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1.
龙门山前山断裂大地震是原地重复发生的吗?针对这一问题,对前山断裂的同震地表形变带进行了追踪,并选择5.12汶川地震区九龙、白鹿以及汉旺等3个地点开展了古地震探槽研究工作。调查结果是: 前山断裂5.12地震地表形变带基本沿1 ∶200000地质图上先存基岩断裂发育,但仅限于通济-安昌以南段; 白鹿-八角一带同震地表形变带继承先存断层陡坎或断层沟谷发育; 偏离先存断裂而被一些学者视为断裂全新世活动重要证据的永安附近T1阶地上线性陡坎实为废弃河岸; 白鹿、汉旺探槽剖面揭示这两个地点5.12汶川地震之前至少有过一次古地震事件。这些研究结果表明前山断裂大地震是沿晚第四纪活动断裂原地重复发生的,此次地震是沿先存活动断裂又一次发生的大地震事件,为大地震原地复发模型提供了一个新的震例支持。在沿该断裂周边进行规划建设时应当合理避让。  相似文献   

2.
岩石磁学能揭示岩石的磁性矿物组合,通过断裂岩不同的磁性矿物组合可揭示地震过程中磁性矿物变化、地震摩擦温度及地震滑移机制等基础地震地质问题。2008年Mw 7.9级汶川地震使两条断裂带同时发生地表破裂,包括映秀-北川和灌县-安县断裂地表破裂带,破裂带上地震断裂岩为岩石磁学提供了大量的研究对象。本研究主要以汶川地震地表破裂带上两个探槽内断裂岩为对象,包括映秀-北川地表破裂带上的八角庙探槽和灌县-安县地表破裂带上的九龙探槽,结合目前已发表的地表及WFSD-1孔的研究成果,从岩石磁学角度探讨汶川地震断裂带经历的地震滑移机制:1综合映秀-北川地震断裂带上八角庙探槽和其它位置的断裂岩岩石磁学研究,结果显示该地震断裂带附近断层泥的高磁化率源于新生的亚铁磁性矿物,如磁铁矿和磁赤铁矿等,故映秀-北川地震断裂曾经历高温快速热增压地震滑移机制;2灌县-安县地震断裂带上九龙探槽内断层泥略低的平均磁化率源于其铁的硫化物含量比断层角砾及侏罗纪砂岩多,铁的硫化物可能源于地震过程或断裂岩抬升到地表后的地表作用,如果断层泥中铁的硫化物多含量源于地震过程,则灌县-安县地震断裂带曾经历低温慢速机械润滑地震滑移机制;3两条断裂经历的不同地震滑移机制可能受控于断裂深部结构,如断层产状,映秀-北川地震断裂带的陡倾角易产生高温快速地震滑移,而灌县-安县地震断裂带的缓倾角更易产生低温慢速地震滑移。  相似文献   

3.
在西藏安多地区进行活动断裂研究过程中,进行地表调查和探槽开挖,证实错那-安多地堑北缘主边界断裂上的最新地表断层陡坎实际是该区史前大地震的地表遗迹。根据地表观察和实地测量结果可知,该区最新古地震断坎的延伸范围可达 26~36km,平均垂直位移量达 1.0~1.4m。相关地层-地貌体的年代学测试结果和古地震破裂参数表明,最新的古地震发生在距今约 10.0~8.1ka期间,估计当时的古地震震级介于 6.9~7.3级之间,当时的极震区烈度可能≥Ⅸ度。此古地震破裂的发现表明,青藏高原中部正断层型大地震之后的沉寂时间可以长达近万年,明显长于藏南裂谷带上的正断层型古地震活动间隔。由于安多地区最新大地震之后的离逝时间已足以积累类似强度的大地震,因此,该区未来的大地震危险性较高。  相似文献   

4.
活断层对城市建设的影响长期以来受到科研人员与城市建设者的重视。活断层避让距离的确定直接影响活动断裂地区建筑物的选址。伴随着中国地下空间开发进入快速发展阶段,活动断裂地区的地下建筑选址问题应运而生。以隐伏活动正断层为例,综合考虑地下建筑震害影响、隐伏活动正断层地区地质背景、断裂活动性以及发震破坏特征,对活断层地区地下建筑的避让问题开展研究。研究表明:地下建筑受活断层发震的影响比地面建筑小,但断裂发震的影响依然需要重视;隐伏正断层破坏范围受多方面的影响因素控制,地下建筑避让距离的划定需以断层变形带的边界为起点进行;结合渭河断裂咸阳段的地质背景与断裂活动特点,确定断层上、下盘的避让距离分别为30 m和15 m,得出渭河断裂咸阳段地下30 m以浅限建带的宽度为140 m。  相似文献   

5.
马金保  张波  王洋  艾晟 《地学前缘》2019,26(2):92-103
活动断层相关地貌特征的定量研究是揭示古地震和断裂属性的重要依据,其中陡坎地貌是断裂活动的重要地貌响应,是有效识别活动断裂的重要地貌标志。近年来,无人机低空遥感观测技术的不断进步,使得高分辨率地貌数据的快速获取成为现实。本研究利用无人机低空遥感地貌观测技术,对张流沟滩处的断层陡坎附近进行高分辨率数字地形数据的采集。断层陡坎位于张流沟滩河流Ⅱ级阶地上,影像采集范围为800 m×400 m的矩形区域。经过一系列的影像处理,最终获取了目标区地面分辨率为0.1 m的DEM(数字高程模型)数据。基于该DEM数据可以提取到正交于断层陡坎的高程、坡度剖面。利用高程剖面所展示的地形地貌信息,可以提取到陡坎高度为(2.81±0.05) m;利用坡度剖面所展示的坡度曲线特征,可以推断该陡坎至少经历过两次断错活动事件,并且陡坎存在向上“凸起样式”。通过探槽解译,确定该陡坎下伏断裂至少发生过两次活动事件,其中较早的地震事件接近(3.68±0.14) ka B.P.,最晚期的地震活动应为1927年古浪8级地震,两次断裂活动累计垂直位移为(2.80±0.2) m。将以上两种研究方法相比较可以发现,探槽结构分析与低空遥感获取的定量化地貌信息分析结果基本一致,均能够有效揭示古地震期次及累计的同震位移量。最终本研究将探槽揭示的地层单元的沉积、构造信息与陡坎坡度数据特征相结合,提出了基于断层传播褶皱模型的“陡坎凸起”地貌响应样式来解释陡坎存在的向上“凸起样式”。实践证明,利用无人机低空遥感地貌观测技术能够定量、半定量化揭示下伏断裂的活动信息,结合传统断裂研究手段,可以更全面解释活动断层的沉积、构造特征及地形、地貌现象。总的来说,无人机低空遥感地貌观测技术的应用可作为传统古地震研究的辅助手段,并有其独特的方法优势。  相似文献   

6.
活动断层是城市地震灾害的重要风险源,准确厘定活动断层的空间几何展布是有效降低城市地震灾害和开展活动断层避让的基础。而城市化建设对原始地貌的严重改造使得原先出露地表的活动断层成为"隐形"断层,难以准确确定断层的几何展布。大同盆地中部的水峪断裂北段位于马铺山东缘,断错地貌明显,但南段进入大同市御东新区被城市建筑物覆盖,成为"隐形"断层。研究基于大同地区1965年历史航片影像资料,结合1∶10000地形图,运用航片像对和航空立体摄影的方法重建了该地区的数字高程模型(DEM)和正射影像(DOM),重点对水峪断裂"隐形"段进行识别和定位,厘定了水峪断裂断层陡坎的几何展布特征。研究结果表明,水峪断裂北段山前陡坎线性特征明显,由影像可以准确解译出断层几何展布位置;水峪断裂南段可基于2000年之前的Keyhole历史遥感影像、DOM与DEM资料,根据断层两侧的颜色差异及陡坎高度差异,精确厘定该段的断层几何展布位置;DEM提取的地形剖面表明"隐形"段陡坎高度在19 m左右。同时,基于野外调查的断层剖面与浅层人工地震剖面证明该陡坎就是水峪断裂的位置,这也表明利用历史航卫片对城市"隐形"活动断层进行精确定位的方法是可行的。该研究不仅为大同地区的地震危险性评估提供了重要依据,而且为城市"隐形"活动断层探测提供了一个新的思路和途径。   相似文献   

7.
巴塘断裂活断层填图中,针对第四系覆盖层较厚,断层出露较差、地表形迹、地貌特征不明显的部位,采取浅层地震勘探方法探测。在上莫西村、松多村至竹巴龙村共布设7条测线,解译浅层地震数据可精确定位活断层位置,查明其几何学特征,工作区内巴塘断裂通过测线处的覆盖层厚度约10~100m,巴塘断裂北端并未止于上莫西村,有往北延伸的趋势。  相似文献   

8.
城市活断层探测地球物理方法与危险性评价   总被引:2,自引:0,他引:2  
城市活断层探测的地球物理方法主要包括人工地震测深、微重力测量、高精度磁测、电法勘探和天然地震观测等。城市活断层地球物理探测的目的是准确查明地表附近活动断层的空间分布,确定其深部延伸情况,探测可能存在的隐伏活动断层,揭示地下介质的特性和深部构造环境,为活断层的地震危险性评价提供依据。  相似文献   

9.
侯建军  梁海华 《地球科学》1995,20(6):697-700
活断层作用产生的地震破裂,曾使地表产生破裂变形,地面建筑物遭到严重破坏,但由于第四纪松散沉积物变形方式复杂,破裂形迹往往不清晰或不显示,使得在探槽剖面上很难发现这些破裂作用的上部形迹,通过研究不同松散沉积层中断层破裂位移的形式,从宏观,细观与微观相结合的角度,初步探讨了探槽剖面上确定古地震破裂时间的标志与方法。  相似文献   

10.
汶川地震对现代河流形态的影响与水文效应   总被引:1,自引:0,他引:1  
2008年5月12日14时28分,我国四川发生里氏8.0级大地震,发震构造为龙门山断裂带.形成了NE向映秀-北川断裂地表破裂带,彭县-灌县断裂破裂带以及NW向的小鱼洞破裂带,表现为逆冲-走滑性质.目前,有关地表破裂、次生地质灾害及堰塞湖等开展了大量的调查工作,而地震对河流形态的影响还缺少较为系统的分析.在野外地震地貌考察的基础上,根据河流走向与断层位置关系,并结合地表破裂特征,总结了汶川地震对现代河流形态影响的几种地貌类型:顺向陡坎跌水,河道错动,断寨湖(塘),河流改道等,并对其演化趋势进行了讨论.分析了汶川地震的河流水文效应:地震增加了河流泥沙含量,改变了河流水质,同时,也使得河流与地下水系统之间的联系更为紧密.  相似文献   

11.
the Kalpin nappe is an important multiple thrust system. It is important to study the Cenozoic tectonic of the Tianshan Mountain. Holocene active characteristics and paleoearthquake of the Kalpin nappe can be used to evaluate the neotectonic of this area. In this paper, we accurately measured the fault scarp in the front of three thrust-fold faults and analyzed paleoearthquake events in the trenches of the Kalpin nappe. Using the 10Be exposure age, we obtained those geomorphic surface ages and paleoearthquake times. The result showed that the slip rates of the west Kalpintag fault, aozitag fault and the tuoketag fault were 1.45(+1.68/-0.44) mm/a, 0.81(+0.35/-0.19) mm/a and (0.3±0.05) mm/a, respectively since the Holocene. The slip rate indicated that the increased activity transferred from back-row fault to front-row fault and accorded with the piggy-back propagation model in the Tianshan Mountain. Displacements and recurrence intervals of paleoearthquakes was similar to the slip rate characteristics. It also showed paleoearthquakes in the front row fault were stronger than paleoearthquakes of the back row fault. The strong paleoearthquake which caused the highest surface rupture happened in the Kalpintag fault. The interval of paleoearthquakes was about 4 ka and the displacement of every paleoearthquake was about 3 m in the west Kalpintag fault; the interval of paleoearthquakes was about 2 ka and the displacement of every paleoearthquake was about 1m in the aozitag fault; the tuoketag fault ruptured only one paleoearthquake since 7 ka. The Piqiang tear fault was the tectonic result of different shortening rate between the west Kalpin system and the east Kalpin system. The shortening rate of west Kalpin system was obviously stronger than the east Kalpin system. The huge separation distance was near 20 km between the east and the west back-row fault. Because the slip rate of system transferred to the front-row fault in the piggy-back propagation model, the separation distance (~4 km) between the east and the west front-row fault was increasing.  相似文献   

12.
This paper reviews the research on active and earthquake faults in Taiwan conducted prior and after the 1999 Chichi earthquake. The Chichi earthquake plays as a turning point of the relevant studies, since the 1999 coseismic surface rupture exactly follows preexisting fault scarps, created in turn by previous seismic events along the Chelungpu Fault. This fact indicates that the precise mapping on the other active faults is fundamental to predict the location of surface rupture caused by large future earthquakes. Since 1999, many trenching studies have been carried out along the Chichi earthquake fault. A few of them demonstrates that the penultimate event is as young as probably only 200–430 years old; however, some others show a rather old age of several hundreds years or even older for the last faulting event before 1999. More trenching studies are necessary for such a long fault in order to understand the possible segmentation features and the correlation of the paleoseismic events identified along the entire fault length. In addition, we further discuss the offshore faulting associated with seismic event along the eastern coast of Taiwan, where the multiple Holocene terraces are well known.  相似文献   

13.
中国活动构造研究的进展与展望   总被引:20,自引:0,他引:20  
邓起东 《地质论评》2002,48(2):168-177
本文试图在世界活动构造研究背景下概括中国活动构造研究的进展,并对最近20年来中国的活动构造研究,包括几何学、滑动速率、古地震和大震重复间隔、分段理论和应用、活动褶皱、深浅构造耦合关系、城市和海域活动构造探测、块体划分和块体运动、地震危险性的未来断裂滑动量评价及中国现代构造活动动力学等进行简要评述,对今后在这些方面的发展进行概略的讨论。  相似文献   

14.
论渭河盆地断块运动及地震活动特征   总被引:1,自引:0,他引:1  
本文根据野外地质调查并综合前人资料,对渭河盆地活动断裂和断块现今活动特征进行了较为详细的论述,对秦岭山前断裂的产状(倾角)提出质疑,提出了北山山前断裂系和秦岭山前断裂系的概念以及运动的差异性,在此基础上,探讨了盆地地震形成模式及其活动特征。  相似文献   

15.
介绍了应用雷达卫星影像对四川龙门山活动断裂开展断错地貌判读结果,展示了龙门山构造带4条分支断裂9个点位的雷达卫星影像图像、11个点位的野外调查结果及6个点位与断层活动性有关的地层测年。在11个野外调查点位中,位于青城山北面4条断裂8个点位均出现2008年5.12汶川MS8.0地震的地表破裂,其中包括沿青川断裂青溪段及金山寺断层沟谷出现的两条地表破裂,沿后山断裂带茂县北断层和汶川南七盘沟断层出现的地表破裂;   沿中央断裂带北川和小鱼洞南2个点位出现的地表破裂;   以及沿前山断裂汉旺台地前缘和青城山山前地表破裂点位。在这些地表破裂中,中央断裂带地表垂直位移为 2~6m,青川断裂、后山断裂和前山断裂多数段地表断错垂直位移量为 10~40cm。后者位移量虽小,也不应被忽视。本项研究结果表明,雷达卫星影像显示青川断裂与后山断裂带和中央断裂带右旋走滑明显。雷达卫星影像实地调查表明,前山断裂带南段的水口场-横山庙断裂带醒目的断错地貌引人注目。  相似文献   

16.
Altyn Tagh fault controls the deformation characteristics of the northern margin of the Qinghai-Tibet Plateau.The sinistral slip rate of the eastern segment of the fault reduces gradually where the reduction transforms into the deformation within Qilian Mountain,forming a series of thrust faults and strike-slip faults.Among them,the Yema River-Daxue Mountain fault is one of the important structural transform faults in the study area.Based on the differences of the geometrical characteristics and activities,the fault is divided into four segments,the Yema River segment,the Shibandun segment,the Liushapo segment and the Baishitougou segment,among which the former three are Holocene active faults,and the Baishitougou segment belongs to late Pleistocene fault.The excavated trenches imply a total of 6 paleoearthquake events,and at least 4 events have occurred during Holocene,whose occurrence times are 8300±700 yr BP,6605±140 yr BP,4540±350 yr BP,2098±47 yr BP,respectively.The recurrence interval is 2600±600 yr BP that is close to the lapsed time of the last one,2098±47 yr BP,which suggests that the Yema River-Daxue Mountain fault is in a high risk of major earthquakes in the future.The vertical coseismic displacements of the four Holocene paleoearthquake events are 100 cm,42 cm,40 cm and 50 cm,respectively,the horizontal coseismic displacements are 5 m,4.5-5.5 m,5-8 m and 4-5.5 m,separately,and then the reference magnitude of the paleoearthquake events is conjectured to be M7.6±0.1.  相似文献   

17.
贺兰山南部构造特征及其与固原-青铜峡断裂的关系   总被引:2,自引:0,他引:2  
贺兰山南部的变形从经历的时间及方式上与贺兰山中北部有比较明显的区别.从构造和地层等方面论证了固原-青铜峡断裂通过贺兰山的具体地点,该断裂通过贺兰山后逐渐转为东西向;宁夏中部地区东西向构造是古生代弧型构造的一部分,由于后期的改造而成为现今的形式.黄河断裂和固原-青铜峡断裂控制了贺兰山南部的构造发育,由这两断层夹持的块体(卫宁北山)在新生代向东运动,在该块体的东部由于东西向的挤压形成了许多构造,一些山体隆起的原因可能是来自西部卫宁北山向东的挤压.  相似文献   

18.
The Quaternary activity of the faults at the eastern end of the Altyn Tagh fault, including the Dengdengshan–Chijiaciwo, Kuantanshan and Heishan faults, was studied on the basis of interpretation of satellite images, trenching, geomorphologic offset measurements and dating. The Altyn Tagh fault has extended eastwards to Kuantanshan Mountain. The left–slip rates of the Altyn Tagh fault decreased through the Qilianshan fault and were transformed into thrust and folds deformation of many NW–trending faults within the Jiuxi basin. Meanwhile, under NE–directed compression of the Tibetan plateau, thrust dominated the Dengdengshan–Chijiaciwo fault northeast of the Kuantanshan uplift with a rate lower than that of every fault in the Jiuxi basin south of the uplift, implying that tectonic deformation is mainly confined to the plateau interior and the Hexi Corridor area. From continual northeastward enlargement of the Altyn Tagh fault, the Kuantanshan uplift became a triangular wedge intruding to the east, while the Kuantanshan area at the end of this wedge rose up strongly. In future, the Altyn Tagh fault will continue to spread eastward along the Heishan and Jintananshan faults. The results have implications for understanding the propagation of crustal deformation and the mechanism of the India–Eurasian collision.  相似文献   

19.
Selecting paleoseismic sites in dynamic, range-front environments can be difficult, because they are sites of rapid deposition and poor preservation of coarse-grained, channelized alluvium. The most obvious tectonic landforms, tall scarps, are often too old to constrain sequences of specific rupture events. The faulted deposits that do provide maximum and minimum earthquake ages, however, are often buried or masked by erosion in active drainage channels. Subsurface images of stratigraphic and structural relationships at multiple sites are useful prior to excavation. Ground-penetrating radar (GPR) is an effective tool for locating sites suitable for trenching studies. We illustrate the utility of GPR with a case study of a thrust fault in southern California.  相似文献   

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