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1.
日本3·11大地震是人类的一次大灾难。北京时间2011年3月11日13时46分,日本东北地区海底发生里氏9.0级大地震,并引发太平洋大海啸,伤亡惨重。大海啸造成福岛第一核电站发生数次爆炸并引发核泄漏,损失巨大。看到那些触目惊心的画面,我们不禁心有余悸。  相似文献   

2.
《辽宁地质》2011,(3):64-64,F0003
2011年3月11日北京时问13时46分,日本本州东海岸发生9.0级特大地震。据路透社报道,这次地震超过了1923年东大地震,其能量相当于芮氏7.3级的阪神大地震的178倍,从而成为日本140年来最大的一次地震。由于此次地震震级大、震源浅,地震同时引发了巨大的海啸灾难,使整个日本东北部海岸遭遇到不同程度的袭击,仙台港口观测到的巨浪有10米之高。截至27日,日本地震已经造成了10804人死亡和16244人失踪。  相似文献   

3.
世界性科学难题——地震预报有可能首先在中国实现突破   总被引:5,自引:0,他引:5  
采用多学科交叉的地震前兆观测方法 ,成功地做出了一些地震的临震预测及年度 (中期 )预测。可以预测几千km以外的 7级以上大地震。预测地震 3要素 (发震时间、震级及地点 )所达到的精度在地震史上也是罕见的。文中介绍了我们所用的主要地震前兆观测方法 :次声波、地应力、地电脉冲、大地微动、引潮力共振叠加等。文中还介绍了几次较好的临震预测及年度预测震例。从近几年的地震预测实践证明 ,对 7级以上大地震做出准确的预报是可能的。  相似文献   

4.
日本建筑的安全度很高。这次9级大地震,还有多次6级以上的余震,但被震倒的建筑很少,倒塌的建筑绝大多数是被海啸冲垮的,死亡人员也绝大多数是被海啸吞噬的。有日本客户在谈到地震情况时说,连结构都震得吱吱直响,但房子没有事。  相似文献   

5.
傅征祥  刘杰  王晓青  郝平  吕梅梅 《地学前缘》2003,10(Z1):112-117
中国大陆西部及邻区是全球 8级大地震最为活跃的地区之一。自 180 0年以来该区板内 8级大地震共发生了 16次 ,2 0 0 1年昆仑山口西 8.1级大地震 (36 .1°N ,90 .9°E)是在 195 7年蒙古 8.3级大地震之后 4 4a发生的。研究表明该区 8级大地震的活动过程可能存在相对平静 (1812— 190 2年 )和相对活跃 (190 3— 195 7年 )交替的幕式或轮回过程的性质。 195 7年蒙古地震之后可能是一次新的轮回开始 ,2 0 0 1年昆仑山口西地震是新轮回的第二次地震 ,按照轮回过程中事件发生频度是时间的指数函数关系的假定 ,该区下一次 8级大地震可能约在 2 0 2 6年发生。如果假定该过程相当接近泊松过程。那么 ,在 2 0 0 5 ,2 0 10年和 2 0 15年前至少发生一次 8级大地震的泊松概率 ,分别是 0 .2 9,0 .5 3和 0 .70。  相似文献   

6.
也说海啸     
海啸,主要是海底发生较大地震(>615级)引起。海底火山爆发及山崩也可能引发,但规模小,危害不大。海洋中大于615级的地震很多,能引发海啸的约占1%。其中环太平洋地震带中约占80%,印度洋、大西洋约各占10%。过去认为世界上受海啸威胁的仅是环太平洋地震带中的夏威夷、智利、日本等少数国家。没有料及印度洋的印度尼西亚、斯里兰卡、马尔代夫、泰国等会受海啸的威胁。1868年8月8日智利—秘鲁边界大地震、1877年5月7日智利伊基克大地震、1933年3月2日日本三陆大地震、1946年4月1日阿留申群岛尼马克大地震、1960年5月21日智利大地震、1964年3月28…  相似文献   

7.
2011年刚开春不久,短短一个月内,中国云南盈江、日本接连发生地震,尤其是发生在日本东北海域千年一遇的9.0级惊天大地震,其震级之高、破坏之烈、后果之严重,超出了所有灾难片段的想象,同时也毫不留情地给地球公民上了一堂关于人与自然如何和谐相处的哲学课、道德课。  相似文献   

8.
朱航  闻学泽 《地球科学》2012,37(1):199-206
通过计算和研究1733-1850年期间发生在小江-则木河断裂带上的、由4次M≥7地震组成的大地震序列引起的库仑应力变化图像, 分析先发大地震破裂对后发大地震破裂的静态应力触发作用.结果表明, 在该序列中, 后发大地震破裂均发生在先发大地震破裂引起的库仑应力显著增加区内.其中, 1733年小江断裂带北段的73/4级大地震破裂和1833年中段的8级大地震破裂均引起则木河断裂带较显著的库仑应力正值变化, 亦即1850年则木河断裂带发生的71/2级大地震与前2次大地震破裂引起的应力触发作用有关; 1733年小江断裂带北段和中-南段的73/4级和1789年2次7级大地震均对该断裂带中段产生了十分显著的库仑应力触发作用, 与此相关的是1833年8级大地震的发生.因此, 认为小江断裂带各段之间以及该断裂带与则木河断裂带之间存在显著的力学上的相互作用.   相似文献   

9.
为了探讨日本MW 9.0级大地震前后华北和东北地区现今构造应力作用调整过程与研究意义,对华北和东北地区进行原位现今地应力绝对测量与实时监测、GPS测量,结果表明:日本大地震在山东半岛、华北北部地区和东北地区所诱发同震位移引起的张性效应调整周期分别约为6个月(即调整结束时间大约在2011年9月)、15个月(即调整结束时间大约在2012年6月)和26个月(即调整结束时间大约在2013年5月),张性效应调整周期与同震位移大小成正比。在这种调整过程中,往往表现出区域现今构造应力作用方式和构造应力场转换,并可能伴随重大地质事件(如地震等)的发生。2012年5月28日和29日、6月18日、8月26日及2013年1月11日在唐山及其周围地区分别发生的4.8级、3.2级、4.0级、3.3级和3.0级地震与华北北部地区构造应力作用方式和构造应力场转换有关,而2013年10月31日以来在吉林省松原市发生的地震群应与东北地区构造应力作用方式和构造应力场转换有关,而非一个大地震前的小震群。  相似文献   

10.
王涌泉 《地学前缘》2007,14(6):6-10
1855年黄河铜瓦厢决口北流,改道从山东入海,是一次百年灾害链形成的巨变,黄淮海平原成为中国水灾的中心。经研究发现:1740—1818年为中国地震宁静期,黄河流域正处于干旱枯水期;1819年印度卡其发生8.3级大地震,黄河出现多泥沙特大洪水,河南兰阳以下近30 km河道严重淤塞;1819—1879年大地震密集出现,并有9级以上特大地震4次,其中1833—1870年大地震主要分布在东亚;黄河因而于1841—1843年连续出现特大洪水,造成下游多次决溢、以致改道。文中第一次以科学和历史结合给出解释,其结论可供当前地球科学灾害链研究及治黄参考。  相似文献   

11.
Based on the tectonic framework of central Japan, including the surrounding submarine areas, the space-time relationship between destructive inland earthquakes of magnitudesM 6.4 or greater and great offshore earthquakes along the Nankai trough was examined. From east to west, four tectonic lines are defined as lines linking active faults: the Itoigawa-Shizuoka tectonic line (ISTL), the Tsurugawan-Isewan tectonic line (TITL), the Hanaore-Kongo fault line (HKFL), and the Arima-Takatsuki tectonic line (ATTL). The TITL divides central Japan into the Chubu and Kinki districts, and probably extends southward to the Nankai trough. The Chubu district is subdivided into four blocks by boundary lines linking NW-SE trending active faults having left-lateral strike slip. In the Kinki district, N-S trending, active reverse, steep-dip faults are dominant in the triangular region north of the Median Tectonic line, between the TITL and HKFL, forming a basin-and-range province.

Starting from 1586 A.D., a seismic space-time sequence of high seismic activity in the Chubu district in which earthquake occurrence migrates from the eastern to western tectonic lines of central Japan was identified. The sequence also revealed that inland earthquakes preceded great offshore earthquakes which occurred along the Nankai trough. It was also found that a destructive earthquake tends to occur on the HKFL within 30 years after the occurrence on the TITL, and that the western Nankai trough generated great earthquakes ofM≥7.0 at intervals ranging from 8 to 49 years after the HKFL earthquakes. If the eastern Nankai trough is coupled with the western Nankai trough, a forthcoming greater earthquake measuringM 8.5 may be expected. Since such great earthquakes are always accompanied by large tsunamis, much attention should be focussed on possible tsunami disasters along the Pacific coast of central Japan.

Based on its tectonic structure, a tectonic model of central Japan is proposed. The seismic space-time sequence, which attempts to explain the cause of the sequential earthquake generation, is also discussed.  相似文献   


12.
<正>This study attempts to acquire information on tectonic activity in western China from land surface temperature(LST) field data.On the basis of the established relationship between heat and strain,we analyzed the LST distribution in western China using the satellite data product MODIS/Terra.Our results show that:1. There are departures from annual changes of LST in some areas,and that these changes are associated with the activity of some active tectonic zones.2.When annual-change background values caused by climate factors are removed,the long-period component(LST_(LOW)) of temperature residual(△T) of the LST is able to serve as an indicator for tectonic activity.We have found that a major earthquake can produce different effects on the LST fields of surrounding areas.These effects are characterized by both rises and drops in temperature.For example, there was a noteworthy temperature decline associated with the Sumatran M9 earthquake of 2004 in the Bayan Har-Songpan block of central Tibetan Plateau.3.On the other hand,the LST field of a single area may respond differently to major shocks occurring in different areas in the regions surrounding China.For instance,the Kunlun M 8.1 event made the LST on the Longmen Mountains fault zone increase,whereas the Zaisan Lake M 7.9 quake of 2003,and the Sumatran M9 event of 2004.caused decreases in the same area's LST.4.The variations of land surface temperature(LST) over time are different in different tectonic areas.These phenomena may provide clues for the study of tectonic deformation processes.On the basis of these phenomena,we use a combination of temperature data obtained at varied depths,regional seismicity and strain results obtained with GPS measurements,to test the information related to tectonic activity derived from variations of the LST field,and discuss its implications to the creation of models of regional tectonic deformation.  相似文献   

13.
2014年8月3日16时30分, 在云南省昭通市鲁甸县(27.1°N, 103.3°E)发生Ms6.5地震, 震源深度10 km, 死亡617人, 失踪112人, 受伤3 143人, 受灾人口108.84万人.根据月亮赤纬角、太阳黑子极值年等周期变化及两者的叠加效应, 总结出2013—2014年是云南强震高危期, 具备Ms7地震的发生条件.次年, 利用基础SW前兆仪的临震预测指纹法信息, 制定了2014年底211号地震预测表, 预测了2014年8月四川(26.18°N, 105.33°E)将发生Ms5.3地震发生.2014年8月3日云南鲁甸Ms6.5地震表明: 这次地震的指纹法预测时间相差1天, 震中相差226 km, 震级误差Ms1.2.通过构造背景、地壳速度结构和震源机制研究, NW向的包谷垴-小河左旋走滑断裂是鲁甸地震的发震断裂.中下地壳低速(高导)体与包谷垴-小河断裂交接部位是流变界面能量释放的位置, 即本次地震的震源位置, 为板内地震三层次构造模式提供了一个新的案例.   相似文献   

14.
Sugimoto  T.  Murakami  H.  Kozuki  Y.  Nishikawa  K.  Shimada  T. 《Natural Hazards》2003,29(3):587-602
This study presents a tsunami human damage prediction method employing numerical calculation and GIS (Geographical Information System) for Usa town, Tosa City, Shikoku Island, Japan. Sometime near the end of the first half of the twenty-first century, a huge earthquake is predicted to occur along the Nankai trough and costal areas facing the Pacific ocean of Shikoku Island. Much damage due to the resultant tsunamis will be caused, therefore, it is necessary to predict the extent of human damage for every town in high-risk areas.The number of tsunami victims was estimated by population in areas of maximum inundation. The number of deaths as a result of tsunami was estimated by a method which employed accumulated death toll of every area in terms of time and space, taking into account consideration of time necessary to begin to seek refuge after an earthquake, tsunami inundation depth on land, flow velocity and evacuation speed. As a result of this study a rapid decrease in death toll by early evacuation was shown quantitatively for the first time.Thus, with the method presented here, it is possible to estimate the extent of tsunami human damage on coastal regions, and may be useful as a tsunami human damage countermeasure.  相似文献   

15.
2008年5月12日在青藏高原东缘龙门山断裂带中段发生汶川8.0级特大地震。大震发生时释放应力并对震源区及外围构造应力场产生影响,受汶川地震断层破裂方式和强度空间差异性的影响,震后龙门山断裂带地壳应力场也应表现差异特征,至今鲜有针对该科学问题深入的分析和讨论。经过系统收集、梳理汶川地震后沿龙门山断裂带水压致裂地应力测量数据与2008年汶川地震中强余震序列震源机制解资料,对汶川地震后龙门山断裂带中上地壳构造应力场进行厘定,通过与震前构造应力场对比,深入探讨了汶川8.0级地震对龙门山断裂带地壳应力场的影响,进而对汶川震后应力调整过程及青藏高原东缘龙门山地区深部构造变形模式进行研究,研究结果表明:受汶川8.0级地震的影响,震后龙门山断裂带地壳构造应力场空间分布具有差异性,近地表至上地壳15 km深度范围,映秀—青川段最大主应力方向为北西西向、地应力状态为逆走滑型,青川东北部最大主应力方向偏转至北东东向、应力状态转变为走滑型;15~25km深度范围,龙门山断裂带最大主应力方向仍为北西—北西西向、应力状态以逆冲型为主。汶川8.0级地震后,龙门山断裂带中地壳北西西向逆冲挤压的构造应力特征进一步支持了青藏高原东缘龙门山地区东西两侧刚性块体碰撞挤压、逆冲推覆的动力学模式。  相似文献   

16.
Many big earthquakes have occurred in the tectonic regions of the world, especially in Japan. Earthquakes often cause damage to crucial life services such as water, gas and electricity supply systems and even the sewage system in urban and rural areas. The most severe problem for people affected by earthquakes is access to water for their drinking/cooking and toilet flushing. Securing safe water for daily life in an earthquake emergency requires the establishment of countermeasures, especially in a mega city like Tokyo. This paper described some examples of groundwater use in earthquake emergencies, with reference to reports, books and newspapers published in Japan. The consensus is that groundwater, as a source of water, plays a major role in earthquake emergencies, especially where the accessibility of wells coincides with the emergency need. It is also important to introduce a registration system for citizen-owned and company wells that can form the basis of a cooperative during a disaster; such a registration system was implemented by many Japanese local governments after the Hanshin-Awaji Earthquake in 1995 and the Great East Japan Earthquake in 2011, and is one of the most effective countermeasures for groundwater use in an earthquake emergency. Emphasis is also placed the importance of establishing of a continuous monitoring system of groundwater conditions for both quantity and quality during non-emergency periods.  相似文献   

17.
Migration of crustal deformation   总被引:2,自引:0,他引:2  
Observations on the migration rates of crustal deformation, as recently discovered in several tectonic areas, such as the south Kanto and central Tohoku districts, Japan and the West Cordillera Mts., Peru, has opened up a new opportunity for the study of crustal dynamics. Briefly, these examples from coastal areas are characterized by migration landwards with a velocity of about 10–100 km/yr. This agrees well with the velocity of mIgration of seismicity as previously known. Dispersion and dissipation of the deformation waveform are also noted as characteristics.Simple extrapolation of the migration path back toward the ocean may locate a possible origin of the event. In the case of the south Kanto district, for example, the deformation front seems to have originated in the early 1950s from the vicinity of the junction of the Japan and Izu—Mariana trenches. The deformation front in the central Tohoku district, on the other hand, is thought to have originated in the northern part of the Japan Trench in the late 1960s. One may suppose that either a repeated irregular aseismic plate motion generates the deformation events, or that it results from a periodic seismic slip at a plate boundary. In the latter case, the 1953 Boso-oki and the 1968 Tokachi-oki earthquakes might be suspected of generating the deformation fronts in the south Kanto and central Tohoku districts respectively.As Scholz speculated, the migration of a deformation front might trigger earthquakes, if it hits areas of high seismic potential. Studies of migration events can contribute significantly to earthquake prediction studies.  相似文献   

18.
大陆地震构造系统: 以青藏高原及邻区为例   总被引:1,自引:0,他引:1       下载免费PDF全文
李德威  陈继乐  陈桂凡  梁桑 《地球科学》2014,39(12):1763-1775
青藏高原及邻区三角形发震构造域是全球大陆最显著的地震多发区.脆性活动断层及其弹性回跳模式无法合理解释该区深度集中分布在10~40 km的点状震源.针对发震构造和地震机理不明确这一重大科学问题, 以大陆动力学和地球系统动力学新思想为指导, 对青藏高原及邻区发震构造系统进行域、层、带、点相关研究, 阐明大陆地震构造系统的结构型式, 认为下地壳固态流变及其韧性剪切带是提供地震能量的孕震构造, 中地壳韧-脆性剪切带是累积地震能量的发震构造, 上地壳脆性断裂是释放地震能量的释震构造.在研究青藏高原及邻区地震构造系统及其形成背景的基础上, 进一步论证了大陆地震热流体撞击的形成机理: 地幔墙导致大洋中脊之下的软流圈热流物质层流到大陆特定部位汇聚加厚并底辟上升, 造成大陆下地壳部分熔融和固态流变, 并改变莫霍面的产状, 固态流变物质侧向非均匀流动, 形成大陆盆山体系, 流动的韧性下地壳与脆性上地壳之间具有韧-脆性剪切滑脱性质的中地壳不断积累由下地壳热能转换而来的应变能, 形成发震层, 震源定位于下地壳热流物质富集带("热河")中的固态-半固态流变物质撞击到强弱层块之间的构造边界, 不同热构造环境和撞击角度产生5种不同类型的地震.从而为大陆地震的科学预测奠定了全新的理论基础.   相似文献   

19.
歹字型构造体系在地震预测中的应用   总被引:2,自引:1,他引:1  
青藏滇缅印尼歹字型构造体系和北美洲西海岸歹字型构造体系是李四光在70多年前提出的两个巨型歹字型构造体系。近年来,歹字型构造体系被应用于地震预测。应用青藏滇缅印尼歹字型构造体系预测2008年汶川8.3级巨震,应用北美洲西海岸歹字型构造体系预测2010年4月5日墨西哥7.5级大地震,均获成功。进一步研究表明,位于同一歹字型构造体系的2个或3个特大巨震的时间间隔为53 ~ 54 a,相当于三个沙罗周期的长度,歹字型构造体系的近代活动基本上是与天文因素有关的,这一联系可被应用于地震预测。   相似文献   

20.
The integral results of a seismic forecasting experiment for the powerful M > 7 earthquakes in the Kamchatka region are presented. According to the empirical scheme of the short-term earthquake prediction, since 2002 all officially recorded forecasts, including five deep-focus earthquakes in the Sea of Okhotsk, have been predicted without missing events. The specific character of the features of the earthquake preparation and the annular cloud structures that began to be observed in satellite images near the coast of Japan at the boundary of the Okhotsk plate are analyzed.  相似文献   

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