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1.
天祝盆地边缘断层的全新世活动及盆地的演化与形成   总被引:3,自引:0,他引:3  
根据作者1/50,000活断层地质填图的资料,讨论了天祝盆地内断层的全新世活动及盆地的形成与演化历史。结果表明,天祝盆地内断层的全新世活动强烈,上窑洞沟深槽揭示3980±50aB.P.曾发生过一次古地震事件,天祝盆地是一个典型的拉分盆地,其形成及演化与断裂活动密切相关.  相似文献   

2.
祁连山中东段的范围东起宁夏固原,西至青海祁连县以西的托莱山一带.该区曾发生过1920年海原8.6级地震,1927年古浪8.0级地震,近期还发生过一系列中强地震,如1986年门源6.4级、1990年景泰—天祝6.2级、1995年永登5.8级等地震.该地区是我国构造活动和地震活动最强烈的地区之一.存在连绵不断的一系列的全新世活动断裂,其中自西向东最重要的有海原活动断裂、古浪活动断裂、老虎山活动断裂、毛毛山金强河活动断裂、冷龙岭活动断裂、托莱山活动断裂、庄浪河活动断裂、马衔山活动断裂等.前4条断裂的定量研究已在“八五”期间基本完成.在“九五”项目…  相似文献   

3.
海原断裂带内第三纪老龙湾拉分盆地的地质特征   总被引:10,自引:1,他引:9       下载免费PDF全文
在海原断裂带内部发现一个第三纪拉分盆地 ,命名为老龙湾拉分盆地。根据卫片解译结果和野外地质调查 ,对该盆地内的地层沉积序列、地层分布、相关断裂等特征进行了研究。结果表明 ,老龙湾拉分盆地发育于海原断裂内的最大斜列部位 ,盆地沉积受边界断裂控制 ;盆地内部沉积了巨砾岩、杂砾岩及紫红色 -灰绿色泥岩、桔红色角砾岩等地层 ,最大沉积厚度约 4 6 0 0m。老龙湾盆地内部地层不整合于不同的外围地层之上 ,根据对盆地内部沉积序列及外围第三系的区域对比 ,认为盆地沉积开始于中新世中期。由以上特征确定老龙湾盆地为海原断裂带内的第三纪拉分盆地。它为青藏高原东北缘第三纪的走滑断层活动的研究提供了地质证据  相似文献   

4.
大地震重复特征与平均重复间隔的取值问题   总被引:20,自引:3,他引:17       下载免费PDF全文
冉勇康  邓起东 《地震地质》1999,21(4):316-323
对延怀盆地及海原断裂古地震的详细研究表明,大地震的重复行为具有多样性。特征地震是大多数断裂活动的行为特征,但特征地震存在分级性,大地震的重复时间间隔存在分阶段性,以及断裂的相互作用会影响大地震的复发序列。因此,当大地震重复行为出现时间上的分阶段性,或特征地震分级现象导致不同强度的古地震间隔时间有明显差别时,用确定性或时间相依的概率方法评价大地震的危险性,需要分阶段或分级计算不同间隔阶段的平均值  相似文献   

5.
自1920年海原发生M8.5地震以来,青藏高原东北缘接连发生了1927年古浪M8.0地震、1932年昌马M7.6地震等一系列大地震,使其进入了强震活动的丛集期。为了探究青藏高原东北缘这一系列地震间的相互作用及区域地震危险性,建立青藏高原东北缘的三维Maxwell黏弹性有限元模型,模拟了区域自1920年以来17次M6.7以上地震的同震及震后库仑应力演化。结果显示:研究区自1920年海原M8.5大地震之后,后续的16次地震中,有13次地震发生在库仑应力变化为正的区域,说明了地震间的相互作用可能是导致区域地震丛集的主要原因之一。系列地震发生后,阿尔金断裂、柴达木盆地断裂西段、东昆仑断裂中段、鄂拉山断裂北段、共和盆地断裂南段、日月山断裂南段、庄浪河断裂、礼县—罗家堡断裂、成县盆地断裂西段、文县断裂西段、龙首山断裂南段、六盘山断裂东段、西秦岭北缘断裂东段、海原断裂西段和祁连断裂东段位于库仑应力变化为正的区域,且大部分断裂或断裂段的累积库仑应力变化超过了0.01 MPa,它们未来的地震危险性较高。  相似文献   

6.
沿大型走滑断裂带经常发生导致多个断层段同时破裂的级联破裂地震事件。海原断裂带在1920年海原M 8地震时3个段同时发生破裂,干盐池拉分盆地即为其西段和中段的分段边界。沿该盆地内新生断层的古地震研究揭示了晚更新世末期以来的至少7次古地震事件证据,最新1次事件为1920年海原地震,1920年海原地震之前的1次事件可能与1092年历史地震对应。对比分析表明,这些事件可能均为超过8级的大地震,其复发呈现地震丛集与单个事件相间排列的规律,当前可能处于最近的1个地震丛集期内。该古地震序列与整个海原断裂带的大地震活动历史的对比表明,干盐池拉分盆地内新生断层在级联破裂地震事件发生时并非总是同时破裂,该断层是否参与破裂可能与该次级联破裂事件的震级大小有关。讨论整个走滑断裂带大地震活动历史时应避免仅依据具有一定规模的拉分盆地内部断层的破裂记录。  相似文献   

7.
2005年前山西地震危险性预测   总被引:2,自引:0,他引:2  
以一系列断裂盆地为主体的断裂盆地带是山西的地震构造带和未来地震的主要危险区,叙述地的新生性,第四纪活动度,盆地和剪切运动和拉张运动特征及盆地的现代地壳运动特征和现代地壳应力场特征,分析了盆地的特征,地震震级一频度模式,古地震复发间隔和地震活动周期,山西历史强震前的地震活动图像及盆地的各项特征和地震活动的关系,在此基础得到,2005年山西基本上不具备发生M≥7地震的危险性,其发震概率在0.05~0.  相似文献   

8.
1927年古浪8级地震的破裂习性及破裂机制的数值模拟   总被引:3,自引:0,他引:3  
1927年古浪8级地震是继1920年海原8.5级地震之后发生在海原一祁连山断裂带上的另一次特大地震。对这次地震的破裂习性,前人的研究结果存在较大分歧。本文在多探槽揭露和地面追踪调查基础上,结合相关的历史资料分析后,认为本次地震是由构成古浪推覆体的天桥沟一黄羊川断裂、皇城双塔断裂冬青顶断裂段以及武威一天祝隐伏断裂等共同作用的结果。对古浪推覆体平面和剖面变形机制的有限元数值模拟结果显示,其应力和应变的集中区主要分布在天桥沟一黄羊川断裂西段、皇城一双塔断裂冬青顶一带以及武威一天祝隐伏断裂和古浪一双塔断裂所在的古浪峡一带,这与地震地表破裂带的展布是一致的,同时也进一步说明了1927年古浪8级地震是该推覆体整体活动的结果。  相似文献   

9.
月亮山东麓断裂古地震活动的初步研究   总被引:1,自引:0,他引:1       下载免费PDF全文
月亮山东麓断裂位于海原断裂带的东段。1920年海原大地震时该断裂也发生了破裂。对该段断裂的古地震活动特征的初步研究表明,全新世以来,月亮山东断裂可能发生过5次破裂事件,主要分布在全新世的早期和末期。海原断裂带具有分段破裂的特征,因此需要对照整个断裂带的古地震活动特征,才能确定月亮山东断裂是一个独立的破裂单元还是其他段落破裂的影响段。  相似文献   

10.
采用深、浅地震反射相结合的探测方法,对临汾盆地的地壳结构和隐伏活动断裂进行了研究.结果表明,研究区地壳具有清晰的上、中、下地壳结构特征,其地壳厚度约为38~42 km.临汾盆地为典型的半地堑沉积盆地,盆地沉积层最深处约为5~6 km.莫霍面在临汾盆地下方出现约3 km的上隆,其展布形态与盆地基底呈“镜像”对应关系,显示出临汾盆地为拉张作用下的纯剪切盆地模式.深地震反射剖面揭示的一系列铲状或面状正断层在剖面上表现为“负花状”构造特征,其中,罗云山山前断裂和浮山断裂为临汾盆地的东、西边界控制断裂,具有规模大、切割深度深和多期活动的特点,对临汾盆地的形成、地层沉积和褶皱以及地震活动都有重要的控制作用.研究结果为深入理解该区的深部动力学过程、分析研究深浅构造关系、评价断裂的活动性提供了依据.  相似文献   

11.
利用单台数字地震记录反演天祝—古浪5.4级地震矩张量   总被引:2,自引:0,他引:2  
利用单台3分向数字化记录反演了1996年6月1日甘肃天祝-古浪5.4级地震的矩张量,并对所得结果与用P波被动符合的结果进行了比较。结果表明,二具有很好的一致性。结合谝地震的震源机制和震源区的断层的构造情况,认为该地震是在NE-SW的压应力作用下,近EW向的源原西断层天祝-古浪段左旋破裂错动的结果。由于我们得出的结果只是利用了记录波形的最初几个波形,因此它基本反映了该地震的初始破裂错动情况。  相似文献   

12.
海原断裂高湾子地点三维探槽的开挖与古地震研究   总被引:22,自引:6,他引:22       下载免费PDF全文
对海原断裂高湾子地点进行大比例尺地质地貌填图和三维探槽开挖,揭示出7次古地震事件,除1920年地震外,它们的年龄分别为距今(10004±3196),(6689±169),(6120±505),(4208±577),(2763±372)和(1005±465)a;重复间隔分别为(3315±3200),(561±532),(1920±766),(1425±686),(1578±595)和(980±465)a。事件Ⅲ,Ⅳ,Ⅴ,Ⅵ,Ⅶ的水平位移量分别为(5.6±2.3),(1.5±1.1),(1.5±1.1),(2±1)和(7±0.5)m。显示出重复间隔时间的分段性和特征行为的分级性。两次类似1920年强度的地震间隔期间,有3次位移量为1~2m的地震发生  相似文献   

13.
Cascade rupture events often occur along large strike-slip fault zone.The 1920 AD M 81/2 earthquake ruptured all 3 segments of the Haiyuan Fault,and the Salt Lake pull-apart basin is the boundary between the west and middle segment of the fault.The data of trenching and drilling reveal 7 events occurring since last stage of late Pleistocene,and the two youngest events are associated with the historical records of 1092 AD (possibly) and 1920 AD respectively.These events are all large earthquakes with magnitude M>8,and the recurrence of them is characterized by earthquake clusters alternating with a single event.Now it is in the latest cluster which may last about 1000 years.Comparison of the paleoseismic sequence of this study and previous results reveals that the cross-basin fault in the Salt Lake pull-apart basin does not always rupture when cascade rupture events occur along the Haiyuan Fault,and likely ruptures only when the magnitude of the events is large (maybe M>8).Though there are many advantages in paleoseismic study in pull-apart basin,we should avoid getting the paleoseismic history of major strike-slip fault zones only depending on the rupture records of inner faults in pull-apart basins with large scale (maybe a width more than 3km).  相似文献   

14.
1932年12月25日,甘肃玉门市昌马镇附近发生MS7.6地震(震中:39.70°N,96.70°E),此次地震是继1920年海原MS8.5地震、1927年古浪MS8.0地震之后青藏高原东北缘祁连山—河西走廊地震带内的又一强震。这组大地震活动无论在时间序列上还是在空间序列上都极其罕见,引起了众多国内外学者的广泛关注,普遍认为是一次陆内地震活动沿相关断裂带由东向西迁移的典型样例。基于PSGRN/PSCMP程序,以前人地表地质调查相关结果为约束,利用弹性位错理论获取昌马地震断层破裂模型,以此为基础,基于黏弹性半空间分层模型模拟计算昌马地震产生的地表同震三维形变场。通过研究单次地震与地震叠加的库仑应力变化对后续地震的触发关系,分别对海原地震、古浪地震以及它们的叠加对昌马地震的触发作用进行研究。结果表明:海原地震、古浪地震以及它们的叠加均未超过可能触发地震的经验阈值,故认为昌马地震可能不受海原地震和古浪地震所造成的库仑应力变化的影响。此研究可为利用实际形变解释昌马地震的孕震过程研究提供理论依据。  相似文献   

15.
Located at the bend of the northeastern margin of Qinghai-Tibet Plateau, the Haiyuan fault zone is a boundary fault of the stable Alashan block, the stable Ordos block and the active Tibet block, and is the most significant fault zone for the tectonic deformation and strong earthquake activity. In 1920, a M8.5 earthquake occurred in the eastern segment of the fault, causing a surface rupture zone of about 240km. After that, the segment has been in a state of calmness in seismic activity, and no destructive earthquakes of magnitude 6 or above have occurred. Determining the current activity of the Haiyuan fault zone is very important and necessary for the analysis and assessment of its future seismic hazard. To study activity of the Haiyuan fault zone, the degree of fault coupling and the future seismic hazard, domestic and foreign scholars have carried out a lot of research using geology methods and GPS geodetic techniques, but these methods have certain limitations. The geology method is a traditional classical method of fault activity research, but dislocation measurement can only be performed on a local good fault outcrop. There are a limited number of field measurement points and the observation results are not equally limited depending on the sampling location and sampling method. The distribution of GPS stations is sparse, especially in the near-fault area, there is almost no GPS data. Therefore, the spatial resolution of the deformation field features obtained by GPS is low, and there are certain limitations in the kinematic parameter inversion using this method. In this study, we obtain the average InSAR line-of-sight deformation field from the Maomaoshan section to the mid-1920s earthquake rupture segment of the Haiyuan earthquake in the period from 2003 to 2010 based on the PSInSAR technique. The results show that there are obvious differences between the slip rates of the two walls of the fault in the north and the south, which are consistent with the motion characteristics of left-lateral strike-slip in the Haiyuan fault zone. Through the analysis of the high-density cross-fault deformation rate profile of the Laohushan segment, it is determined that the creep length is about 19km. Based on the two-dimensional arctangent model, the fault depth and deep slip rate of different locations in the Haiyuan fault zone are obtained. The results show that the slip rate and the locking depth of the LHS segment change significantly from west to east, and the slip rate decreases from west to east, decreasing from 7.6mm/a in the west to 4.5mm/a in the easternmost. The western part of the LHS segment and the middle part are in a locked state. The western part has a locking depth of 4.2~4.4km, and the middle part has a deeper locking depth of 6.9km, while the eastern part is less than 1km, that is, the shallow surface is creeping, and the creep rate is 4.5~4.8mm/a. On the whole, the 1920 earthquake's rupture segment of the Haiyuan fault zone is in a locked state, and both the slip rate and the locking depth are gradually increased from west to east. The slip rate is increased from 3.2mm/a in the western segment to 5.4mm/a in the eastern segment, and the locking depth is increased from 4.8km in the western segment to 7.5km in the eastern segment. The results of this study refine the understanding of the slip rate and the locking depth of the different segments of the Haiyuan fault zone, and provide reference information for the investigation of the strain accumulation state and regional seismic hazard assessment of different sections of the fault zone.  相似文献   

16.
As the northeast boundary of the Tibetan plateau, the Haiyuan-Liupan Shan fault zone has separated the intensely tectonic deformed Tibetan plateau from the stable blocks of Ordos and Alxa since Cenozoic era. It is an active fault with high seismic risk in the west of mainland China. Using geology and geodetic techniques, previous studies have obtained the long-term slip rate across the Haiyuan-Liupan Shan fault zone. However, the detailed locking result and slip rate deficit across this fault zone are scarce. After the 2008 Wenchuan MS8.0 earthquake, the tectonic stress field of Longmen Shan Fault and its vicinity was changed, which suggests that the crustal movement and potential seismic risk of Haiyuan-Liupan Shan fault zone should be investigated necessarily. Utilizing GPS horizontal velocities observed before and after Wenchuan earthquake(1999~2007 and 2009~2014), the spatial and temporal distributions of locking and slip rate deficit across the Haiyuan-Liupan Shan fault zone are inferred. In our model, we assume that the crustal deformation is caused by block rotation, horizontal strain rate within block and locking on block-bounding faults. The inversion results suggest that the Haiyuan fault zone has a left-lateral strike-slip rate deficit, the northern section of Liupan Shan has a thrust dip-slip rate deficit, while the southern section has a normal dip-slip rate deficit. The locking depths of Maomao Shan and west section of Laohu Shan are 25km during two periods, and the maximum left-lateral slip rate deficit is 6mm/a. The locking depths of east section of Laohu Shan and Haiyuan segment are shallow, and creep slip dominates them presently, which indicates that these sections are in the postseismic relaxation process of the 1920 Haiyuan earthquake. The Liupan Shan Fault has a locking depth of 35km with a maximum dip-slip rate deficit of 2mm/a. After the Wenchuan earthquake, the high slip rate deficit across Liupan Shan Fault migrated from its middle to northern section, and the range decreased, while its southern section had a normal-slip rate deficit. Our results show that the Maomao Shan Fault and west section of Laohu Shan Fault could accumulate strain rapidly and these sections are within the Tianzhu seismic gap. Although the Liupan Shan Fault accumulates strain slowly, a long time has been passed since last large earthquake, and it has accumulated high strain energy possibly. Therefore, the potential seismic risks of these segments are significantly high compared to other segments along the Haiyuan-Liupan Shan fault zone.  相似文献   

17.
Fault-related tectonic geomorphologic features are integrated expressions of multiple strong seismological events and long-term surface processes, including crucial information about strong earthquake behavior of a fault. It's of great significance to identify the strong seismic activity information from faulted landscapes, which include the date and sequence of the seismic activities, displacements, active fault features, for studying the seismic rupture process, predicting the future seismic recurrence behavior and evaluating the seismic hazard of the fault. However, due to the restriction of measuring techniques and the subsequent poor quality of the acquired data, it has been difficult to accurately extract such information from complex tectonic landforms to study active faults for a long time. Recently, "small Unmanned Aerial Vehicle(sUAV)" photogrammetric technique based on "Structure from Motion(SfM)" provides a cost-efficient and convenient access to high-resolution and high-accuracy "digital elevation models(DEMs)" of tectonic landforms. This paper selects the Tangjiapo area at the Haiyuan Fault to conduct data collection, in which the structural and geomorphic features are well preserved. Using a small quadrotor unmanned aerial vehicle(Inpire 2), we collect 1598 aerial photographs with a coverage area of 0.72km2. For calibrating the accuracy of the aerial data, we set 10 ground control points and use differential-GPS to obtain the spatial coordinates of these control points. We use model software Agisoft PhotoScan to process these digital pictures, obtaining high-resolution and high-accuracy DEM data with the geographic information, in which data resolution is 2.6cm/pix and the average density of point cloud is 89.3 point/m2. The data with these accuracy and resolution can fully show the real geomorphic features of the landform and meet the requirements for extracting specific structural geomorphic information on the surface. Through the detailed interpretation of the tectonic landforms, we identify a series of structures associated with the strike-slip fault and divide the alluvial fan into four stages, named s1, s2, s3, and s4, respectively.Wherein, the s1 is the latest phase of the alluvial fan, which is in the extension direction of the Haiyuan Fault and there isn't any surface fracture, indicating that the s1 was formed after the M8.5 Haiyuan earthquake in 1920. The rupture zone on the s2 fan is composed of varied kinds of faulting geomorphologic landforms, such as a series of en echelon tension-shear fractures trending 270°~285°, fault scarps and seismic ridges caused by the left-lateral motion of the seismic fault. In addition, a number of field ridges on the s2 fan were faulted by the 1920 Haiyuan M8.5 earthquake, recording the co-seismic displacements of the latest earthquake event. Relatively speaking, the surface rupture structure of the s3 fan is simple, mainly manifested as linear fault scarp with a trend of 270°~285°, which may indicate that multiple earthquakes have connected the different secondary fractures. And a small part of s4 fan is distributed in the southwest of the study area without fault crossing. Furthermore, we measured the horizontal displacements of river channels and vertical offsets of fault scarps. The faulted ridge on the s2 fan and faulted gully on the s3 fan provide good linear markers for obtaining the fault left-lateral dislocation. We used the graphical dislocation measurement software LaDiCaoz developed based on Matlab to restore the gully position before the earthquake by comparing the gully morphology on both sides of the fault, and then determined the horizontal offset of s2, which is(4.3±0.4)m and that of s3 is(8.6±0.6)m. In addition, based on the DEM data, we extracted the fault scarp densely along the fault strike, and obtained the vertical offset of s2, which is(4.3±0.4)m and that of s3 is(1.79±0.16)m. Moreover, we detect slope breaks in the fault scarp morphology. For compound fault scarps generated by multiple surface rupture earthquakes, there are multiple inflection points on the slope of the topographic section, and each inflection point represents a surface rupture event. Therefore, the slope break point on the scarp becomes an important symbol of multiple rupture of the fault. The statistical result shows that the slope breaks number of s2 is 1 and that of s3 is 2. Based on the analysis of horizontal displacements of river channels and vertical offsets of fault scarps as well as its slope breaks, two surface rupturing events can be confirmed along the Tangjiapo area of the Haiyuan Fault. Among them, the horizontal and vertical displacements of the older event are(4.3±0.95)m and(0.85±0.22)m, respectively, while that of the latest event are(4.3±0.4)m and(0.95±0.14)m, which are the coseismic horizontal and vertical offsets of the 1920 Haiyuan earthquake. These recognitions have improved our cognitive level of the fine structure of seismic surface rupture and ability to recognize paleoearthquake events. Therefore, the high-resolution topographic data obtained from the SfM photogrammetry method can be used for interpretation of fine structure and quantitative analysis of microgeomorphology. With the development of research on tectonic geomorphology and active tectonics toward refinement and quantification, this method will be of higher use value and practical significance.  相似文献   

18.
从1982年10月19日卢龙6.2级地震余震近场数字地震资料的391条记录中, 挑选出可用于精确定位的171条地震事件记录,采用Hypoinverse定位方法对45个事件进行了重定位. 精确定位的震中分布显示出一卧倒的反ldquo;Frdquo;形活动地震构造的形态, 两条NNE向断裂被一条WNW向断裂所截断,两组断裂呈脆性断裂常见的共轭状态产出, NNE向的断层正在相互贯通,卢龙附近的滦河河谷发育成了四面断裂包围的断陷盆地雏形. 卢龙地震的发震构造是一个走滑兼张性的断裂组合, 这样的构造与张家口——渤海地震带的整体活动习性相符, 也反映了张渤带作为一个二级地块的分界截断NNE向的一系列断层所起的作用.   相似文献   

19.
通过对海原地震震中区(唐家坡村西—乱堆子东)的大比例尺实测填图,获得了地震断层带上各类冲沟左旋位移的若干数据。规模越大的冲沟位移数据也越大。其中73条小冲沟和田埂的位移均为1920年8.5级大震一次造成,最大位移达10米。 从杨户章沟到古墩子之间的西华山北缘断裂,各类冲沟位移量都较大。根据发育了两级阶地的冲沟的平均位移量、位移开始的时间、大震造成的最大位移及平均位移,计算了该段断层的滑动速率和8.5级大地震的重复率  相似文献   

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