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1.
正郯庐断裂带是东亚大陆上的一条主干断裂带,其在沈阳以北由一支分为两支:NE向的依兰—伊通断裂带和NEE向的敦化—密山断裂带。依兰—伊通断裂带在吉林省境内称为伊通—舒兰断裂带,也是由东支和西支断裂组成,两条断裂相距10~20km。该断裂带沿北东方向经四平、伊通、舒兰向北东方向延伸到黑龙江省通河一带。中间多处被NW向及NNW向次级断裂截错,第四纪以来在该断裂带发生的火山活动和频繁的地震活动多与这些断裂及  相似文献   

2.
正郯庐断裂带在沈阳以北由一支分为两支NE向的依兰—伊通断裂带和NEE向的敦化—密山断裂带,这两条断裂带构成了郯庐断裂带北延的主体部分,贯穿东北三省的依兰-伊通断裂是东北地区规模最大的断裂,沿断裂分布有吉林市、长春市、佳木斯市等许多人口密集、经济发达的市县。自有文字记载以来,沿断裂曾发生过300余次中小地震。断裂带上发生过  相似文献   

3.
华北地区主要构造带的现代运动和应变   总被引:3,自引:0,他引:3  
根据网络工程在华北地区1999—2001—2004年的GPS观测资料,计算求解了垂直于断裂构造带走向的线应变率(即断层正应变率)和平行于断裂构造带走向的剪应变率,求解了断裂带的水平错动速率,研究了断裂带的位移和应变状态。断层正应变率表明北东、北北东向断裂带为北段挤压,南段拉张,东西向断裂带和北西向断裂带在华北东部地段为挤压,西部地带为拉张。1999年至2004年的断裂带的正应变率和剪应变率量值都在37×10-9/a以内。断层在水平方向上的活动表明,东西向断裂带和北西向断裂带以左旋运动为主,不同地段兼有拉张或挤压,北东、北北东向断裂带挤压或拉张活动较显著,不同地段兼有右旋或左旋运动。  相似文献   

4.
2014年鲁甸6.5级地震GPS同震位移及反演分析   总被引:1,自引:0,他引:1       下载免费PDF全文
本文综合GPS流动和连续观测结果,并利用最速下降法(SDM)反演方法,给出并分析了2014年鲁甸6.5级地震同震位移、断层面滑动位移分布特征.GPS同震位移结果表明:此次地震沿北西方向表现出左旋应变释放特征、沿北东向表现出拉张应变释放的同震特征,并且随着离开断裂带距离的增加,拉张变形衰减;受包谷垴—小河断裂控制的左旋剪切应变释放的位移在莲峰、昭通—鲁甸断裂附近较弱,说明该断裂可能没有完全切割昭通—鲁甸断裂,不属于该区域主干断裂;昭通—鲁甸断裂带有一定的右旋应变释放,而逆冲应变释放不明显,表明该断裂带处于受南东向挤压的强闭锁状态.SDM反演结果表明,鲁甸地震以左旋走滑为主并兼有拉张性质,地震矩震级为MW6.3左右.综上所述,并结合其他研究成果,我们认为莲峰、昭通—鲁甸断裂带仍存在强震危险性.  相似文献   

5.
基于遥感技术研究依兰-伊通断裂带   总被引:8,自引:0,他引:8  
郯庐断裂带是中国东部的大型走滑断裂, 在沈阳以北由一支分为两支: 依兰—伊通断裂带和敦化-密山断裂带。 利用遥感数据并结合DEM (数字高程模型)数据对郯庐断裂带北段的依兰-伊通断裂带进行了分析研究。 根据该断裂带的形态特征将其划分成三段(沈阳—开原段、 开原—依兰段、 依兰—萝北段)。 沈阳—开原段为单条断裂, 它分隔了下辽河平原和辽东山地; 开原—依兰段为双边不对称断裂, 两支断裂相向内倾形成地堑, 隔大黑山分隔了松辽盆地和那丹哈达岭; 依兰-萝北段断裂较为隐伏, 该段是小兴安岭和三江盆地的分界。 通过分析依兰—伊通断裂带对河流和其他断裂的错动情况, 进一步揭示了郯庐断裂带曾经历了早期左旋走滑和后期右旋走滑的历史。 另外还对伊通地堑进行了较为详细的描述及说明, 通过对其DEM作横向和纵向的剖面分析证实了其西北边界为主要控盆断裂。  相似文献   

6.
依兰-伊通断裂带地表温度变化分析   总被引:1,自引:0,他引:1       下载免费PDF全文
任雅琼  陈顺云  马瑾 《地震学报》2012,34(5):698-705
GPS结果显示,2011年3月11日日本MW9.0大地震引起了我国东北地区的拉张活动增强,其中,依兰——伊通断裂带最显著.这个变化在温度场中是否也有所响应是一个值得探讨的问题,也是一个利用地表温度进行现今构造活动探索的机会.本文利用2000——2011年的中分辨率成像光谱仪(MODIS)地表温度产品对东北地区地表温度进行了分析,以去除稳定年周期变化的年变残差作为研究对象, 通过空间和时间分析,排除地形、纬度、气象等干扰因素的影响,寻找与构造活动相关的热信息.结果表明, 2001年初和2010年初依兰——伊通断裂北段曾经出现了显著的降温现象,且降温过程持续约两个月.通过气象资料分析,初步认为上述现象并非由气象因素引起.这与GPS远场同震位移结果所显示的依兰——伊通断裂带在日本地震后出现相对比较明显的张性应变相吻合. 初步认为上述降温现象与依兰——伊通断裂的拉张增强有关.   相似文献   

7.
为研究依兰—伊通断裂带黑龙江段构造运动特征,基于2016—2019年GPS和地质资料,解算了该断裂的三维速度场,通过构建断层模型反演了滑动速率。结果显示:依兰—伊通断裂带黑龙江段总体呈下沉趋势,沉降速率在1~2 mm/a,断裂呈右旋走滑态势,闭锁层15 km以下走滑速率为(1.7±0.4)mm/a。佳木斯—萝北段以右旋走滑为主、拉张为辅;五常—佳木斯段以拉张为主、右旋走滑为辅。  相似文献   

8.
利用2009—2017年GPS水平速度场和1990—2018年跨断层短水准资料, 分析西昌地区现今三维地壳活动及主要断裂的活动性。 结果表明: 在西昌地区, GPS水平运动场及应变场的大小和方向发生变化。 E向运动速率由北部的平均约8 mm/a减小到南部的平均约4 mm/a; S向运动以安宁河—则木河断裂为界, 西侧点位的运动速率明显大于东侧的点位。 相对华南地块的水平形变场也显示西昌地区水平运动的差异性。 主应变场在西昌地区以SW—NE向拉张和NW—SE向挤压为主。 大凉山次级块体东侧的张应变和压应变均大于西侧; 最大剪应变率在此次级块体以条带形式展布, 条带上的最大剪应变率大于东、 西两侧; GPS水平运动速率和变形宽度相比1999—2007年资料得到的结果大, 表明安宁河—则木河断裂带处于剪切应变积累阶段, 闭锁程度有所提高。 跨断层水准资料显示, 该断裂存在新的活动迹象, 应力持续积累。 综合分析两种资料结果, 推测区域地震危险性将进一步增强。  相似文献   

9.
李承涛  苏小宁  孟国杰 《地震》2018,38(2):37-50
巴颜喀拉块体东北缘是构造变形和地震活动较强的区域, 2017年九寨沟MS7.0地震就发生在该区域内。 利用多尺度球面小波方法解算GPS应变率场, 分析巴颜喀拉块体东北缘2009年至2017年的应变率场分布特征, 该方法的优点是可以将GPS应变率场按照不同的空间尺度进行小波分解, 给出不同空间尺度的应变率场。 结果表明在2017年九寨沟地震之前, 震中附近应变积累显著, 虎牙断裂北延断裂的左旋走滑速率为3.0 mm/a, 拉张速率为3.1 mm/a, 表明该条断裂以左旋走滑为主兼有拉张特征, 与九寨沟地震的震源机制解一致。 除九寨沟震中附近外, 在岷县与漳县交界处、 理县和汶川、 青川等地区主应变率、 面应变率、 最大剪应变率也较大, 这可能与2013岷县漳县(MS6.6)、 2008年汶川(MS8.0)、 2014年理县(MS4.8)以及2014青川县(MS4.8)地震有关。  相似文献   

10.
利用银川盆地及周边地区1999—2007年的GPS数据,研究了该区域现今地壳水平速度场特征,根据区域地壳主应变率、面膨胀率及最大剪应变率的空间变化以及小震分布特征,结合该地区的地质构造背景,对黄河断裂的南北段差异特征及盆地构造动力和地震危险性分析研究,结果表明:研究区内GPS测站主要运移方向为E-SE向。贺兰山东麓断裂和黄河断裂北段以拉张兼走滑运动为主,而黄河断裂南段以走滑运动为主,盆地整体处于剪切拉分断陷环境;银川盆地比周围块体的主应变率大,最大主应变方向为NW向,以张应变为主,结合面膨胀率和最大剪应变率也都显示盆地内存在较强的拉张和剪切变形,盆地内地震主要分布在南部地区;主应变率、面膨胀率、最大剪应变率和小震活动性均说明黄河断裂南段比北段活动性强;银川盆地地壳变形程度高,而周边稳定块体变形弱,黄河断裂和贺兰山东麓断裂分别位于应变强弱变化的东、西边界上,断裂具有较强的应变积累,表现出较高程度的地震危险性。  相似文献   

11.
台湾地区地壳形变的弹性块体位错模型   总被引:3,自引:1,他引:2       下载免费PDF全文
在经典的非震形变位错模型中,地壳形变被认为是活动块体刚性运动和上部断层锁定影响的叠加,本文对此模型进行了改进: (1) 用活动块体整体运动和内部线性应变、旋转的贡献代替活动块体刚性运动的贡献;(2) 用分层介质地壳模型代替半无限介质模型计算断层锁定的影响. 利用改进后的非震形变位错模型,拟合了台湾地区1990~1995年间GPS观测资料. 结果显示,在东部海岸山脉区,约有30 mm·a-1的汇聚率被奇美断层消耗掉,运动速度从奇美断层向北迅速衰减. 在西部平原地区,南部断层是岛内锁定最为强烈的断层,该地区相应的也是史上灾害性地震多发的地区. 根据反演结果计算出的应变率与旋转率分布与前人结果在大部分地区一致,主应变率场显示台湾大部分地区存在近NW-SE方向的主压应变,主压应变方向呈扇形分布. 旋转率场显示台湾东部和南部地区存在着逆时针旋转率,而西部和北部地区则为顺时针旋转率.  相似文献   

12.
The NE-striking Yilan-Yitong Fault Zone(YYFZ) with a length of ca. 900 km is an important major fault zone in northeastern China. Its origin has been a controversial issue for a long time. Detailed field investigation and comprehensive analyses show that strike-slip faults or ductile shear belts exist as the origination structures on the both shoulders of the Cretaceous-Paleogene grabens. These strike-slip structures are dominated by brittle transcurrent faults, and appear as ductile shear belts only in the Weiyuanpu-Yehe and Shulan parts in the south and middle of the fault zone, respectively. The shear belts strike NE-SW and show steep mylonitic foliation and gentle mineral elongation lineation. Outcrop structures, microstructures and quartz c-axis fabrics demonstrate a sinistral shear sense with minor reverse component for the ductile shear belts. The microstructures suggest deformation temperatures of 400–450°C for the Weiyuanpu-Yehe shear belts and 350–400°C for the Shulan shear belt. A series of zircon U-Pb dating results for deformed and undeformed plutons or dikes in the shear belts constrain the strike-slip motion to the time between 160 and 126 Ma. It is further inferred from ages of main geological events in this region that the fault zone originated in the earliest Early Cretaceous. It is suggested therefore that the southern and middle parts of the Tan-Lu Fault Zone, which originated in Middle Triassic, propagated into northeastern China along the sinistral YYFZ under the earliest Early Cretaceous regional compression that is referred to as the Yanshan B event. The earliest Early Cretaceous initiation of the YYFZ results from both the high-speed oblique subduction of the Izanagi Plate and the final closure of the Mongol-Okhotsk Ocean, but the Izanagi Plate subduction played a major dynamic role in the fault zone origin.  相似文献   

13.
The 40km-long, NEE trending Reshui-Taostuo River Fault was found in the southern Dulan-Chaka highland by recent field investigation, which is a strike-slip fault with some normal component. DEM data was generated by small unmanned aerial vehicle(UAV)on key geomorphic units with resolution<0.05m. Based on the interpretation and field investigation, we get two conclusions:1)It is the first time to define the Reshui-Taostuo River Fault, and the fault is 40km long with a 6km-long surface rupture; 2)There are left-handed dislocations in the gullies and terraces cut by the fault. On the high-resolution DEM image obtained by UAV, the offsets are(9.3±0.5) m, (17.9±1.5) m, and(36.8±2) m, measured by topographic profile recovery of gullies. The recovery measurements of two terraces present that the horizontal offset of T1/T0 is(18.2±1.5) m and the T2/T1 is (35.8±2) m, which is consistent with the offsets from gullies. According to the historical earthquake records, a M5 3/4 earthquake on April 10, 1938 and a MS5.0 earthquake on March 21, 1952 occurred at the eastern end of the surface rupture, which may be related to the activity of the fault. By checking the county records of Dulan and other relevant data, we find that there are no literature records about the two earthquakes, which is possibly due to the far distance to the epicenter at that time, the scarcity of population in Dulan, or that the earthquake occurred too long ago that led to losing its records. The southernmost ends of the Eastern Kunlun Fault and the Elashan Fault converge to form a wedge-shaped extruded fault block toward the northwest. The Dulan Basin, located at the end of the wedge-shaped fault block, is affected by regional NE and SW principal compressive stress and the shear stress of the two boundary faults. The Dulan Basin experienced a complex deformation process of compression accompanying with extension. In the process of extrusion, the specific form of extension is the strike-slip faults at each side of the wedge, and there is indeed a north-east and south-west compression between the two controlling wedge-shaped fault block boundary faults, the Eastern Kunlun and Elashan Faults. The inferred mechanism of triangular wedge extrusion deformation in this area is quite different from the pure rigid extrusion model. Therefore, Dulan Basin is a wedge-shaped block sandwiched between the two large-scale strike-slip faults. Due to the compression of the northeast and southwest directions of the region, the peripheral faults of the Dulan Basin form a series of southeast converging plume thrust faults on the northeast edge of the basin near the Elashan Fault, which are parallel to the Elashan Fault in morphology and may converge with the Elashan Fault in subsurface. The southern marginal fault of the Dulan Basin(Reshui-Taostuo River Fault)near the Eastern Kunlun fault zone is jointly affected by the left-lateral strike-slip Eastern Kunlun Fault and the right-lateral strike-slip Elashan Fault, presenting a left-lateral strike-slip characteristic. Meanwhile, the wedge-shaped fault block extrudes to the northwest, causing local extension at the southeast end, and the fault shows the extensional deformation. These faults absorb or transform the shear stress in the northeastern margin of the Tibet Plateau. Therefore, our discovery of the Dulan Reshui-Taostuo River Fault provides important constraints for better understanding of the internal deformation mode and mechanism of the fault block in the northeastern Tibetan plateau. The strike of Reshui-Taostuo River Fault is different from the southern marginal fault of the Qaidam Basin. The Qaidam south marginal burial fault is the boundary fault between the Qaidam Basin and the East Kunlun structural belt, with a total length of ~500km. The geophysical data show that Qaidam south marginal burial fault forms at the boundary between the positive gravity anomaly of the southern East Kunlun structural belt and the negative gravity anomaly gradient zone of the northern Qaidam Basin, showing as a thrust fault towards the basin. The western segment of the fault was active at late Pleistocene, and the eastern segment near Dulan County was active at early-middle Pleistocene. The Reshui-Taostuo River Fault is characterized by sinistral strike-slip with a normal component. The field evidence indicates that the latest active period of this fault was Holocene, with a total length of only 40km. Neither remote sensing image interpretation nor field investigation indicate the fault extends further westward and intersects with the Qaidam south marginal burial fault. Moreover, it shows that its strike is relatively consistent with the East Kunlun fault zone in spatial distribution and has a certain angle with the burial fault in the southern margin of Qaidam Basin. Therefore, there is no structural connection between the Reshui-Taostuo River Fault and the Qaidam south marginal burial fault.  相似文献   

14.
利用于田震中300 km范围内的1个GPS连续站和12个GPS流动站数据,解算得到了2014年新疆于田MS7.3地震地表同震位移,并反演了发震断层滑动分布,探讨此次地震对周边断裂的影响.地表同震位移结果显示,GPS观测到的同震位移范围在平行发震断裂带的北东-南西向约210 km,垂直发震断裂带的北西-南东方向约为120 km,同震位移量大于10 mm的测站位于震中距约120 km以内;同震位移特征整体表现为北东-南西方向的左旋走滑和北西-南东方向的拉张特征,其中在北东-南西方向,I069测站位移最大,约为32.1 mm,在北西-南东方向,XJYT测站位移最大,约为28.1 mm;位错反演结果表明,最大滑动位于北纬36.05°,东经82.60°,位于深部约16.6 km,最大错动量为2.75 m,反演震级为MW7.0,同震错动呈椭圆形分布,以左旋走滑为主并具有正倾滑分量,两者最大比值约为2.5:1,同震错动延伸至地表,并向北东方向延伸,总破裂长度约50 km,地表最大错动约1.0 m;同震水平位移场模拟结果显示贡嘎错断裂、康西瓦断裂和普鲁断裂等不同位置主应变特征具有差异性,这种差异特征是否影响断裂带以及周围区域的应力构造特征,值得关注.  相似文献   

15.
陈伟  刘泰  佘雅文  付广裕 《地震》2021,41(4):121-135
基于黏弹性球体位错理论, 联合陆地和海底同震GPS数据以及日本本岛330个陆地GPS站点5~10年的震后数据, 反演了日本MW9.0地震的断层滑动模型, 提升了断层滑动分布在细节上的合理性。 首先, 基于日本本岛330个陆地GPS站点震前2年和震后10年的连续观测数据, 获取了日本MW9.0地震震后5~10年的年平均位移, 该时段的位移几乎完全由地幔黏弹性松弛效应引起; 接着, 利用黏弹性球体位错理论对震后5~10年的位移进行反复拟合, 确定了日本MW9.0地震震源及周边地区的地幔黏滞性系数最优解(9.0×1018 Pa·s)。 然后, 联合同震和震后位移数据, 引入黏弹性位错格林函数, 反演了2011年日本MW9.0地震的断层滑动分布。 结果表明, 该地震同震破裂的最大值达到了62.72 m, 同震滑动的总地震矩为4.48×1022 Nm, 相应的矩震级为MW9.03。 由于黏弹性松弛效应引起的震后位移中包含了同震破裂的信息, 基于黏弹性球体地震位错理论, 联合同震和震后位移数据反演断层同震破裂, 有效提高了日本MW9.0地震断层滑动分布的可靠性。 最后, 本文提出的反演方法为同震观测结果缺乏的大地震震后科考提供了理论支撑: 在大地震发生之后, 即使在同震期间没有足够的观测数据, 也可以在震后通过对震源区的加密观测积累的震后数据, 使用本文提出的反演方法优化同震断层滑动模型。  相似文献   

16.
堪察加地区现今地壳运动与变形特征研究   总被引:2,自引:1,他引:1       下载免费PDF全文
利用俄罗斯堪察加地区1995~2005年的GPS观测数据,研究了该区现今地壳水平运动速度场特征.在球坐标系中解算了各应变率分量,分析了应变率场的空间分布特征,并与地震学和地质学研究结果进行了综合对比分析.结果表明,堪察加半岛北部的微板块边界并不明显,堪察加南部测站运动速度大于中部和北部地区,愈靠近东部板块汇聚区,测站速度越大.从东海岸到西海岸,测站水平速度存在明显的梯度衰减特征,水平运动方向与太平洋板块向西北的俯冲方向基本一致.各应变率分量具有东部海岸大于中部和西海岸、从东至西呈梯度衰减的特点.堪察加大部分地区处于EW和NS向压缩状态,局部存在拉张.面应变率结果显示绝大部分为压缩区;刚性转动结果表明大部分地区表现为顺时针转动,北部地区和南端顺时针旋转性明显.东部有效应变率明显大于西部地区,东西向梯度衰减关系明显.主压应变率明显大于主张应变率,特别是在东海岸地区.主压应变率方向与中等以上地震的主压应力轴在水平方向的投影方向基本一致.地壳变形场在空间分布上的不一致性主要与太平洋板块在堪察加半岛东南侧的俯冲深度、俯冲方位角、俯冲倾角和俯冲带的耦合强度有关.  相似文献   

17.
In this work, several seismological observations are presented in order to explain characteristic features of the earthquake sequence which occurred in March 1993 in southwestern Greece, very close to the city of Pyrgos.Fault plane solutions of the largest fore- and aftershocks and the main shock, as well as the directions at which the maximum ground accelerations were recorded suggest that this earthquake sequence has been developed by rupturing three distinct focal planes with different focal mechanisms. The first focal plane, located in the off-shore area, strikes NW-SE, dips SE and includes most of the foreshock activity. The foreshock activity migrated to the northeastern part of the city of Pyrgos and took place on planes with a predominant direction NE-SW. The main shock ofM x =5.5 occurred in a focal plane located between the two above-mentioned areas. Strong motion records of significant shocks of the sequence show peak acceleration values on components consistent with the relevant fault plane solutions.Furthermore, the observed macroseismic field has been compared with synthetic isoseismals computed by using a certain velocity model and the focal mechanism parameters of the main shock.  相似文献   

18.
梁明  王武星  张晶 《地球物理学报》2018,61(7):2691-2704
利用GPS和GRACE观测数据研究了日本MW9.0地震的震后变形特征.GPS观测显示,区域震后位移呈现随指数函数变化特征,变化速率符合大森公式的衰减特性;近五年的震后水平位移累积已达到东向60~165 cm,南向20~65 cm的量值,距震中较远站点已超过同震变化量,且震后变形仍然持续.GRACE观测到显著的震后重力变化,地震破裂两侧的重力变化总体均呈上升趋势,但海洋侧的变化速率较快.联合震后余滑和黏弹性位错理论对震后变形进行了模拟,探索了GPS和GRACE观测的综合应用方法.研究发现,综合考虑震后余滑和黏滞性松弛效应可以对日本地震的震后变形做出较合理的解释,震后初期余滑起主要作用,1至2年以后逐渐减弱,黏滞性松弛作用逐渐增强.在震后变形模拟和区域黏滞性结构反演中形成GPS和GRACE观测结合应用的方法,先基于震后GPS形变估算区域黏滞性结构,而后利用GRACE观测修正深部的黏滞系数,并综合利用这两种观测微调浅层黏滞系数,最终确定区域黏滞性结构.基于该方法反演了日本震源区的地幔黏滞性结构,地震断层破裂两侧的流变参数存在差异,大陆侧的地幔顶层黏滞系数在1.0×1019 Pa·s量级,而海洋侧的则略小于大陆的,在6.0×1018 Pa·s量级.  相似文献   

19.
Paleogene surface tectonics in Japan is not well understood because of the paucity of onshore Paleogene stratigraphic records except for those from accretionary complexes. Paralic Paleogene formations remaining in SW Japan are usually so thin that it is difficult to decipher the tectonics from them. However, the Eocene paralic sedimentary package with a thickness of kilometers indicates syn-depositional tectonic subsidence by a few kilometers in the Amakusa archipelago, west of Kyushu Island. Thus, we made a detailed geological map of the Eocene formations in an area of ~50 square kilometers in the northwestern part of the archipelago. We identified NE-SW and NW-SE trending normal faults, most of which were recognized by previous researchers, and also discovered low-angle faults. NW-SE trending ones are known to be of the Miocene. NE-SW trending and low-angle normal faults are the oldest map-scale structures in the Eocene ones. It is not obvious within the above-mentioned area whether those normal faults are accompanied by growth strata. However, the significant southeastward thickening of the Eocene formations across the Amakusa archipelago suggests that they filled a large half graben with the basin margin fault along the eastern side of the archipelago. This basin model is consistent with the N-S to NW-SE transport directions of the low-angle and NE-SW trending normal faults. Since many NE-SW to EW trending Eocene grabens were formed in the offshore regions west of Kyushu Island and in the East China Sea, the Amakusa region was probably a northeastern branch of the rift system. The geologic structures and depositional ages of the Eocene formations indicate that the Eocene extensional tectonics removed the overlying strata to some extent for the high-P/T Takahama Metamorphic Rocks which crops out to the south of our study area.  相似文献   

20.
2011年日本MW9.0地震(简称日本地震)后沂沭断裂带及其两侧地区地震活动显著增强,研究日本地震对该地区地壳运动及地震潜势的影响十分必要.为此,本文通过112个连续GPS观测站获取了研究区高空间分辨率的日本地震同震形变场并得到如下认识:(1)8个定点地球物理观测的同震响应验证了本文同震形变场的可靠性;日本地震的东向拉张使研究区整体上处于张性同震应变状态,但存在局部挤压区域,其中莱州湾至海州湾的挤压条带穿过沂沭断裂带并对断裂带南北两段产生了不同的同震作用,对南段具有拉张作用,对北段产生挤压作用;(2)同震形变场在鲁东隆起和鲁西断块产生了显著的剪应变,地震b值显示上述区域的构造应力在日本地震后增强,因此同震形变场可能改变了这些区域的应力特征;(3)地震矩张量叠加分析显示,同震形变场短期内对鲁西断块、鲁东隆起区和沂沭断裂带南段累积了地震矩,可能有助于上述区域在日本地震以后的地震活动增强;日本地震对沂沭断裂带北段的地震矩具有释放作用,或许是该区域地震活动减弱的原因.  相似文献   

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