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1.
依据山前洪积扇顶部的扇形地形和向下游方向逐渐降低的地形特征,文中首先分析了断层面直立、向河流上游倾斜、向河流下游倾斜3种条件下左旋走滑断层错动在洪积扇顶部形成的断层陡坎的坡向和高度变化.其次,分析了左旋逆走滑断层、左旋正走滑断层在不同断层倾向条件下,断层错动在洪积扇顶部形成的断层陡坎的坡向和高度变化.利用无人机实测地形...  相似文献   

2.
崔黎明  汪一鹏 《地震地质》1990,12(1):87-95,T021
本文通过对洪积扇断层崖上升盘冲沟裂点位置的实测和研究,讨论了贺兰山东麓地区影响裂点溯源迁移速率的主要因素,建立了这一地区裂点位置与形成年龄关系的公式。据此确定贺兰山东麓断层全新世以来至少发生过三次类似1739年平罗大地震的古地震事件,强震的重复间隔时间大约在2500年至3500年  相似文献   

3.
罗云山山前断裂中段土门-贾朱村晚第四纪断错地貌特征   总被引:2,自引:0,他引:2  
罗云山山前断裂位于山西临汾盆地西侧,控制着盆地的西界。通过对该断裂1∶ 5万地质填图、对河流冲沟阶地及山前断错地貌的调查,介绍了罗云山山前断裂中段土门-贾朱村晚第四纪断错地貌特征。罗云山山前发育D1、D2、D3 等3 级洪积扇,罗云山山前断裂上升盘冲沟发育T1 ~ T5 等5 级阶地。D1 洪积扇与T1、T2 阶地形成于全新世早中期;D2 洪积扇与T3 阶地形成于晚更新世中晚期;D3 洪积扇与T4、T5 阶地形成于中更新世中晚期。罗云山山前断裂中段不同部位断错地貌特征差异较大,D1 洪积扇的断错在席坊沟一带断距约2. 9m;在金殿镇峪口村南西山前断错约3m。D2 洪积扇的断错在土门镇南西堡子村约2. 5m;在杨家庄村西山前断错约4m;在景村西山前断错约6m;在襄陵镇浪泉沟南西侧山前断错约7. 7m。罗云山山前断裂中段山前断错地貌明显,其最新活动时代为全新世。其中,土门段最新活动时代为全新世早期,龙祠段最新活动时代为全新世中晚期。罗云山山前断裂中段晚更新世中晚期以来活动速率为0. 18~ 0. 54mm / a,由北向南活动呈增强趋势;全新世早中期以来活动速率为0. 4 ~ 0. 9mm / a,断裂活动主要集中于席坊沟-峪口一带。罗云山山前断裂中段从晚更新世中晚期到全新世活动速率有增大的趋势,这与该断裂上升盘冲沟阶地从晚更新世中晚期到全新世抬升速率有增大的趋势以及临汾盆地从晚更新世晚期到全新世沉降速率也有增大的趋势具有较好的一致性。  相似文献   

4.
陈正位  谢平  申旭辉  曹忠权  洪顺英  荆凤 《地震》2007,27(3):131-138
热隆盆地是亚东-谷露裂谷系南部, 由宁金抗沙西麓断裂控制的断陷盆地, 根据野外地质调查、 遥感(RS)和数字高程模型(DEM)分析, 盆地内发育有三期洪积扇, 形成时代分别在中更新世中期(第一期)、 中更新世中期至晚更新世早期(第二期)、 晚更新世晚期(第三期)。 这三期洪积扇的发育分别对应于间冰期和间冰阶的高温大降水时期, 表明在第四纪以来, 由于间冰期与间冰阶期的到来, 温度升高, 降雨量增加, 地表径流作用增强, 先成洪积扇被破坏, 新洪积扇形成。 盆地内自中更新世中晚期以来剥蚀程度自北向南减弱, 表明在整体抬升的背景下, 由于宁金抗沙西麓断裂的活动, 使得盆地北部基岩抬升速率大于南部, 形成自北向南的掀斜。  相似文献   

5.
研究天山地区活动逆冲断裂、褶皱对于认识整个天山再生造山带的隆升和地震危险性评估具有重要意义。以天山北麓博乐盆地南缘库松木楔克断裂东段勒塔干褶皱为研究对象,通过无人机航拍提取高精度DEM和野外实地调查结果,将勒塔干背斜东部迪里克河附近的洪积扇分为5期,从新到老分别为T1、T2、T3、T4、T5。其中,T4洪积扇完整记录了褶皱的变形历史,其后翼褶皱陡坎高度为(8.1±0.6)m。自T4洪积扇废弃以来,勒塔干断层的滑移量为(33.0±2.6)m。T3洪积扇仅发育在迪里克河出水口处,即勒塔干背斜北侧,(16.9±0.2)m的断层陡坎高度揭示了自T3洪积扇废弃以来,控制背斜形成的逆断层发生了21.4~21.7 m的滑动。通过与相邻地区洪积扇期次进行对比,认为T4洪积扇的废弃年龄为(74.01±6.14)ka,勒塔干背斜下断坡晚第四纪滑动速率为(0.45±0.05)mm/a,勒塔干褶皱晚第四纪地壳缩短速率为(0.37±0.04)mm/a。  相似文献   

6.
蔚广盆地南缘断裂带唐山口段山前断层活动性研究   总被引:1,自引:0,他引:1  
蔚广盆地是山西地堑系北端京西北盆岭构造区内的一个半地堑盆地,蔚广盆地南缘断裂带为控制该盆地形成的边界断裂。该断裂带位于唐山口段的山前断裂在冲洪积扇体上形成了线性特征显著的断层陡坎。横跨断层陡坎开挖的探槽表明该条山前断裂属于全新世活动断裂,探槽揭示了2条活动断层以及相应的3次古地震事件。在距今约9ka时其中一条断层首次活动,之后在距今约7.3ka时该条断层再次活动并引发了另一条断层的形成与同步活动。最后它们又发生了第三次活动,而最新一次活动的时间由于相应地表沉积的缺失而无法获得。这3次古地震事件的累积垂直位错约为8.1m。估算出整条山前断裂的平均复发周期约为1.7ka、平均滑动速率约为1.6mm/a。此外还依据经验公式估算出了各次古地震的参考震级。  相似文献   

7.
初论贺兰山前洪积扇断层陡坎   总被引:2,自引:0,他引:2       下载免费PDF全文
银川盆地是个四周被断裂围限的新生代地堑,活动断层屡见不鲜。地堑西侧的洪积扇上,多处见有陡坎,著名的红果子沟长城错动正位于两条洪积扇陡坎上。但是,盆地中最长、最壮观的还是贺兰山中段苏峪口外的洪积扇陡坎(图1)。此陡坎曾被一些研究者推测为断层。但另一些地质学家由于没有直接见到断层面和其  相似文献   

8.
通过对新疆博—阿断裂带中东段的实地调查,发现断裂在吐鲁番盆地西南山前冲洪积扇上形成了冲沟右旋错动、断层陡坎、挤压隆起等与断裂活动相关的典型断错地貌。对比区域地貌面的分布和年龄,并结合测年结果,认为研究区内主要分布了3期冲洪积扇,并对应3级河流阶地。实测Fan3冲洪积扇上冲沟的最大右旋位错达40.8 m,其余分布在22~27 m区间内,Fan2冲洪积扇上冲沟的右旋位错达26.5 m,结合光释光年代样品的测试结果,得到1.8万年以来断裂平均右旋走滑速率为(1.42±0.18)mm/a。  相似文献   

9.
通过对博罗可努断裂精河—阿拉山口段微地貌的实地调查 ,发现该断裂错断精河东南到阿拉山口之间的晚更新世冲洪积扇 ,地表留下了冲沟和山脊同步右旋位错、断层陡坎、断层鼓包、拉分盆地等与断层活动有关的微地貌。精河东南冲洪积扇上大冲沟的最大右旋位移为 50 0m ,平均4 0 0m。断层陡坎上的纹沟右旋位移为 2 6~ 4 0m ,较大级别的纹沟位移可分为 5 7m ,8 3m和 15 3m3组。它们大致为 3的整数倍。实测断层陡坎的高度分别为 1 2m ,2 51m和 3 6 3m ,大致是 1 2的整数倍 ,阿拉山口西南断层的水平位移为 1~ 1 7m ;垂直位移可分为两组 ,一组为 0 55m ,另一组为 1 2~ 1 5m。这些数据可能揭示了该断裂段的特征地震水平位移为 3m ,垂直位移为 1 2m。区域地貌对比和年代学分析得出 ,精河东南冲洪积扇的最后形成时代为距今 7万a左右 ,右旋滑动速率为4 7mm/a。  相似文献   

10.
杨晓平  沈军 《地震地质》2000,22(3):305-315
通过对博罗可努断裂河-阿拉山口段微地貌的实地调查,发现该断裂错情河东南到阿拉山口之间的晚更新世冲洪积扇,地表留下了冲沟和山脊同步右旋位错、断层陡坎、断层鼓包、拉分盆地等与断层活动有关的微地貌。精河东南冲洪积扇上大冲沟的最大右旋位移为500m,平均400m,断层陡坎上的纹沟右旋位移为2.6~4.0m,较大级别的纺沟位移可分为5.7m,8.3m和15.3m3组,它们大致为3的整数倍。实测断层陡坎的高度  相似文献   

11.
太原盆地及周边地区双差层析成像   总被引:2,自引:0,他引:2       下载免费PDF全文
山西断陷带位于鄂尔多斯与华北地块交汇处,是我国著名的历史强震活动带之一,尤其是断陷盆地中部区域,6级以上地震频发.本研究旨在揭示忻定盆地中南部、太原盆地及临汾盆地中北部交汇处的深部结构特征,分析盆地的形成和演化,探讨该区域孕震环境.利用山西地震台网观测数据以及固定地震台站融合流动台站得到的地震数据,共7455个地震事件,采用双差层析成像方法,反演得到了太原盆地及周边地区的三维P波速度结构及精定位结果.层析成像结果显示,忻定盆地、太原盆地的中上地壳为明显的低速异常,被高速的石岭关隆起隔开,深部结构特征相对简单.太原盆地、临汾盆地及灵石隆起之间的深部结构特征较为复杂,反映了两个盆地演化过程的复杂性.穿过忻定盆地的速度剖面显示,在中地壳存在明显的低速异常体,且大部分地震都发生在该低速体上方;穿过太原盆地北部的剖面显示,该区域在20~25 km深度范围内有较密集的地震分布,并勾画出交城断裂呈犁形的断层特征;穿过太原盆地中部的剖面显示,太原盆地自西向东沉积层逐渐减薄;穿过临汾盆地的剖面揭示,汾东断裂在浅部倾角较陡,随深度增加倾角逐渐变小,倾向向东.  相似文献   

12.
通过对山西数字测震台网不同时期的监测能力进行对比,发现,台网的监测能力在不断地提高。对山西省地区的监控能力达到2.0级,大同盆地、太原盆地的监控能力达到1.5级,忻定、临汾、运城盆地的监控能力达到1.5~2.0级。说明山西数字测震台网的建设从布局上侧重了对山西活动构造的监测,目前对山西大部分活动断裂带的监测能力都在1.5级,对今后的地震监测预报研究和防震减灾工作有着重要的意义。  相似文献   

13.
Introduction The Taigu fault is located on the eastern boundary of the Jinzhong basin in the Shanxi fault depression system, which is one of the 12 major active basin boundary faults, and is also less studied among them. The reason for this is, firstly, the Jinzhong basin has no historical earth-quakes with M 7, while the two basins linked together in the northern and southern sides, the Linfen and Xinding basins all have had historical earthquakes with M 7; secondly, because the Jiaochen…  相似文献   

14.
The Fen-Wei rift is composed of a series of Cenozoic graben basins, which extends in an S-shape and strikes mainly NNE. Two distinct types of basins are defined in the Fen-Wei rift. The NEE-striking basins(or basin system) are bounded by active faults of mainly normal slip while the NNE-striking basins are characterized by their dextral strike-slip boundary faults. The adjacent NEE-striking basins(or basin systems) are linked by the arrangement of NNE-striking basins and horsts that is called the linking zone in this study. The segmentation of the Fen-Wei rift shows that the geometry and the activity of different rift segments are varied. The southern and northern rift segments strike NEE and are characterized by tensile movement while the central rift segment strikes NNE with transtensional motion. Previous field surveys show that the ages of the Cenozoic basins in the Fen-Wei rift are old in the southern rift segment, medium in the northern rift segment, and young in the central rift segment. The sizes of linking zones are large in the central rift segment, medium in the northern rift segment, and small in the southern rift segment. In addition, the east tip of Xinding Basin propagates towards NEE along the northern rift segment and the west tip of the basin grows towards NNE, while the shape of Linfen Basin is almost antisymmetric with respect to the Xinding Basin. However, the previous laboratory or numerical simulations cannot explain these features because they didn't pay enough attention to the control of the rift segmentation on the evolution of NEE-striking basins and their linking zones. In this study, based on the previous field studies, we study the fracture process of a clay layer under the segmented dextral transtension of the basement. The spatiotemporal evolution of the deformation field of the clay layer is quantitatively analyzed via a digital image correlation method. The experiment reproduced the main architecture of the Fen-Wei rift. The results show that:(1) The chronological order of basin initiation and the different sizes of linking zones in deferent rift segments are caused by the different obliquity angles(the angle between the rift trend and the displacement direction between the opposite sides of the rift) among the southern, northern and central rift segments.(2) The interaction between adjacent NEE-striking basins leads to the formation of NNE-striking linking zones.(3) The interaction between adjacent rift segments may cause the special distribution of Xinding and Linfen Basins. Thus, we propose that the differences of the Fen-Wei rift segments are mainly controlled by the different obliquity angles. The lack of considering the influences of pre-exiting structures leads to the limited simulation of the details within the southern and northern segments of the Fen-Wei rift. Further studies may improve the model if this is taken into account.  相似文献   

15.
忻定盆地周缘山地的层状地貌与第四纪阶段性隆升   总被引:2,自引:1,他引:1  
忻定盆地位于汾渭地堑系北段,是一个典型的新生代张性断陷盆地,其周缘由持续隆升的断块山地围绕。断块山地的阶段性隆升在山麓地带形成了由山麓剥蚀面与河流阶地构成的6级联合地貌面,并在山区河段形成了由急流段与缓流段相间分布的河流纵剖面形态,急流河段的最高点对应阶地在上游方向上的消失点。急流段由多级跌水组成,是断层多期地表错动的结果,代表了山地快速隆升时期,而缓流河段代表了山地相对稳定期。根据河流阶地的断代以及急流河段与缓流河段的相对长度估算了山地阶段性隆升的时代,4个快速隆升期分别距今1200~1059ka,600~501ka,130~103ka,20~0ka,其间为3个相对稳定期  相似文献   

16.
最新调查结果表明,太谷断裂断错山前冲沟Ⅰ级阶地以及在黄土台地前缘形成断坎,在地表及探槽中多处见到断裂断错全新世地层,断裂的最新活动是1303年洪洞8级地震,活动方式为右旋走滑兼正倾滑活动. 在该次地震中,太谷断裂与灵石隆起上的绵山西侧断裂、临汾盆地东边界的霍山山前断裂一起活动,形成长约160 km的地表破裂带. 除此之外,该断裂曾在全新世中期及距今7 700年以后有过活动. 由此得到,在山西断陷系,两个断陷盆地边界断裂的贯通活动发生8级特大大震.   相似文献   

17.
The Taigu fault zone is one of the major 12 active boundary faults of the Shanxi fault-depression system, located on the eastern boundary of the Jinzhong basin. As the latest investigation indicated, the fault zone had dislocated gully terrace of the first order, forming fault-scarp in front of the loess mesa. It has been discovered in many places in ground surface and trenches that Holocene deposits were dislocated. The latest activity was the 1303 Hongdong earthquake M=8, the fault appeared as right-lateral strike-slip with normal faulting. During that earthquake, the Taigu fault together with the Mianshan western-side fault on the Lingshi upheaval and the Huoshan pediment fault on the eastern boundary of the Linfen basin was being active, forming a surface rupture belt of 160 km in length. Moreover, the Taigu fault were active in the mid-stage of Holocene and near 7 700 aB.P. From these we learnt that, in Shanxi fault-depression system, the run-through activity of two boundary faults of depression-basins might generate great earthquake with M=8.  相似文献   

18.
The Taigu fault zone is one of the major 12 active boundary faults of the Shanxi fault-depression system, located on the eastern boundary of the Jinzhong basin. As the latest investigation indicated, the fault zone had dislocated gully terrace of the first order, forming fault-scarp in front of the loess mesa. It has been discovered in many places in ground surface and trenches that Holocene deposits were dislocated. The latest activity was the 1303 Hongdong earthquake M=8, the fault appeared as right-lateral strike-slip with normal faulting. During that earthquake, the Taigu fault together with the Mianshan western-side fault on the Lingshi upheaval and the Huoshan pediment fault on the eastern boundary of the Linfen basin was being active, forming a surface rupture belt of 160 km in length. Moreover, the Taigu fault were active in the mid-stage of Holocene and near 7 700 aB.P. From these we learnt that, in Shanxi fault-depression system, the run-through activity of two boundary faults of depression-basins might generate great earthquake with M=8. Foundation item: Chinese Joint Seismological Science Foundation (201017). Contribution No. 2003A004, Institute of Crust Dynamics, China Earthquake Administration.  相似文献   

19.
河流阶地面是一种时间性、连续性非常高的层状地貌面,利用跨断层地区的河流阶地变形可以定量地判别一个地区的断层活动性。青衣江横跨龙门山断裂带南段是一条区域性大河,由于龙门山南段构造活动强烈且河流阶地被侵蚀程度严重,为了在室内更好、更快地解译青衣江河流阶地,使野外调查工作更具有针对性,本文在龙门山南段青衣江流域小关子至飞仙村一段,采用航测遥感技术制作的2m分辨率DEM和1/5万数字高程模型,基于Arc GIS和MATLAB平台进行了阶地面提取和聚类分析,以模拟野外测量阶地的流程,试图通过计算机提取,快速获取该地区更多的残余地貌面,建立起较为完整的河流阶地纵剖面。研究结果表明:野外测量数据与计算机自动提取结果相似度较高,具有较好的一致性;在完整的阶地剖面中发现了芦山盆地内部阶地具有疑似拱曲现象;在大川-双石断裂附近阶地有翘起现象,推测芦山盆地西缘阶地拱曲是由大川-双石断裂东侧的一条未知断层引起的,大川-双石断裂附近阶地的翘起现象可能是在断层逆冲推覆过程中形成的,同时结合区域年代历史数据,推测该地区(芦山盆地至大川-双石断裂)至少在晚更新世曾发生过构造活动。  相似文献   

20.
2014年9月晋冀蒙临时地震台网正式运行,为晋冀蒙交界地区的地震研究提供了丰富的资料。结合临时台与固定台记录的P波走时资料,采用双差层析成像方法对该区进行地震重定位和三维P波速度结构联合反演,分析该区3个典型盆地的速度扰动结果,结果表明,地震重定位残差显著降低,震源深度分布更加合理;P波速度浅层基本符合平原地区低速、山区高速的特点,深层则有相反表现,典型盆地P波速度在浅层较为复杂,高低速相间,深层表现为低速;研究时段内忻定盆地和延怀盆地地震活动密集,大同盆地地震活动较弱,低速体及边缘地震活动强度高于高速体及边缘。  相似文献   

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