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1.
万永魁  刘峡  万永革  李媛  王雷 《地震学报》2018,40(4):471-480
本文利用唐山地震台1978—2016年跨断层定点形变资料探究唐山地震台所跨断层的浅层倾向和倾角。首先,对形变资料进行数字滤波处理,消除原始观测数据中的非构造信息;其次,对数据精度进行评价,得出1997—2016年滤波后的形变数据年累计残差普遍较小、精度较高;最后,采用精度较高的形变数据计算SE和NW两倾向不同倾角下基线与水准和的累计残差分布,进而获取断层的浅层倾向和倾角。结果显示,依据跨断层定点形变资料获得唐山地震台所跨断层的浅层倾向为SE,倾角为89°,该结果与前人探槽剖面中断层产状相一致,反映出本文提出的基于长期跨断层定点形变资料通过数字滤波、数据精度评价来获取断裂浅层倾向和倾角的方法具有可行性,但本文所得反演结果与唐山地震台目前采用的断层倾向NW、倾角72°存在一定偏差。   相似文献   

2.
基于1976年唐山MS7.8地震的同震位移和现今GPS速度结果, 本文分析了该地震的同震破裂参数、 同震应变释放分布及其现今应变积累特征. 对唐山同震位移二维位错解析公式的拟合结果显示, 唐山地震前的断层闭锁深度约为18—23 km, 断层倾角可能介于74°—90°之间, 同震位错量约为3.1—3.4 m. 在同震过程中沿发震断层表现出显著的右旋错动特征, 在发震断层两侧沿NE向表现出左旋应变释放特征. 在本文现有的GPS测站密度和精度情况下, 尚无法识别出现今阶段沿唐山断裂的明显蠕滑特征. 唐山同震应变释放和现今GPS应变率积累结果均显示, 唐山断裂SE侧的剪切形变(速率)量值大于其NW侧, 同震与现今阶段的形变量值相差约1000倍.   相似文献   

3.
华北地区震前断层异常活动方式   总被引:6,自引:0,他引:6  
车兆宏  范燕  马牧军 《地震》2004,24(2):109-118
分析了华北地区跨断层形变资料, 研究了唐山、 大同及张北地震前断层异常活动方式。 结果表明, 震前存在显著的断层异常活动; 断层异常活动方式具有构造控制特征,并与孕震机理有关; 地震孕育过程中有可能出现多次应力集中; 从断层不可逆异常活动地区的分布推测, 唐山地震缓解了延怀地区的地震危险性, 大同地震缓解了紫荆关-狼山断层一线的地震危险性; 张北地震断层异常活动呈松弛变化, 首都圈及邻近地区地震活动将趋于缓解。  相似文献   

4.
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   

5.
唐山及大同-阳高地震大地形变与重力前兆综合研究   总被引:1,自引:0,他引:1  
本大概还了近年来利用大地形变及重力复测资料研究唐山及大同-阳高地震的丰富成果,对这2次地震震前大地形变及重力前兆综合研究认为:震中区震前呈现闭锁状态;断层蠕滑及深部物质的运移,是震前的显著标志;地震成因的组合模式可以较好地解释唐山及大同一阳高地震的机制;跟踪监测形变场、重力场及断层活动时空演化特性,是利用大地形变及重力测量手段进行地震预测的基本出发点。  相似文献   

6.
唐山地震发震断层运动学特征与大震重复周期   总被引:4,自引:0,他引:4       下载免费PDF全文
刘洁  巫映祥 《地震学报》1997,19(6):566-573
根据断层深部不均匀滑动反演方法,利用6期大地形变资料,反演计算了唐山地震断层在震前、震时、震后共5个不同时间段的运动状况.其结果体现了地震断层由震前加速运动、震时突发错动到震后松弛、调整,趋于稳定的运动过程.进而利用地震断层的滑动与应变能的关系,估算了唐山地震的复发周期.   相似文献   

7.
根据青藏块体东北缘地区的跨断层流动水准测量资料,分别从断层形变异常的空间分布特征,不同断裂带上断层形变平均活动速率的分布和断层形变群体性异常在时间上的分布三个方面进行了统计、对比、分析和研究。结果显示,自2002年以来青藏块体东北缘地区的断层形变异常的主体区域逐步由西向东迁移,地震活动也具由西向东迁移的现象;断层平均活动速率也是东部区偏高。但是,断层形变群体异常在时间上的分布显示目前该区域断层形变异常活动的数量和强度均不十分显著,短期内发生强震的可能性不大。本文提出的方法及初步结论对该区域日常地震预测及震情跟踪工作有一定的参考价值。  相似文献   

8.
本文根据对大灰厂、牛口峪两台地质地貌条件和断层破碎带的物质组分和形变资料变化过程的分析,讨论了在唐山地震前后两次形变异常的特征和形成原因,认为主要是断层破碎带中含水量变化所致。  相似文献   

9.
唐山大震及其前后的地震活动   总被引:2,自引:0,他引:2       下载免费PDF全文
1976年7月28日北京时间03时42分56秒河北省唐山市区(东经118°11′;北纬39°38′)发生7.8级地震,震中烈度达十一度。当日18时45分37秒于附近的滦县商家林(东经118°39′;北纬39°50′)又发生7.1级地震,震中烈度达九度。本文简述唐山地震参数的测定及其发震的地质背景,并对大震前本区较大范围内地震活动的某些异常特征,如围空区、密集—平静、b值下降及条带状的空间分布等进行了一些讨论。根据大震时的地面断裂走向、P波初动图解、大震前后的垂直形变以及余震位置分布等资料推测,7.8级地震可能是北东走向的断层以走滑为主的右旋滑动结果。7.1级地震可能是近南北走向的滦河断层受北东向断层牵动发生的水平左旋运动。文中还从唐山余震时空分布特点出发,讨论了震源的破裂过程及其对余震发展的影响。并指出唐山大震的发生时间可能与当天的天文条件有关  相似文献   

10.
运用Sentinel-1A卫星数据和D-InSAR技术,获取2021-05-21云南漾濞M_S6.4地震的同震形变场。结果显示,漾濞地震同震形变场长轴近NW展布升降轨形变场符号相反,视线向最大沉降量和抬升量为0.1 m。InSAR同震形变场反演的滑动分布主要集中在沿走向2~12 km,倾向1~9 km的范围内,最大滑动量0.35 m,发震断层长9.8 km、宽4 km,滑动量主要集中在地下3~6 km范围内,滑动角-146.7°。同震位移场及滑动分布模型反映本次地震为发震断层的右旋走滑事件,地震破裂未达到地表。断层模型反演结果显示,矩震级为M_W6.1,发震断层以北西走向右旋走滑运动为主,初步认为本次M_W6.1地震发震断裂可能是一条NW向的维西—乔后断裂西侧的隐伏次生断裂。  相似文献   

11.
Existing achievements about Baotou Fault demonstrate it as a buried eastern boundary of the Baiyanhua Basin in Hetao active fault subsidence zone,striking NE.More data is needed to assess its activity.Located in the relay ramp between Wulashan Fault and Daqingshan Fault,Baotou Fault's activity is of great importance to discuss the linkage mode and the response to the earthquake of the adjacent fault.Also it is necessary to the knowledge of the characteristic of the seismic tectonic in local area.Recently it is prevalent to combine shallow seismic profile and composite drilling section to study the activity of the buried fault.Shallow seismic profile indicates that Baotou Fault is a normal fault,inclining to NW.The displacement of the Tg at 75m underground is 25m.Composite drilling section indicates that it is a growth fault,the up-break point of which is 45.6m underground and ends in brownish red clay strata of early Pleistocene.In comparison,the upper Late Pleistocene strata are out of the influences of the tectonic subsidence zone.Baotou Fault's activity is limited to the early Pleistocene.  相似文献   

12.
1976年唐山地震发震断裂的活动性研究   总被引:10,自引:5,他引:5       下载免费PDF全文
震后野外考察及航空摄影发现的地裂缝带,说明唐山断裂与1976年唐山7.8级大地震的发震构造有密切关系。用卫星遥感信息和浅层地震勘探结果对唐山断裂的活动性做了新的研究。卫星图像解释结果表明:震前一年多时间内,NE向的唐山断裂被NNW向断裂截切而NWW向断裂受到牵引,因而显示出右旋走滑的活动形迹。浅层地震勘探结果则证明,唐山断裂是倾向NW,高倾角的右旋走滑正断层,它断错了全新统(Q4)、晚更新统(Q3)、中更新统(Q2)和早更新统(Q1)地层  相似文献   

13.
Anqiu-Juxian Fault is an important fault in the Tanlu fault zone, with the largest seismic risk, the most recent activity date and the most obvious surface traces. It is also the seismogenic fault of the Tancheng M8 1/2 earthquake in 1668. There are many different views about the southern termination location of surface rupture of the Tancheng earthquake and the Holocene activity in Jiangsu segment of this fault. Research on the latest activity time of the Jiangsu segment of Anqiu-Juxian Fault, particularly the termination location of surface rupture of the Tancheng earthquake, is of great significance to the assessment of its earthquake potential and seismic risk. Based on trench excavation on the Jiangsu segment of Anqiu-Juxian Fault, we discuss the time and characteristics of its latest activity. Multiple geological sections from southern Maling Mountain to Chonggang Mountain indicate that there was an ancient seismic event occurring in Holocene on the Jiangsu segment of Anqiu-Juxian Fault. We suggest the time of the latest seismic event is about(4.853±0.012)~(2.92±0.3)ka BP by dating results. The latest activity is characterized by thrust strike-slip faulting, with the maximum displacement of 1m. Combined with the fault rupture characteristics of each section, it is inferred that only one large-scale paleo-earthquake event occurred on the Jiangsu segment of Anqiu-Juxian Fault since the Holocene. The upper parts of the fault are covered by horizontal sand layers, not only on the trench in the west of Chonggang mountain but also on the trench in Hehuan Road in Suqian city, which indicates that the main part of the Jiangsu segment of Anqiu-Juxian Fault was probably not the surface rupture zone of the 1668 Tancheng M8 1/2 earthquake. In short, the Jiangsu segment of Anqiu-Juxian Fault has experienced many paleo-earthquake events since the late Pleistocene, with obvious activity during the Holocene. The seismic activities of the Jiangsu segment of Anqiu-Juxian Fault have the characteristics of large magnitude and low frequency. The Jiangsu segment of Anqiu-Juxian Fault has the deep tectonic and seismic-geological backgrounds of big earthquakes generation and should be highly valued by scientists.  相似文献   

14.
焦远碧 《内陆地震》1993,7(2):106-113
对地震活动性进行层次结构分析可划分出不同的地震区带,中国大陆的地震活动可分为9个地震区带,分析各个区带的地震活动性可作出某一活跃期强震发生主体地区的判别,对某一个地震区带的地震活动进行层次结构分析可作出地震危险区预测。用震源面投影图代替点投影的震中分布图可更合理地解释一个构造带上强震的发生过程,更清楚地勾画出未来强震的孕震范围。对强震破裂区闭锁段、背景空区、孕震空区的关系用实测震例进行了解释。  相似文献   

15.
Tanlu fault zone is the largest strike-slip fault system in eastern China. Since it was discovered by aeromagnetics in 1960s, it has been widely concerned by scholars at home and abroad, and a lot of research has been done on its formation and evolution. At the same time, the Tanlu fault zone is also the main seismic structural zone in China, with an obvious characteristic of segmentation of seismicity. Major earthquakes are mostly concentrated in the Bohai section and Weifang-Jiashan section. For example, the largest earthquake occurring in the Bohai section is M7.4 earthquake, and the largest earthquake occurring in the Weifang-Jiashan section is M8.5 earthquake. Therefore, the research on the active structure of the Tanlu fault zone is mainly concentrated in these two sections. With the deepening of research, some scholars carried out a lot of research on the middle section of Tanlu fault zone, which is distributed in Shandong and northern Jiangsu Province, including five nearly parallel fault systems, i.e. Changyi-Dadian Fault(F1), Baifenzi-Fulaishan Fault(F2), Yishui-Tangtou Fault(F3), Tangwu-Gegou Fault(F4) and Anqiu-Juxian Fault(F5). They find that the faults F3 and F5 are still active since the late Quaternary. In recent years, we have got a further understanding of the geometric distribution, active age and active nature of Fault F5, and found that it is still active in Holocene. At the same time, the latest research on the extension of F5 into Anhui suggests that there is a late Pleistocene-Holocene fault existing near the Huaihe River in Anhui Province. The Tanlu fault zone extends into Anhui Province and the extension section is completely buried, especially in the Hefei Basin south of Dingyuan. At present, there is little research on the activity of this fault segment, and it is very difficult to study its geometric structure and active nature, and even whether the fault exists has not been clear. Precisely determining the distribution, active properties and the latest active time of the hidden faults under urban areas is of great significance not only for studying the rupture behavior and segmentation characteristics of the southern section of the Tanlu fault zone, but also for providing important basis for urban seismic fortification. By using the method of shallow seismic prospecting and the combined drilling geological section, this paper carries out a detailed exploration and research on the Wuyunshan-Hefei Fault, the west branch fault of Tanlu fault zone buried in Hefei Basin. Four shallow seismic prospecting lines and two rows of joint borehole profiles are laid across the fault in Hefei urban area from north to south. Using 14C, OSL and ESR dating methods, ages of 34 samples of borehole stratigraphic profiles are obtained. The results show that the youngest stratum dislocated by the Wuyunshan-Hefei Fault is the Mesopleistocene blue-gray clay layer, and its activity is characterized by reverse faulting, with a maximum vertical offset of 2.4m. The latest active age is late Mesopleistocene, and the depth of the shallowest upper breaking point is 17m. This study confirms that the west branch of Tanlu fault zone cuts through Hefei Basin and is still active since Quaternary. Its latest activity age in Hefei Basin is late of Middle Pleistocene, and the latest activity is characterized by thrusting. The research results enrich the understanding of the overall activity of Tanlu fault zone in the buried section of Hefei Basin and provide reliable basic data for earthquake monitoring, prediction and earthquake damage prevention in Anhui Province.  相似文献   

16.
何强  李录明  赖敏  黎大虎  黄伟 《地震地质》2004,26(4):706-715
利用反射波法地震勘探确定了在凤凰山地区蒲江-新津-德阳隐伏断裂通过的具体位置以及断裂的规模和性质,证明了该断裂在向东俯冲的过程中错切了晚更新统沉积物,具有明显的第四纪活动性,对凤凰山台地的形成起到了一定的控制作用。地面地质调查及历史地震研究也证明蒲江-新津-德阳隐伏断裂具有晚更新世活动性,且断裂南段的活动性明显强于北段,表明该断裂的北段是成都平原内部的一条弱地震活动带。同时,文中还对在城市近郊人烟繁杂地带反射波法地震勘探中野外观测系统的布置及地震参数的选取进行了探索,小道间距、小偏移距、多接收道、短排列、多次覆盖、高频检波器接收的工作方法和野外地震参数的合理选取对实现主要干扰波和反射波信号的有效分离,提高地震勘探分辨率起到了至关重要的作用  相似文献   

17.
唐山大地震的重复间隔   总被引:5,自引:1,他引:5  
在1976年唐山地震形成的地面裂缝带上三个地段(市十中、市畜产公司牛马库和礼尚庄东)开挖了三个探槽,揭示出保存在晚更新世沉积物中的两次古地震遗迹。在唐山外围的地震地质调查中,也相应地发现了一次古地震形迹。文中通过对地裂缝和液化规模的类比分析,推测其烈度与1976年7.8级地震相近。古地震发生年代,经年~(14)C年代测定和沉积速率估算,分别发生于距今7665±105年和14865年。大震重复间隔近似值为7500年  相似文献   

18.
Longmenshan fault zone is a famous orogenic belt and seismic zone in the southeastern Tibetan plateau of China. The Wenchuan MS8.0 earthquake on May 12, 2008 and the Ya'an MS7.0 earthquake on April 20, 2013 occurred in the central-southern part of Longmenshan fault zone. Because of its complex geological structures, frequent earthquakes and special geographical locations, it has attracted the attention of many scholars around the world. Satellite gravity field has advantages in studying gravity field and gravity anomaly changes before and after earthquake. It covers wide range, can be updated regularly, without difficulty in terms of geographical restrictions, and is not affected by environmental factors such as weather, terrain and traffic. Therefore, the use of high-precision Earth satellite gravity field data inversion and interpretation of seismic phenomena has become a hot topic in earth science research. In order to understand satellite gravity field characteristics of the Longmenshan earthquake zone in the southeastern Tibetan plateau and its seismogenic mechanism of earthquake disasters, the satellite gravity data was used to present the terrain information of the study area. Then, by solving the regional gravity anomaly of the Moho surface, the crustal thickness of the study area was inverted, and the GPS velocity field data was used to detect the crustal deformation rate and direction of the study area. Combining the tectonic setting of the Longmenshan fault zone and the existing deep seismic sounding results of the previous researchers, the dynamic characteristics of the gravity time-varying field after the earthquake in the Longmenshan earthquake zone was analyzed and the mechanism of the earthquake was explored. The results show that the eastward flow of deep materials in the eastern Tibetan plateau is strongly blocked at the Longmenshan fault zone. The continuous collision and extrusion process result in a "deep drop zone" in the Moho surface, and the long-term stress effect is conducive to the formation of thrust-nappe and strike-slip structures. The Longmenshan earthquake zone was in the large-scale gradient zone of gravity change before the earthquake, the deep plastic fluid material transport velocity differed greatly, the fluid pressure was enhanced, and the rock mechanical strength in the seismic source region was weakened, which contributed to the intrusion of crustal fluid and the upwelling of the asthenosphere. As a result, the continuous accumulation of material and energy eventually led to continuous stress imbalance in the deep part and shear rupture of the deep weak structure, causing the occurrence of the thrust-nappe and strike-slip earthquake.  相似文献   

19.
大青山山前活动断裂带分段与潜在震源区划分   总被引:2,自引:1,他引:1  
潜在震源区的划分主要包括潜在震源区范围的划定以及震级上限的确定,目前遵循地震构造类比和地震活动重复等原则。而活断层的分段特性也是潜在震源区划分时必须考虑的一个重要因素。大青山山前断裂带至今有3种不同的分段方案,文中比较分析了前人对大青山山前断裂带的分段,并在此基础上对大青山及山前盆地的潜在震源区作了新的划分。鄂尔多斯块体周缘被拉张性断陷盆地围绕,这些断裂系地震构造相似,且除呼包盆地外均有历史8级以上地震记录。文中将大青山山前断裂带与鄂尔多斯块体周缘断裂系进行了构造对比,特别是与华山山前断裂进行了断裂活动性定量对比,得出雪海沟到土左旗段的震级上限为8级,断裂两端潜源震级上限均为7.5级  相似文献   

20.
郯庐断裂带江苏新沂——安徽宿松段地震危险性分析   总被引:1,自引:0,他引:1  
通过对郯庐断裂带江苏新沂—安徽宿松段历史及现代地震活动性分析、地震地质调查结果及沿线跨断层水准测量结果的综合分析,认为郯庐断裂带新沂—宿松段近期地震危险性主要位于新沂—泗县一带和明光一带,其中新沂—泗县一带近期有发生MS5.0~6.0级地震的活动背景;明光一带近期有发生MS5.0级地震的活动背景。  相似文献   

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