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1.
2012年4月2日上海徐汇区发生ML1.9地震,位于徐汇区、闵行区和浦东新区等地区部分房屋有晃动,部分人群有感。本文分析了上海有感地震的原因,在此基础上从地震精确定位、震源深度、地震烈度、地震发生时间以及人口密度和社会影响等对该次地震的有感原因进行了详细的分析。由于目前地震还不能准确预报,而地震的发生有很大的随机性,因此,提高民众防震减灾意识尤为重要。   相似文献   

2.
Here we present the results from the composite analyses of the atmospheric circulations and physical quantity fields associated with rainy-season for the selected floods cases over the Yangtze and Huaihe River basins for the 21 years(1990–2010),using the daily rain gauge measurements taken in the 756 stations throughout China and the NCEP/reanalysis data for the rainyseasons(June–July)from 1990 to 2010.The major differences in the atmospheric circulations and physical quantity fields between the Yangtze and Huaihe River basins are as follows:for flooding years of the Yangtze River Basin,the South Asia high center is located further east than normal,the blocking high over the Urals and the Sea of Okhotsk maintains,and the Meiyu front is situated near 30°N whereas for flooding years of the Huaihe River Basin,the South Asia high center is further west than normal,the atmospheric circulations over the mid and high latitudes in the Northern Hemisphere are of meridional distribution,and the Meiyu front is situated near 33°N.In addition,there are distinct differences in water vapor sources and associated transports between the Yangtze and Huaihe River basins.The water vapor is transported by southwesterly flows from the Bay of Bengal and monsoon flows over the South China Sea for flooding years of the Yangtze River Basin whereas by southeast monsoons from the eastern and southern seas off China and monsoon flows over the South China Sea for flooding years of the Huaihe River Basin.  相似文献   

3.
The results of a study of the macroseismic effects in the territory of Moscow of a remote deepfocus earthquake that occurred on May 24, 2013 in the Sea of Okhotsk are reported. On the surface of the earth and on the first floors of the buildings the seismic effect was not felt. The effect of the shock began to manifest itself at levels higher than the fifth floor of the buildings. The distribution of points on the map where the earthquake was felt is non-uniform. Points where tremor was felt do not appear to correspond with certain types of Quaternary deposits or with zones of different depth. There is also no significant correlation of the parts of the surface with high intensities of tremor and areas of ground-water flooding. Comparison between the surface manifestations of the seismic event and the tectonic features and deep structure of the metropolis was made. Based on the results of the implemented statistical estimation of distribution points where the earthquake was felt on the territory of the city it is visible that fault zones govern the largest number of points, while block structures characterize almost half of them. Thus, we can reasonably suggest a certain macroseismic increase of vibrations from earthquakes in the areas of large faults in the city. The study of deformations of the asphalt cover of walkways on the landslide-affected slope of Vorobyovy Hills showed that the tremor caused by the Okhotsk deep focus earthquake of May 24, 2013, caused the activation of a small landslide at all levels of the hillside.  相似文献   

4.
黄海的地壳速度结构与中朝—扬子块体拼合边界   总被引:7,自引:3,他引:4       下载免费PDF全文
利用中国、韩国和ISC台站的地震走时数据反演了黄海地区的地壳P波速度结构,对比重力异常和断裂体系、Pn波速度及其各向异性,分析了不同地球物理异常的相互关系以及黄海东部和西部的结构差异,为厘定黄海东部断裂暨中朝—扬子块体的拼合边界提供了新的信息.反演结果表明,北黄海和南黄海西部具有沉积盆地的地壳结构特征,P波速度明显偏低且深度较大,说明盆地内部沉积层较厚、沉降幅度较大,以北黄海、南黄海海州湾和苏北—南黄盆地最为突出.南黄海中部、胶东半岛、辽东半岛和朝鲜半岛显示出构造隆起区的地壳速度特征,其中南黄海中部的高速异常具有北东方向的伸展痕迹,与胶东地区的区域构造走向趋于一致,但是与朝鲜半岛的高速异常并不相连,其间存在明显的分界.据此推测南黄海与朝鲜半岛之间可能存在一个近南北方向的深断裂——黄海东部断裂,至于该断裂是否可以作为中朝—扬子块体在海区的拼合边界,尚需获取黄海东部及朝鲜半岛更详细的相关资料提供依据.  相似文献   

5.
利用中国大陆东部及台湾地区、日本和琉球群岛的地震观测数据,通过体波地震层析技术反演了中国东部海域及其邻近地区的P波速度结构.以此为依据分析了不同地区的岩石层性质和深部动力学条件,探讨了中朝与扬子块体、扬子与华夏块体在海区的深部边界及其构造属性,揭示出菲律宾海板块与欧亚大陆的碰撞以及板片俯冲下沉、弧后扩张作用对中国东部海域岩石层结构的影响.结果表明,中国东部海域的岩石层地幔存在明显的横向非均匀性,它们与区域构造的形成演化有一定的联系.中国大陆东部的五莲-青岛断裂与朝鲜半岛西缘断裂、济州岛南缘断裂共同构成中朝和扬子块体的边界,江绍断裂向东延伸至朝鲜半岛南端成为分隔扬子和华夏块体的边界;东海陆架与冲绳海槽的岩石层结构差异明显,东海陆架具有中国东部地区的岩石层特征,属于欧亚大陆向海域的延伸;冲绳海槽的岩石层强烈减薄,为大陆向大洋过渡的区域;沿着日本-琉球-台湾俯冲带,菲律宾海板块俯冲下沉引起的地幔扰动对中国东部海域产生了较大的影响,欧亚大陆与菲律宾海板块之间的相互碰撞导致台湾地区岩石层明显增厚.  相似文献   

6.
我国东南沿海滨海断裂带是1条活动强烈的地震构造带,位于珠江口盆地北缘的粤东滨海断裂带是其重要组成部分,确定该断裂带的几何展布位置与最新活动特征对科学评价华南沿海地区地震危险性、地震构造和地球动力学具有重要科学意义.通过综合分析近年来南海东北部海域地质地貌、地震反射剖面、深部探测、地震活动等方面的研究成果,总结了粤东滨海...  相似文献   

7.
Mesozoic and Cenozoic tectonic evolution of the Longmenshan fault belt   总被引:8,自引:0,他引:8  
The giant earthquake (M s=8.0) in Wenchuan on May 12, 2008 was triggered by oblique convergence between the Tibetan Plateau and the South China along the Longmenshan fault belt. The Longmenshan fault belt marks an important component of the tectonic and geomorphological boundary between the eastern and western part of China and has a protracted tectonic history. It was first formed as an intracontinental transfer fault, patitioning the differential deformation between the Pacific and Tethys tectonic domains, initiated in late Paleozoic-early Mesozoic time, then served as the eastern boundary of the Tibetan Plateau to accommodate the growth of the plateau in Cenozoic. Its current geological and geomorphological frameworks are the result of superimposition of these two tectonic events. In Late Triassic, the Longmenshan underwent left-slip oblique NW-SE shortening due to the clockwise rotation of the Yangtze Block, which led to the flexural subsidence of the Sichuan foreland basin, but after that, the subsidence of the Sichuan Basin seems no longer controlled by the tectonic activity of the Longmenshan fault belt. The Meosozoic tectonic evolution of the Songpan-Ganzi fold belt differs significantly compared with that of the Yangtze Platform, featured by intensive northeast and southwest shortening and resulted in the close of the Paleo-Tethys. Aerial photos taken immediately after main shock of the giant May 12, 2008 earthquake have documented extensive rock fall and landslides that represent one of the most destructive aspects of the earthquake. Both rock avalanches and landslides delivered a huge volume of debris into the middle part of the Minjiang River, and formed many dammed lakes. Breaching of these natural dams can be catastrophic, as occurred in the Diexi area along the upstream of the Minjiang River in the year of 1933 that led to devastating floodings. The resultant flood following the breaching of these dams flowed through and out of the Longmenshan belt into the Chengdu Plain, bringing a huge volume of sediments. The oldest alluvial deposits within the Chengdu Plain are estimated to be Late Miocene (8–13 Ma). We suggest that the flooding that transported the course-grained sediments into the Chengdu Plain occurred in late Cenozoic, resulted from both the climate and the historical earthquakes similar to the May 12 earthquake. Estimated age of the sediments related to earthquakes and coeval shortening across the Chengdu Plain indicate that the eastern margin of the plateau became seismically and tectonically active in Late Miocene. Supported by Knowledge Innovation Project of Chinese Academy of Sciences (Grant No. KZCX2-YW-12), National Natural Science Foundation of China (Grant Nos. 40672151, 40721003, 40472121 and 40830314) and PetroChina Company Limited  相似文献   

8.
通过对2014年8月3日云南省昭通市鲁甸县发生的MS6.5地震的震源机制解、余震空间分布、活动断裂组合样式和区域构造背景等特征的综合分析表明:(1)根据主震及4级以上强余震的震源机制解、余震空间分布、烈度长轴方向,判断本次地震的发震断裂为NW向的包谷垴—小河断裂;(2)根据地表GPS水平运动速率及水平缩短速率的差异性、断裂组合样式和历史余震深度,判断发震断裂具有薄皮-同向差异逆冲型捩断层的特征;(3)包谷垴—小河断裂活动可能主要受深部的"管道流"控制,"管道流"自NW向SE方向运动,在昭通断裂带处受到华南板块的差异阻挡,造成包谷垴—小河断裂西侧管道流运动速率大于东侧管道,从而驱动包谷垴—小河捩断层的左旋滑动,导致了鲁甸地震的发生。  相似文献   

9.
利用1958~2002年的NCEP-R1和ERA-40逐日再分析资料以及中国160站点月平均降水资料探讨了亚洲夏季风水汽输送的年际年代际变化及其与中国降水异常的关系. 分析结果表明,亚洲夏季风水汽输送和中国夏季降水的异常主模态呈现显著的准两年变化周期. 当南亚夏季风纬向水汽输送偏强(弱)时,东亚—西北太平洋地区水汽输送的偶极型异常有利于长江中下游地区和江淮流域的水汽辐合负(正)异常与华南和华北地区的水汽辐合正(负)异常,从而引起中国东部的经向三极子雨型,即长江中下游地区和江淮流域的偏旱(涝)与华南和华北地区的偏涝(旱). 1970s年代末之后,亚洲夏季风水汽输送的年代际减弱与西北太平洋地区水汽输送的偶极型异常相配合,导致长江中下游地区的持续偏涝与华南和华北地区的持续偏旱. 从中国夏季降水异常与水汽通量辐合异常的同相对应关系来看,ERA-40资料对亚洲夏季风水汽输送年际年代际变化的描述能力强于NCEP-R1资料.  相似文献   

10.
震前电磁波异常的两种短临形态特征探讨   总被引:1,自引:0,他引:1  
吴鑫 《四川地震》2012,(2):25-29
根据连云港地震局监测的几起地震前电磁波短临异常,结合1996年11月9日长江口6.1级地震等震例,进行对比分析。对异常产生的两种形态特征原因进行探讨,希望能揭示一些震前电磁波异常的规律及与地震短临三要素的内在联系。  相似文献   

11.
用2002年3月31日台湾Ms7.5地震时上海地区软土地表和基岩记录的加速度资料讨论了地表软土覆盖层面波的地震动反应,并用经验格林函数法合成了台湾未来8级大地震在上海基岩和土层处的面波加速度时程,初步估计了其对高层建筑的影响。其结果对上海的工程抗震设计有参考价值。  相似文献   

12.
中国东部海区岩石层结构的区域综合地球物理研究   总被引:2,自引:1,他引:1       下载免费PDF全文
结合新一轮编图工作的开展,中国东部海区重、磁平面图件在拼入新资料同时,也包含了邻区朝鲜半岛,台湾岛,日本海,菲律宾海等地区的资料.本文在此基础上综合分析研究区重、磁异常特征,利用重、磁资料反演莫霍面、居里面,进而求取了热岩石层底界面,对重、磁数据进行了突出断裂带信息的处理,确定了13条重要断裂带的展布,将研究区划分为8个块体和4个结合带,它们具有"东西成带、南北分块"的特征,是"2条锋线"作用的产物.研究表明,江—绍断裂带向东延伸进入海区,虽然受东海陆架西缘断裂带的切割,但仍继续往东延伸,可能延至朝鲜半岛南端与济州岛南缘断裂带相接;在朝鲜半岛西缘地球物理场存在NNW—NW的明显界线,可解释为断裂带,称之黄海东缘断裂带,中国大陆东部的五莲—青岛断裂带与黄海东缘断裂带和济州岛南缘断裂带共同构成中朝和扬子块体的边界.  相似文献   

13.
针对上海及邻近区域划分的46 个潜在震源区,采用概率地震危险性分析方法计算上海中心地区基岩地震动参数,分析对反应谱不同周期起主要影响的潜在震源区,并研究主要潜在震源区对不同周期反应谱的概率贡献。研究结果表明:对于长周期反应谱,远距离高震级潜在震源区概率贡献随着周期的增加而增大,甚至超过场地所在潜在震源区的概率贡献;在上海地区进行长周期项目地震安全性评价中,应充分考虑150 km以外的高震级潜在震源区的影响;对于上海地区的超高层建筑等长周期建筑物而言,长江口、南黄海等地区的地震影响风险较大,郯城地区的地震影响也不容忽视,应引起重视。   相似文献   

14.
2021年11月17日13时54分(北京时间)江苏盐城市大丰区海域发生MS 5.0地震。江苏盐城、南通等地区震感强烈,上海普遍有感,山东和浙江等部分地区亦有震感。上海地震台在震后7 min发布人工速报结果,并启动地震应急产品产出工作,产品包括地震基本参数、历史地震、地震构造、震源机制、仪器烈度和余震精定位等数据。本次地震发生在黄海南部坳陷地区,震源机制解表明该地震为一次走滑型事件,断层呈NE走向,余震主要沿主震NE方向拓展约20 km,深度集中在15 km以内范围。  相似文献   

15.
The Yangtze River Delta region is characterized by high density of population and rapidly developing economy. There are low lying coastal plain and deltaic plain in this region. Thus, the study area could be highly vulnerable to accelerated sea level rise caused by global warming. This paper deals with the scenarios of the relative sea level rise in the early half period of the 21st century in the study area. The authors suggested that relative sea level would rise 25 50 cm by the year 2050 in the study area, of which the magnitude of relative sea level rise in the Yangtze River Delta would double the perspective worldwide average. The impacts of sea level rise include: (i) exacerbation of coastline recession in several sections and vertical erosion of tidal flat, and increase in length of eroding coastline; (ii) decrease in area of tidal flat and coastal wetland due to erosion and inundation; (iii) increase in frequency and intensity of storm surge, which would threaten the coastal protection works; (iv) reduction of drainage capacity due to backwater effect in the Lixiahe lowland and the eastern lowland of Taihu Lake region, and exacerbation of flood and waterlogging disasters; and (v) increase in salt water intrusion into the Yangtze Estuary. Comprehensive evaluation of sea level rise impacts shows that the Yangtze River Delta and eastern lowland of Taihu Lake region, especially Shanghai Municipality, belong in the district in the extreme risk category and the next is the northern bank of Hangzhou Bay, the third is the abandoned Yellow River delta, and the district at low risk includes the central part of north Jiangsu coastal plain and Lixiahe lowland.  相似文献   

16.
Based on the drilling data,the geological characteristics of the coast in South China,and the interpretation of the long seismic profiles covering the Pearl River Mouth Basin and southeastern Hainan Basin,the basin basement in the northern South China Sea is divided into four structural layers,namely,Pre-Sinian crystalline basement,Sinian-lower Paleozoic,upper Paleozoic,and Mesozoic structural layers.This paper discusses the distribution range and law and reveals the tectonic attribute of each structural layer.The Pre-Sinian crystalline basement is distributed in the northern South China Sea,which is linked to the Pre-Sinian crystalline basement of the Cathaysian Block and together they constitute a larger-scale continental block—the Cathaysian-northern South China Sea continental block.The Sinian-lower Paleozoic structural layer is distributed in the northern South China Sea,which is the natural extension of the Caledonian fold belt in South China to the sea area.The sediments are derived from southern East China Sea-Taiwan,Zhongsha-Xisha islands and Yunkai ancient uplifts,and some small basement uplifts.The Caledonian fold belt in the northern South China Sea is linked with that in South China and they constitute the wider fold belt.The upper Paleozoic structural layer is unevenly distributed in the northern South China.In the basement of Beibu Gulf Basin and southwestern Taiwan Basin,the structural layer is composed of the stable epicontinental sea deposit.The distribution areas in the Pearl River Mouth Basin and the southeastern Hainan Basin belong to ancient uplifts in the late Paleozoic,lacking the upper Paleozoic structural layers.The stratigraphic distribution and sedimentary environment in Middle-Late Jurassic to Cretaceous are characteristic of differentiation in the east and the west.The marine,paralic deposit is well developed in the basin basement of southwestern Taiwan but the volcanic activity is not obvious.The marine and paralic facies deposit is distributed in the eastern Pearl River Mouth Basin basement and the volcanic activity is stronger.The continental facies volcano-sediment in the Early Cretaceous is distributed in the basement of the western Pearl River Mouth Basin and Southeastern Hainan Basin.The Upper Cretaceous red continental facies clastic rocks are distributed in the Beibu Gulf Basin and Yinggehai Basin.The NE direction granitic volcanic-intrusive complex,volcano-sedimentary basin,fold and fault in Mesozoic basement have the similar temporal and spatial distribution,geological feature,and tectonic attribute with the coastal land in South China,and they belong to the same magma-deposition-tectonic system,which demonstrates that the late Mesozoic structural layer was formed in the background of active continental margin.Based on the analysis of basement structure and the study on tectonic attribute,the paleogeographic map of the basin basement in different periods in the northern South China Sea is compiled.  相似文献   

17.
1996年 1 1月 9日长江口以东海域发生 MS6.1地震 ,震前巢湖地下水动态观测网中 3口深水井所记录到的水位经标准差、剩余值数据处理得到前兆异常。其异常时间以中短期为主 ,不同步。本文还对如何提高地震预报的准确性及降水对井水位的影响等问题进行了讨论。  相似文献   

18.
我国是地震多发的国家之一,其中破坏性地震的发生频率也相对较高。伴随着我国经济的高速发展与城市化进程的加快,地震风险意识的提高以及国家对地震应急救援能力的更高要求都促进了对地震灾害评估方法的研究。其中地震人员伤亡评估方法更是灾情预测的重中之重,然而我国大部分历史地震都发生在西部,已有的地震人员伤亡评估方法也是基于西部历史地震资料统计分析得出的。人口密度更高和经济更为发达的东部地区,一旦遭遇破坏性地震,其灾害程度将远超西部,因此现有方法已不能很好地满足东部地区的地震预防和应急救援决策需求。需要结合东部地区的特点修正适用于东部地区的地震人员伤亡评估方法。本文初步分析了东西部影响地震人员伤亡的影响因素,对比主要区域差异,指出东西部地区建筑的抗震性能差异主要体现在城市自建房屋的比例和农村主要结构类型占比上。给出了东部地区地震人员伤亡评估的修正系数,并通过算例分析了其适用性。  相似文献   

19.
2011年1月19日安徽安庆发生Ms4.8地震,本次地震发生在下扬子地块长江沿线前陆变形带.震后现场工作队调查汇总了建筑物破坏情况,计算得出较为精确的烈度分布.采用FOCMEC方法计算了主震震源机制解,并利用安徽地震台网对本次地震主余震的定位结果,结合地震层析成像技术对震源区地壳三维速度结构的成像结果进行分析,同时参考烈度分布的椭圆长轴优势方向,得出NE向的宿松-枞阳断裂可能是本次地震的发震断层的结论.  相似文献   

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Introduction In the region of Jiangsu Province and South Huanghai Sea, only 14 M4.7 earthquakes (ex-cluding aftershocks and other main shocks in the swarm) occurred from 1970 when microseismic observation net was built. It is very difficult to objectively distinguish the law of earthquake series distribution in a region based on these data. However, from the antiquity in China, Jiangsu is an area with flourish economy and a galaxy of talent and culture. In Jiangsu, historical data are so c…  相似文献   

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