部分断裂都显示出活动的迹象,它们对天山的地壳构造变动起到明显的作用;塔拉斯-费尔干纳断裂的活动具有分段特征:其东南段以及西南天山的部分断裂目前活动比较弱,西北段受周边断裂的影响活动较强;另外造山带边缘的构造活动有向山前盆地渗透(Penetration)的趋势.30~40km深度的地震活动表明,天山中部的地壳中下层仍然具有一定的破裂条件,它们与壳幔边界附近热扰动的驱动有关,暗示小尺度地幔对流或软流层上涌等动力作用仍在持续进行.  相似文献   

19.
Based on abundant aftershock sequence data of the Wenchuan MS8.0 earthquake on May 12, 2008, we studied the spatio-temporal variation process and segmentation rupture characteristic. Dense aftershocks distribute along Longmenshan central fault zone of NE direction and form a narrow strip with the length of 325 km and the depth between several and 40 km. The depth profile (section of NW direction) vertical to the strike of aftershock zone (NE direction) shows anisomerous wedgy distribution characteristic of aftershock concentrated regions; it is related to the force form of the Longmenshan nappe tectonic belt. The stronger aftershocks could be divided into northern segment and southern segment apparently and the focal depths of strong aftershocks in the 50 km area between northern segment and southern segment are shallower. It seems like 'to be going to rupture' segment. We also study focal mechanisms and segmentation of strong aftershocks. The principal compressive stress azimuth of aftershock area is WNW direction and the faulting types of aftershocks at southern and northern segment have the same proportion. Because aftershocks distribute on different secondary faults, their focal mechanisms present complex local tectonic stress field. The faulting of seven strong earthquakes on the Longmenshan central fault is mainly characterized by thrust with the component of right-lateral strike-slip. Meantime six strong aftershocks on the Longmenshan back-range fault and Qingchuan fault present strike-slip faulting. At last we discuss the complex segmentation rupture mechanism of the Wenchuan earthquake.  相似文献   

20.
本文搜集了现在已知的关于青藏高原地区的各种地球物理场特征,即:该区的地壳与上地幔构造,地磁场要素的分布,航空磁测的结果,古地磁极移轨迹,重力异常与均衡补偿,地热活动与温泉分布,地震活动以及深地震探测等研究结果,来探讨它与大陆板块构造的关系。 研究的初步结果表明,印度洋板块与欧亚板块交接地带的北界为雅鲁藏布江,南界为恒河平原的北缘。喜马拉雅地带为这两大板块碰撞与挤压的过渡带,其宽度约300公里左右。这一地带的大、小地震绝大部分是浅源地震,只在弧形山系和东西弧顶及其转折部位有中源地震。在这一过渡带内水热活动剧烈,重力也不均衡。 雅鲁藏布江以北到当雄一带,地壳厚度为70-73公里,喜马拉雅地区则为68-45公里左右,并向南翘起。地壳由多层介质组成,在下地壳中存在着低速层。断层面解表现为向南逆冲,主压应力轴基本上为南北向和北东向,且与震源深度相关。现在构造活动与地震活动似均逐渐向南移到主边界大断层一带。 在雅鲁藏布江以北,小震震源深度向南递加,而在恒河平原以北,则向北递加。此外,在上述两个地区均有零星的中源地震发生。因此,喜马拉雅地带的南北两侧有相向“俯冲”之势。在兴都库什地区,中源地震震源面北倾;在帕米尔地带,中源地震震源面南倾。因此,震源面构成了“V”字  相似文献   

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