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1.
盘谷寺-新乡断裂是太行山南缘1条规模较大、切割较深的隐伏活动断裂。为了查明盘谷寺-新乡断裂的位置、性质、断裂构造特征及其活动性,跨推测的隐伏断裂布设了6条浅层地震测线,通过采用高分辨率地震数据采集技术和高精度的数据处理方法,获得了清晰的地下结构和断裂构造图像。结果表明,盘谷寺-新乡断裂是1条走向近EW的第四纪活动断裂,且断裂不同段的构造特征是不同的。断裂中段为S倾的正断层,控制了济源凹陷的北边界;东段向N倾,是武陟隆起和修武凹陷的分界断裂。浅层地震剖面揭示的断裂上断点埋深为60~70m,错断了上更新统下部,推测其活动时代为晚更新世早期。研究结果为确定盘古寺-新乡断裂的位置及其活动性评价提供了可靠的地震学资料。  相似文献   

2.
深井盆地南缘断裂特征与活动性研究   总被引:1,自引:0,他引:1  
深井盆地是山西断陷盆地带北段内部一个规模很小的次级盆地,为中更新世以来发育的三角型山间小型盆地。盆地附近断裂发育,构造复杂,深井盆地南缘断裂为主控边界断裂,控制着盆地的发展演化。本文通过对地形地貌、断裂剖面、地层测年及地震活动等方面的分析和研究,获得了断裂活动时代和活动速率等参数,综合阐述了断裂的空间展布及活动特征。研究表明:深井盆地南缘断裂晚第四纪期间仍在活动,最新活动时代为晚更新世晚期;断裂具有分段性,西段长约6km,多处可见断裂错断晚更新世地层剖面,属正断倾滑性质;东段表现为盆地与黄土斜坡直接接触,由西向东断裂地貌表现逐渐减弱,未见明显的断裂剖面,止于NW向构造,附近发生的4次4 3/4级地震与该段断裂关系密切。  相似文献   

3.
五峰山-西来桥断裂和丹徒-建山断裂是镇江地区2条主要的NW向断裂,可能与镇江多次破坏性地震相关。文中通过浅层地震勘探和钻孔联合剖面探测方法,对五峰山-西来桥断裂和丹徒-建山断裂的展布特征及第四纪活动性进行了系统研究。五峰山-西来桥断裂在浅层地震剖面上倾向NE,倾角约为60°,断距约为5~9m,以正断活动为主;大路镇场地上,该断裂断错的最新地层为中更新统底部,位错量为2m,判断五峰山-西来桥断裂的最新活动时代为中更新世早期。丹徒-建山断裂在浅层地震剖面上倾向SW,倾角约为50°~55°,断距约为2~7m,以正断活动为主;访仙镇场地上,中更新统之上的地层没有被断错的迹象,中更新统底部可能被断层影响,判断丹徒-建山断裂的最新活动时代为早更新世—中更新世早期。  相似文献   

4.
新乡-商丘断裂是河南省中北部一条规模较大、切割较深的区域性隐伏断裂,为查明新乡-商丘断裂永城段的浅部构造特征和上断点最新活动时代,在永城段开展浅层人工地震勘探工作,获得2条高分辨率、高信噪比的地震反射剖面,通过地震勘探和钻孔联合剖面探测,并结合区域地质资料对新乡-商丘断裂永城段的上断点位置及活动性进行研究,揭示本断裂上断点进入了第四系上更新统底界,推测其最新活动时代为晚更新世早、中期,是一条隐伏活动断裂。  相似文献   

5.
天津汉沽隐伏断裂属于滨海平原区隐伏断裂。本文采用化探、浅层地震勘探和联合钻孔剖面探测等方法,并结合年代样品测试对汉沽断裂进行了综合探测研究,首次查明了汉沽断裂的准确空间位置和晚第四纪活动性。探测结果表明,汉沽隐伏断裂最新上断点埋深25. 8m,断距为2. 15m。结合光释光年代样品测试结果,推断其最新活动时代为49. 3ka ~ 65kaBP,属晚更新世中期活动断裂。由于该断层是与主断层倾向相反的次级断层,可能并不是震源断层错动在地表的直接反映,同时汉沽断裂晚更新世早期以来的平均滑动速率为0. 063mm / a,明显低于海河断裂东段晚更新世以来0. 141mm / a 的平均滑动速率,这都表明汉沽隐伏断裂的活动强度并不是很大,应是一具有中等活动强度的活动断裂。  相似文献   

6.
浅层地震勘探和联合钻孔剖面综合探测是研究城市隐伏活动断裂的重要方法之一,为查明太原盆地田庄活动断裂的空间展布、活动性质及活动时代等地质特征,综合浅层地震勘探、联合钻孔剖面、测年方法对断裂全段空间展布进行了精确定位,对断裂活动性进行了精细分析,给出了断裂几何特征及活动性分段研究结果.研究表明田庄断裂全长33.5 km,断裂全段均发育北支及南支断裂,主断裂为北支断裂,断面近似呈"Y"及"N"字形结构特征.根据断裂几何特征及活动性差异可将断裂划分为四段,其中断裂中段及中-东转折段最新活动时代为晚更新世晚期,最小上断点埋深分别为39.3 m及37.4 m,晚更新世以来断裂平均滑动速率为0.0283~0.0292 mm/a,最大滑动速率为0.0326~0.0415 mm/a;断裂东段最小上断点埋深为63.5 m,最新活动时代为中更新世晚期,中更新世晚期以来最大滑动速率为0.0134 mm/a,平均滑动速率为0.0092 mm/a;断裂西段最新活动时代为中更新世中期;断裂中段及中-东转折段活动性明显大于断裂西段及东段.首次基于联合钻孔剖面及浅层地震勘探方法查明了田庄断裂中段、中-东段及东段的活动性质,查明了田庄断裂全段的精确空间展布,首次提出了断裂的分段模式并进行了断裂活动性及活动速率研究,首次对断裂全段的浅部构造特征进行了精细研究,填补了田庄断裂全段基底以上地质结构特征研究的空白.研究结果可以为太原盆地城市防震减灾规划、震害预测、区域性地震安全评价提供重要的技术支撑.  相似文献   

7.
在山东半岛北部近海海域进行了多条剖面的声波探测,初步查明了蓬莱-威海断裂带的基本活动特征.该断裂带由一系列北西走向的次级断层组成,主体在长岛至大竹岛之间的海域,多数断层以正断兼有走滑运动为主,部分断层具有逆冲运动性质.断裂带在第四纪活动明显,以北东向桃村-东陡山断裂在海域的延伸段为界,蓬莱-威海断裂带可分为两段:长岛-烟台段和烟台-威海段.西段长岛-烟台段为晚更新世活动段,多数次级断层上断点埋深位于海底以下30m,明显错断了中更新世地层,部分断层明显错断了晚更新世早期地层,有些断层达到晚更新世地层中部,但没有发现全新世地层错动现象.东段烟台-威海段为中更新世活动段,没有发现晚更新世地层错断现象.蓬莱-威海断裂带对历史地震和现代小震活动具有明显控制作用,其中1548年7级地震发生于断裂带西段,1948年6级地震发生于断裂带东段.蓬莱-威海断裂带与北东向断裂交汇区是中强地震发生的有利部位.  相似文献   

8.
太行山山前断裂带中北段晚第四纪活动性研究   总被引:4,自引:2,他引:2  
本文通过浅层地震勘探和钻孔联合剖面探测,对太行山山前断裂中北段内相关断裂的空间位置和晚第四纪活动性进行了探测和研究。综合认为,保定-石家庄断裂和徐水断裂的最新活动时代为晚更新世早期,而徐水南断裂晚更新世以来没有活动。上述断裂的最大潜在地震震级为6.5级。  相似文献   

9.
新乡-商丘断裂是南华北盆地与渤海湾盆地、鲁西隆起的分界断裂,是一条长期活动的区域性深大断裂。浅层地震勘探与跨断层钻孔联合剖面探测工作已证实该断裂延津至封丘段的最新活动时代为晚更新世,本文通过对典型地震勘探剖面和钻探资料综合分析认为:新乡-商丘断裂延津至封丘段断裂结构复杂,新近纪以来构造样式在不同构造部位有显著差异。延津段在地震勘探剖面上浅部显示为负花状构造;封丘段变化较大,东部在剖面上为多组阶状正断层组合,形成了由断层带控制的构造背斜,平面上表现为NW向排列、走向NNE雁列状断层组合;西部结构单一,自东向西断裂控制的浅部地层变形范围增大,断层带逐步变宽。根据新乡-商丘断裂延津至封丘段剖面上的构造样式与平面上的组合模式,表明该段断裂最新活动具有走滑运动性质。  相似文献   

10.
莱州湾海域郯庐断裂带活断层探测   总被引:21,自引:0,他引:21       下载免费PDF全文
利用浅地层剖面仪对郯庐断裂带莱州湾段进行了活断层探测,发现郯庐断裂带主干断裂在第四纪晚期以来具有明显的活动,继承了晚第三纪以来的主要构造活动特点,仍是这一区域的主导性构造. 西支KL3断裂由多条高角度正断裂组成,最新活动时代为晚更新世晚期至全新世早期,受到一系列错断晚更新世晚期沉积的北东或近东西向断裂的切割;东支龙口断裂由两段右阶斜列的次级断层组成,沿断裂带不但有明显的晚第四纪断错活动,而且还发育北北东向晚第四纪生长褶皱,表现出明显的晚更新世晚期至全新世活动特征. 在山东陆地区也发现了与龙口断裂相对应的安丘——莒县断裂,安丘段由一系列右阶斜列的次级断层组成. 从安丘向北至莱州湾凹陷,郯庐断裂带东支活断层构成了一条右旋单剪变形带,每一个次级活断层段相当于带内理论上次级压剪面,在第四纪晚期以来仍以右旋走滑活动为主要特征.   相似文献   

11.
Pangusi-Xinxiang Fault is a great-scale, deep-incising buried active fault in the southern margin of the Taihang Mountains. In order to find out the location, characteristics, structure and activities of Pangusi-Xinxiang Fault, shallow reflection profiles with six lines crossing the buried faults were carried out. In this paper, based on the high-resolution seismic data acquisition technology and high-precision processing technology, we obtained clear images of underground structures. The results show that Pangusi-Xinxiang Fault is a near EW-trending Quaternary active fault and its structural features are different in different segment. The middle part of the fault behaves as a south-dipping normal fault and controls the north boundary of Jiyuan sag; The eastern part of the fault is a north-dipping normal fault and a dividing line of Wuzhi uplift and Xiuwu sag. The shallow seismic profiles reveal that the up-breakpoint of the Pangusi-Xinxiang Fault is at depth of 60~70m, which offsets the lower strata of upper Pleistocene. We infer that the activity time of this fault is in the lower strata of late Pleistocene. In this study, not only the location and characteristics of Pangusi-Xinxiang Fault are determined, but also the reliable geological and seismological evidences for the fault activity estimation are provided.  相似文献   

12.
温塘断裂位于鄂尔多斯块体东南缘,是三门峡盆地的东边界控制断裂,准确厘定其活动性对于理解区域构造演化和判断三门峡地区地震危险性具有重要意义。运用野外地质地貌调查、联合钻孔剖面探测及光释光定年技术,对三门峡地区温塘断裂的活动性进行分析与研究。结果表明,温塘断裂南段出露地表,线性特征明显,断层最新活动时代为晚更新世;温塘断裂中段为第四纪隐伏断裂,断层活动时代为中更新世;温塘断裂北段断层出露,断层活动时代为中更新世。  相似文献   

13.
The Tan-Lu Fault Zone(TLFZ), a well-known lithosphere fault zone in eastern China, is a boundary tectonic belt of the secondary block within the North China plate, and its seismic risk has always been a focus problem. Previous studies were primarily conducted on the eastern graben faults of the Yishu segment where there are historical earthquake records, but the faults in western graben have seldom been involved. So, there has been no agreement about the activity of the western graben fault from the previous studies. This paper focuses on the activity of the two buried faults in the western graben along the southern segment of Yishu through combination of shallow seismic reflection profile and composite drilling section exploration. Shallow seismic reflection profile reveals that the Tangwu-Gegou Fault(F4)only affects the top surface of Suqian Formation, therefore, the fault may be an early Quaternary fault. The Yishui-Tangtou Fault(F3)has displaced the upper Pleistocene series in the shallow seismic reflection profile, suggesting that the fault may be a late Pleistocene active fault. Drilling was implemented in Caiji Town and Lingcheng Town along the Yishui-Tangtou Fault(F3)respectively, and the result shows that the latest activity time of Yishui-Tangtou Fault(F3)is between(91.2±4.4)ka and(97.0±4.8)ka, therefore, the fault belongs to late Pleistocene active fault. Combined with the latest research on the activity of other faults along TLFZ, both faults in eastern and western graben were active during the late Pleistocene in the southern segment of the Yishu fault zone, however, only the fault in eastern graben was active in the Holocene. This phenomenon is the tectonic response to the subduction of the Pacific and Philippine Sea Plate and collision between India and Asian Plate. The two late Quaternary active faults in the Yishu segment of TLFZ are deep faults and present different forms on the surface and in near surface according to studies of deep seismic reflection profile, seismic wave function and seismic relocation. Considering the tectonic structure of the southern segment of Yishu fault zone, the relationship between deep and shallow structures, and the impact of 1668 Tancheng earthquake(M=8(1/2)), the seismogenic ability of moderate-strong earthquake along the Yishui-Tangtou Fault(F3)can't be ignored.  相似文献   

14.
Introduction The Tanlu fault zone, the largest active structure in the eastern region of China, is character-ized by right lateral strike-slip movement with dip-slip component in the Quaternary; it shows great significance for the modern seismicity (FANG et al, 1976; Institute of Geophysics, China Earthquake Administration, 1987; GAO et al, 1980; MA, 1987; LI, 1989; CHAO et al, 1995). The Tanlu fault zone is the boundary between the Jiaoliao block and the North China Plain block of …  相似文献   

15.
山西峨嵋台地北缘断裂是汾渭断陷带内临汾-侯马盆地与峨嵋台地隆起之间的边界断裂,对临汾-侯马盆地内的侯马次级盆地具有控制作用。该断裂自西向东分为西、中、东3段,西段为早中更新世活动,中段为全新世活动,东段为晚更新世活动。在断裂中段的任庄村和金沙村附近开挖了两个探槽,通过对探槽所揭露的古地震事件的年代学分析,结合前人研究结果,认为峨嵋台地北缘断裂全新世发生过A1及A2两次古地震事件,年代分别为466a BC、约4.6ka BP。事件A1即史料记载的466a BC晋空桐地震,震级可能达71/2级。  相似文献   

16.
The NE-trending Xinyi-Lianjiang fault zone is a tectonic belt, located in the interior of the Yunkai uplift in the west of Guangdong Province, clamping the Lianjiang synclinorium and consisting of the eastern branch and the western branch. The southwestern segment of the eastern branch of Xinyi-Lianjiang fault zone, about 34km long, extends from the north of Guanqiao, through Lianjiang, to the north of Hengshan. However, it is still unclear about whether the segment extends to Jiuzhoujiang alluvial plain or not, which is in the southwest of Hengshan. If it does, what is about its fault activity? According to ‘Catalogue of the Modern Earthquakes of China’, two moderately strong earthquakes with magnitude 6.0 and 6.5 struck the Lianjiang region in 1605 AD. So it is necessary to acquire the knowledge about the activity of the segment fault, which is probably the corresponding seismogenic structure of the two destructive earthquakes. And the study on the fault activity of the segment can boost the research on seismotectonics of moderately strong earthquakes in Southeast China. In order to obtain the understanding of the existence of the buried fault of the southwestern segment, shallow seismic exploration profiles and composite borehole sections have been conducted. The results indicate its existence. Two shallow seismic exploration profiles show that buried depth of the upper breakpoints and vertical throw of the buried fault are 60m and 4~7m(L5-1 and L5-2 segment, the Hengshan section), 85m and 5~8m(L5-3 segment), 73m and 3~5m(Tiantouzai section), respectively and all of them suggest the buried fault has offset the base of the Quaternary strata. Two composite borehole sections reveal that the depth of the upper breakpoints and vertical throws of the buried segment are about 66m and 7.5m(Hengshan section) and 75m and 5m(Tiantouzai section), respectively. The drilling geological section in Hengshan reveals that the width of the fault could be up to 27m. Chronology data of Quaternary strata in the two drilling sections, obtained by means of electron spin resonance(ESR), suggest that the latest activity age of the buried fault of the southwestern segment is from late of early Pleistocene(Tiantouzai section) to early stage of middle Pleistocene(Hengshan section). Slip rates, obtained by Hengshan section and Tiantouzai section, are 0.1mm/a and 0.013mm/a, respectively. As shown by the fault profile located in a bedrock exposed region in Shajing, there are at least two stages of fault gouge and near-horizontal striation on the fault surface, indicating that the latest activity of the southwestern segment is characterized by strike-slip movement. Chronology data suggest that the age of the gouge formed in the later stage is(348±49) ka.  相似文献   

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