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1.
台湾海峡及两岸发震断裂的对比研究   总被引:1,自引:0,他引:1  
对比研究了台湾海峡西岸福建沿海北东向龙海角美-白云山断裂、台湾海峡北东向平潭牛山岛-东山兄弟屿断裂和台湾海峡东岸台湾岛北东向中央山脉等断裂晚更新世以来的活动性及其与地震的关系。结果表明,作为欧亚大陆板块与太平洋菲律宾海板块的边界断裂之一的中央山脉断裂第四纪以来乃至现今仍具有强烈的活动,因而发生了4次M≥7地震;作为台湾海峡沉降带与福建武夷-戴云复式生起的边界断裂的平潭牛山岛-东山兄弟屿断裂全新世晚期(2500a以来)仍具有强烈的活动,从而发生了3次M≥7地震;作为北东向长乐-诏安断裂带西界断裂组成部分的龙海角美-白云山断裂晚更新世期间具有强烈的活动,因而发生了5次M=5-6 1/2地震。  相似文献   

2.
松潘—龙门山地区主要活动断裂带第四纪活动特征   总被引:31,自引:0,他引:31  
本文主要根据我们近两年来对松潘—龙门山地区主要断裂带的野外调查成果,并参考前人资料,结合第四纪年代学和断层活动性与地震关系的研究,重点讨论了松潘—龙门山地区几条主要活动断裂带的第四纪活动特征。研究结果表明:这几条活动断裂带在中、晚更新世以来活动的强弱与其地震活动在时、空分布上的不均匀性有较好的一致性,即地震活动的强度、频度严格受断裂带在中、晚更新世以来的活动强度、活动方式的制约,强震主要发生在晚更新世以来断裂的最新活动段上。  相似文献   

3.
郯庐断裂带东地堑边界断层在断裂带演化过程和现今构造格局中都是重要断层,对该边界断层的第四纪活动性研究有助于了解郯庐断裂带的演化历史和地震活动性,而有关该边界断层第四纪活动性研究较少且至今尚无定论。本文通过浅层地震勘探和钻孔联合剖面相结合的方法,针对郯庐断裂带江苏段东地堑两边界断层开展系统的断层第四纪活动性研究,结果显示,昌邑-大店断裂(F_1)第四纪以来未见构造运动证据,白芬子-浮来山断裂(F_2)在第四纪早期曾发生有关活动,晚更新世以来未见活动迹象。  相似文献   

4.
岷山断块由岷江断裂和虎牙断裂自西向东的推覆逆掩运动所形成 ,处于我国南北地震带的中段。受区域NWW向主压应力场的控制 ,岷江断裂带第四纪以来表现为明显的推覆逆掩运动并具有一定的左旋走滑分量 ,岷山断块则处于强烈的隆起抬升状态。航片解译及野外地质考察结果表明 ,岷江断裂带由数条次级断裂呈羽列组合而成 ,其中尕米寺 -川盘右阶羽列区的羽列距达3km ,控制了低序次的地震破裂单元。第四纪地貌发育过程及断错地貌研究结果表明 ,岷江断裂晚第四纪以来的平均垂直滑动速率为 0 37~ 0 53mm/a ,水平位错量与垂直位错量大致相当 ;岷山断块第四纪以来的平均隆起速率为 1 5mm/a左右。地震活动特征表明 ,该地区 6级以上强震丛集于强烈活动的断块边界断裂上 ,中强地震及小震发生在新构造隆起区及近东西向断裂带上 ,与断裂的活动性质具有密切的成因联系  相似文献   

5.
福建政和-海丰断裂带地震活动特征分析   总被引:1,自引:0,他引:1  
陈秋英  陈传昌 《华南地震》2009,29(1):109-114
通过对1971年以来福建政和-海丰断裂带地震活动特征分析后认为:北东向的政和-海丰断裂带和次一级北西向的永安-晋江断裂带相互交汇,形成了4~5级中强地震反复发生的潜在震源区:在该断裂带主干上所发生的地震活动基本上具有前-主-余-震型和震群型的特点:在该断裂带主干上的M≥3.0以上的中等地震主要发生在北西向永安-晋江断裂的以南地区;该断裂带的地震活动在空间分布上是中段地震活动性强,北段地震活动性弱。  相似文献   

6.
根据地质、地貌、地球物理资料以及晚第四纪地层的分析对比,探讨了台湾海峡NE、NW向断裂的活动性及其与地震的关系。研究表明,以晚更新世晚期以来,上述断裂具有明显的活动性,海峡中5级以上地震大多发生在这些断裂附近或其交汇处。  相似文献   

7.
临潭—宕昌断裂带总体上位于东昆仑断裂和西秦岭北缘断裂之间。作为甘东南构造转换和变形传递过程中的一条重要的断裂,其几何展布\,新活动性和运动特征对讨论地震的孕育有着至关重要的作用。前人对临潭—宕昌断裂进行了大量的调查和研究,尤其在2013年岷县—漳县MS6.6地震发生后,认为该断裂各分支断裂活动差异明显,除主干断裂南东段不活动外,其余次级断裂在晚第四纪以来皆有活动。笔者通过对临潭—宕昌主干断裂1∶5万断裂活动性填图工作,在主干断裂南东段发现了多处晚第四纪活动的地质与地貌证据,这一发现对临潭—宕昌断裂带结构特征及活动性是一个重要补充,有助于完善该地区的区域构造几何图像和运动特征,对认识区域构造活动、构造转换和变形传递有关重要的意义。  相似文献   

8.
鹤庆—洱源断裂位于滇西北,呈NE-SW向延伸,南端与红河断裂带斜交,是一条晚第四纪以来仍在活动的断裂。通过对鹤庆—洱源断裂的野外露头的特征分析,揭示了该断裂在晚第四纪以来具有左旋走滑特征,同时又伴有张性正断性质,结合该断裂带附近的地震活动特征分析,认为该断裂对滇中引水香炉山隧洞工程有重要影响,应引起重视。  相似文献   

9.
本文以丰富和翔实的地质、地貌、年代测定、地球物理、地震等资料,阐述了晋江下游北西向断裂带的几何特征,分析了断裂带晚更新世以来的活动性,并探讨了断裂活动与地震的关系。结果表明:(1)晋江下游北西向断裂带从南安仑苍到晋江河口形迹清晰,断裂规模自西北向东南不断增大;(2)晋江下游北西向断裂带晚更新世以来,不同段落的活动性亦表现出自西北向东南不断增强和变新的特点,南安仑苍一丰州段为早第四纪断裂,丰州一晋江河口段发育有晚更新世断裂;(3)沿晋江下游北西向断裂带,在其与北东向断裂交汇部位附近,历史上曾发生过6次中强地震,地震有自西北向东南频度升高和强度增大的趋势。  相似文献   

10.
福建东南沿海及邻区活动断裂的微地貌研究   总被引:2,自引:0,他引:2       下载免费PDF全文
本文对福建东南沿海及邻区活动断裂进行了微地貌学分析,研究了区内断裂构造第四纪以来的活动特征,并探讨了晚更新世以来的区域构造应力场.结果表明:北东向的长乐—诏安断裂带和与之具有成生联系的北西向断裂,第四纪以来具有垂直运动和水平运动的特征;主要有两个明显的活动期,即早、中更新世和晚更新世;晚更新世以来,北东向断裂具右旋水平滑动,北西向断裂具左旋水平滑动,显示出北西西—南东东向水平挤的区域构造应力场.  相似文献   

11.
西秦岭北缘断裂带新活动特征   总被引:27,自引:2,他引:27       下载免费PDF全文
在本文中,作者在近几年进行的大比例尺活断层地质填图工作的基础上,介绍了西秦岭北缘断裂带晚第四纪以来活动的基本待征,研究了该断裂带的空间展布情况、几何学和运动学特征、断层活动速率、古地震与地震重复周期等。结果表明,该断裂带自第四纪以来由压性逐渐演变为左旋扭动,其水平滑动速率为2.1-2.8mm/年,垂直滑动速率为0.4-0.7mm/年,地震复发周期约为5000年。  相似文献   

12.
榆木山东麓断裂带晚第四纪活动特征的初步研究   总被引:3,自引:0,他引:3  
位于甘肃河西走廊中部、张掖——民乐盆地西侧的榆木山东麓断裂带,是一条走向北北西向晚第四纪活动断裂。根据断层地貌特征研究,断裂带显示为一高角度右旋挤压的活动特点。全新世以来,该断裂带的平均滑移速率为:水平位错1.93毫米/年,垂直位错0.82毫米/年。  相似文献   

13.
The Longmenshan fault zone is divided into three sections from south to north in the geometric structure. The middle and northern segments are mainly composed of three thrust faults, where the deformation of foreland is weak. The geometric structure of the southern segment is more complex, which is composed of six fault branches, where the foreland tectonic deformation is very strong. The Wenchuan MS8.0 earthquake occurred in the middle of the Longmenshan in 2008, activating the bifurcation of two branches, the Yingxiu-Beichuan and the Guixian-Jiangyou faults. In 2013, the Lushan MS7.0 earthquake occurred in the southern Longmenshan, whose seismogenic structure was considered to be a blind fault. After the Lushan earthquake, the seismic hazard in the southern Longmenshan has been widely concerned. At present, the studies on active tectonics in the southern Longmenshan are limited to the Dachuan-Shuangshi and the Yanjing-Wulong faults. The Qingyi River, which flows across the southern Longmenshan, facilitates to study fault slip by the deformation of river terraces. Based on satellite imagery and high-resolution DEM analysis, we measured the fluvial terraces along the Qingyi river in detail. During the measurement, the Sichuan network GPS system (SCGNSS)was employed to achieve a precision of centimeter grade. Besides, the optical luminescence dating (OSL)method was employed to date the terraces' ages. And the late Quaternary activities of the six branch faults in the southern Longmen Shan were further analyzed. The Gengda-Longdong, Yanjing-Wulong and the Xiao Guanzi faults (west branch of the Dachuan-Shuangshi fault)all show thrust slip and displaced the terrace T2. Their average vertical slip rates in the late Quaternary are 0.21-0.30mm/a, 0.12-0.21mm/a and 0.10-0.12mm/a, respectively. Since the Late Quaternary, vertical slip of the east branch of the Dachuan-Shuangshi fault was not obvious, and the arc-like Jintang tectonic belt was not active. Crustal shortening rate of the southern Longmenshan thrust fault zone in the late Quaternary is 0.48-0.77mm/a, which equals about half of the middle segment of the Longmenshan. Based on the previous study on the tectonic deformation of the foreland, we consider that the foreland fold belt in the southern Longmenshan area has absorbed more than half of the crustal shortening. The three major branch faults in the southern Longmenshan are active in the late Quaternary, which have risk of major earthquakes.  相似文献   

14.
新疆伊犁喀什河断裂带及其活动性研究   总被引:5,自引:4,他引:5  
尹光华  蒋靖祥  张勇 《内陆地震》2003,17(2):109-116
通过对1812年新疆伊犁尼勒克地震的考察研究,认为该地震以地震断层为主体的地表地震形变带展布方向与发震断裂喀什河断裂带的走向一致。喀什河断裂带可分为3段,全长315km,它是由多条断层组成的活动断裂带,总体以逆冲活动为主,东段具有右旋扭错性质。喀什河断裂带具有长期发育的历史,它控制了中生代地层的分布,在新生代仍有多次活动并以垂直运动为主,晚第四纪以来的垂直活动速率为O.9—6mm/a。  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.
通过卫星影像解译、野外实地调查与地质填图,对滇西南地区黑河断裂中西段晚第四纪构造活动特征进行了研究.结果表明,黑河断裂为一条规模较大的区域性活动断裂带,西起沧源县南,向东南止于澜沧江断裂,全长约168 km,走向280°~310°.该断裂晚第四纪新活动性具有一定的差异性和分段性.根据其几何结构、最新活动性及1988年澜沧7.6级地震破裂带特征,可将黑河断裂从西向东划分为沧源-木戛、木戛-南代和南代-勐往三条次级断裂段.其中的中、西段长约88 km,全新世活动显著,活动性质以右旋走滑为主.沿断裂形成了丰富的断错地貌现象.西段断裂的最新活动断错了全新世晚期地层;中段是1988年澜沧7.6级地震的发震断裂之一.根据对断错冲沟的测量和年代测试,得到其全新世以来右旋滑动速率为(3.54±0.78)mm/a,与区域上其它断裂的滑动速率大致相当,反映了其区域构造活动的整体性和协调性.  相似文献   

17.
甘孜-玉树断裂带东南段晚第四纪活动性研究   总被引:3,自引:1,他引:2       下载免费PDF全文
以甘孜-玉树断裂带东南段的地质地貌为研究对象,在遥感解译的基础上,通过对典型地区的详细野外调查和探槽研究对该段晚第四纪活动性进行研究。在断裂沿线的生康乡、仁果乡、错阿乡、日阿乡进行了断错地貌分析和晚第四纪滑动速率计算, 生康区的水平滑动速率为(7.6±0.5)mm/a, 垂直滑动速率为(1.1±0.1)mm/a; 仁果区的水平滑动速率为(8.0±0.3)mm/a,垂直滑动速率为(1.1±0.1)mm/a; 错阿区的水平滑动速率为(10.3±0.4)mm/a; 日阿区的水平滑动速率为(10.8±0.8)mm/a, 垂直滑动速率为(1.1±0.1)mm/a。在仁果乡和错阿乡进行了探槽研究,两处探槽都揭示了多次古地震事件,虽然揭露的断层构造样式有所不同,但总体上都是以走滑为主兼有一定的逆冲分量。综合古地震事件和滑动速率分析表明,甘孜-玉树断裂带东南段晚第四纪尤其是全新世以来活动剧烈。  相似文献   

18.
利用14C、热释光(TL)样品年代及扩散方程计算结果,结合区域黄土剖面中古土壤年龄,对毛毛山地区晚第四纪各级地貌年龄进行了对比研究。根据毛毛山活动断裂水平位移和垂直位移分布明显的分组特征,求得毛毛山断裂带不同段落不同时段的平均滑动速率。大约自中更新世晚期以来,毛毛山断裂走滑段的平均水平滑动速率为2.3~3.9mm/a,垂直滑动速率为0.07~0.19mm/a;天祝盆地倾滑段垂直滑动速率为0.11~0.86mm/a。沿断裂带滑动速率具明显的非均匀性特点,表现为自东向西水平位移具累积滑动亏损特征,垂直位移则具补偿性  相似文献   

19.
礼县 -罗家堡断裂带晚更新世以来有过明显活动。在礼县—罗家堡段和天水镇—街子口段直接错断全新世地层。断裂沿线地表陡坎发育 ,水系被左旋位错。结合沿该断裂带广泛分布的地震滑坡、砂土液化等 ,认为礼县 -罗家堡断裂带是 1654年天水南 8级地震的发震构造。该断裂晚更新世以来的平均水平位错速率为 0 95mm/a ,平均垂直位移速率为 0 35mm/a ,垂直位移速率约为水平位移速率的 1/ 3。这个比值与一次断裂突发性垂直位错量 ( 1 9m)与水平位错量 ( 5 2m)的比值基本吻合  相似文献   

20.
五台山北麓断裂位于山西地堑系北部。本文以五台山北麓断裂繁峙段的地质地貌为研究对象,分别在繁峙县的大峪村和岗里村两地断裂沿线进行了无人机测量。利用三维结构的运动重建技术(Structure from Motion,SfM)进行影像数据处理,得到高精度点云数据,并通过进一步处理获得了分辨率达0.5m的高清断错地貌正射影像(DOM)和数字高程模型(DEM)。通过对典型地区的详细野外调查和挖掘探槽等手段对该段晚第四纪的活动性进行研究,发现断层晚第四纪以来的活动主要是以正倾滑运动为主。同时在五台山北麓断裂沿线的大峪村、岗里村等地进行了断错地貌分析和晚第四纪滑动速率计算,得到约20ka以来的断层垂向滑动速率为0.4—0.6mm/a,近18ka以来该段发生过至少两次古地震事件。古地震事件和滑动速率分析表明,五台山北麓断裂晚第四纪,尤其是全新世以来活动强烈,且不同段落存在明显的活动性差异。  相似文献   

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