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1.
滇西北地区潜在震源区的划分原则和方法   总被引:2,自引:0,他引:2       下载免费PDF全文
周庆  虢顺民  向宏发 《地震地质》2004,26(4):761-771
在收集、分析前人研究成果的基础上,参考近年来多次工程场地地震安全性评价的野外调查与分析结果,确定了滇西北及其邻区的地震构造标志,进而在该地区重新划分潜在震源区。在有强震发生的地区依地震重复原则划分潜在震源区并确定其震级上限;对于发震构造明显但没有强震记录的地区,根据发震构造规模和活动性特征,依构造类比原则划分潜在震源区;对于活动断裂分段性研究较为清楚的地方,潜在震源区被划分得更细一些;而在断裂隐伏区,则依据地震活动图像及地球物理异常判断潜在源震区的长轴方向  相似文献   

2.
正中小地震的震源参数携带了震源深度处应力场和介质性质变化的信息,监测这些参数的时空演化过程,可以达到监测强震孕育过程中孕震区应力场的目的。同时地震的震源机制解包含了发震断层面解及发震应力场P、T、N轴等参数,反映了区域构造应力场和构造运动特征。因此,开展中小地震震源参数及震源机制研究可为潜在强震震源区及其危险性判断提供依据。四川、云南、新疆等地区处于地质构造复杂地带,地震活动频发,地震灾害严重,历史上曾发生过  相似文献   

3.
胡银磊  张裕明 《中国地震》1997,13(3):207-212
提出了孤立中强地震的潜在震源区划分其参数确定的思路和方法,即在综合考虑孤立中强地震所在地震区的总体地震构造特征与地震活动水平的基础上,利用历史地震等震线,余震分布,区域应力场及震源机制等资料,确定其潜在震源区的参数。  相似文献   

4.
论发震构造特性在潜在震源区参数确定中的应用   总被引:6,自引:0,他引:6       下载免费PDF全文
周本刚 《地震地质》2004,26(4):750-760
发震构造特性是潜在震源区划分及其地震年发生率确定的重要依据。潜在震源区除了反映“未来具有发生破坏性地震的地区”的内涵外,还应反映高震级档地震具有相似复发特征的涵义。由于在地震活动性参数统计单元内,有一些具有不同本底地震的活动构造块体,为更好地反映地震活动的空间不均匀性,考虑潜在震源区的三级划分是有必要的。通过分析潜在震源区内高震级档地震的复发特征,计算预测时段内潜在震源区的高震级档地震的发震概率,采用预测时段内概率等效转换获得地震年平均发生率的方法,有助于在中国地震危险性分析框架内考虑潜在震源区的强震复发特性。另外,文中还对潜在震源区内特征地震次级震级档频度不足的特性和发震构造上强震非均匀性在地震危险性分析中的应用问题进行了探讨  相似文献   

5.
唐山和澜沧地震序列震源区应力场的对比分析   总被引:3,自引:0,他引:3       下载免费PDF全文
刁桂苓  于利民 《地震学报》1995,17(3):305-311
以唐山地震序列167次MS4地震的震源机制和澜沧地震序列163次中小地震的震源机制为基本资料,系统分析了各自震源区应力场的状况.结果表明,震源区应力场的方向稳定,没因发生强震序列造成显著的改变.余震机制解的优势空间取向与主震机制解相近,受主震及强余震影响,部分余震机制解有所偏离,但偏离程度随时间减小.唐山和澜沧序列中优势取向的机制解占全部解的比例相当,暗示构造应力场对强震序列的控制作用大体相同.经震源机制的聚类分析发现,唐山较澜沧序列类型多、取向分散,分析认为是唐山地区参与活动的构造比澜沧地区参与活动的构造复杂所致.   相似文献   

6.
在四川地区新的危险区划图的编制工作中,我们根据前人的研究成果和近10年来新增补的大量资料,通过对四川地区现代构造应力场空间分布特征的再研究,对四川地区可能的强震潜在震源区及其未来地震危险性进行了研究。1.四川地区现代构造应力场的空间分布特征图1和图2分别给出了四川地区中、强地震震源机制解、小地震震源机制解和小地震综合断层面解的主压应力轴的空间分布,同时给出了应力场分区情况。从图1和图2可以  相似文献   

7.
华北4次中、强地震前震源区及其附近应力场的变化   总被引:6,自引:1,他引:6       下载免费PDF全文
使用小震机制解资料 ,分析了 1975年海城 7 3级和 1976年唐山 7 8级强震及 1983年菏泽 5 9级和 1995年苍山 5 2级中强震前 ,震源区及其周围不同构造部位应力场的时、空变化 ,证实震前震源区附近应力场曾有某些异常改变 ,如唐山强震前震源区周围出现长达 4a多的小震机制解主应力轴一致性取向的现象 ,菏泽地震前小震机制解P轴“集中—转向” ,苍山地震前P轴偏转且一致性增强。同时还发现 ,唐山地震前应力场异常变化开始时间可能早于 1972年 ;震源区内的陡河台与源外区的昌黎台小震综合机制解反映出震前的受力差异 ;震源断层附近不同应力区内震源机制解和地震活动有时空动态差异。这些现象一定程度上提供了不同构造条件和应力背景下 ,中、强震前震源区不同构造部位力学状态的改变或地震孕育过程的信息 ,对研究不同地震的孕震过程及差异有一定意义。  相似文献   

8.
滇中地区震源机制一致性参数时空分布与强震活动   总被引:1,自引:0,他引:1  
利用云南数字地震台网记录到的地震直达波Pg、Sg振幅资料,采用层状介质中点源位错模型的广义透射系数的快速算法,计算理论地震图的Pg、Sg最大振幅比值,将其与观测值拟合,反演得到1999年至2009年11月14日滇中地区206个中小地震的震源机制解,计算震源机制解应力主轴与相应的区域构造应力场主轴之间的一致性参数,分析震源机制一致性参数时空分布与强震活动的关系.分析表明,强震发生前3年至数月,强震震源区附近出现多个震源释放应力场与区域应力场一致或接近的中小地震,强震就发生在中小震震源机制一致性参数低值分布区内或其边缘附近.  相似文献   

9.
在系统收集和分析中国大陆的活动构造、地震活动和地球物理场资料的基础上,初步圈定出769个构造物理潜在震源,并对其中477个位于主要强震区、带内的潜在震源进行了空间几何定量描述和基本震源参数的系统分析,在GIS平台上开发了分析系统,逐一计算了每一潜在震源的十年发震概率,圈定了1999~2008年的强震危险区,根据发震概率的大小对危险区的危险性进行分类。近几年发生的强震与预测结果的对比检验结果表明,用构造物理模型确定的十年地震危险区具有较好的预测效果。  相似文献   

10.
大震前显示的地震震源机制趋于一致的变化   总被引:3,自引:0,他引:3  
在构造应力场的制约下强震孕育过程中特定阶段, 震源区中小地震震源机制与构造应力场的方向大体一致, 根据这一特点, 定义各个震源机制解的P轴, B轴, T轴和构造应力场的3个应力主轴在3维空间的夹角之和为一致性参数a, 研究强震前应力场变化特征。 对2006年11月15日千岛岛弧MW8.3地震和2001年6月23日秘鲁MW8.4地震研究表明, 大震发生前孕震区一致性参数a比较低, 震源机制与构造应力场的差异较小, 说明这些前震受到了震源区应力场的统一作用, 而主震发生之后震源机制解的一致性参数比较高, 说明后续发生的地震的震源机制散乱, 表明背景应力场的控制作用开始减弱。  相似文献   

11.
The seismicity of Longmenshan fault zone and its vicinities before the 12 May 2008 Wenchuan MS8.0 earthquake is studied. Based on the digital seismic waveform data observed from regional seismic networks and mobile stations, the focal mechanism solutions are determined. Our analysis results show that the seismicities of Longmenshan fault zone before the 12 May 2008 Wenchuan earthquake were in stable state. No obvious phenomena of seismic activity intensifying appeared. According to focal mechanism solutions of some small earthquakes before the 12 May 2008 Wenchuan earthquake, the direction of principal compressive stress P-axis is WNW-ESE. The two hypocenter fault planes are NE-striking and NW-striking. The plane of NE direction is among N50°?70°E, the dip angles of fault planes are 60°?70° and it is very steep. The faultings of most earthquakes are dominantly characterized by dip-slip reverse and small part of faultings present strike-slip. The azimuths of principal compressive stress, the strikes of source fault planes and the dislocation types calculated from some small earthquakes before the 12 May 2008 Wenchuan earthquake are in accordance with that of the main shock. The average stress field of micro-rupture along the Longmenshan fault zone before the great earthquake is also consistent with that calculated from main shock. Zipingpu dam is located in the east side 20 km from the initial rupture area of the 12 May 2008 Wenchuan earthquake. The activity increment of small earthquakes in the Zipingpu dam is in the period of water discharging. The source parameter results of the small earthquakes which occurred near the initial rupture area of the 12 May 2008 Wenchuan earthquake indicate that the focal depths are 5 to 14 km and the source parameters are identical with that of earthquake.  相似文献   

12.
采用前人反演得到的云南禄劝地震的地震矩张量和主震及部分余震的震源机制解,以该主震震中为中心在全球CMT目录中查询到的部分地震的震源机制解,先将地震矩张量转化为震源机制解,运用精细网格搜索反演方法将震源机制解反演得到禄劝地震和其周边地区的应力场。对反演得出的两个应力场进行差异性对比研究,结果表明禄劝地震震源处主压应力场为NNW—SSE向,主压应力与主张应力相当,周边地区的主压应力方向为NW—SE,断层破裂面倾角大,以走滑正断层为主,主压应力占优势。但是由于云南地区主要由NNW—SSE和NW—SE方向的主压应力控制,并受本文所选的周边地区的经纬度及所处地区的控制,所以该区域在总体上受NW—SE方向的压应力控制,局部地区受NNW—SSE方向的压应力控制。该结果可以用来分析该地区的地震地质背景和断层形成条件,对地球动力环境的研究有一定的意义。  相似文献   

13.
由地震释放的地震矩叠加推导平均应力场   总被引:2,自引:0,他引:2       下载免费PDF全文
文中给出了根据地震释放的总地震矩求解平均应力场的方法,并使用加入随机误差的人工合成震源机制解数据和唐山余震区震源机制解数据对其进行检验。由检验结果可知,该方法可以应用于区域平均应力场的求解。使用的震源机制解资料越多,所得结果越稳定,且更接近真实的区域应力场。该方法的优点是: 用每个地震的震级作为权重,能够较好地反映出大小地震在应力场反演中的不同贡献; 并且在计算过程中不需要知道震源机制解2个节面中哪个节面为地震断层面。  相似文献   

14.
Based on analysis of background of geological tectonic movement and strong earthquake activity, we first obtained the focal mechanism solutions using amplitude ratio and CAP method, then determined the characteristic of average stress field of the study area by inversion of the stress field. On this basis, we selected the source mechanism consistency parameter as the inspection index to obtain the latest changes of stress field in Hetao seismic zone based on its temporal and spatial analysis. Two methods were used in the stress field inversion for comparison and analysis, which are average stress axis tensor and LSIB(Linear stress inversion bootstrap, LSIB). According to the geological tectonic movement and focal mechanism solutions of MS≥4.0 earthquakes from 1970, we judge that the stress field evolution process of Hetao seismic belt is controlled jointly by vertical difference movement and horizontal shear movement, resulting in that the normal fault and strike-slip fault mechanisms are dominating.Taking into account the station layout of the study area, and in order to ensure the accuracy of calculation, we calculated 224 earthquakes focal mechanism solutions by using amplitude ratio and CAP method, including 164 earthquakes with 2.8≤ML<3.5, 42 earthquakes with 3.5≤ML<4.0, and 18 earthquakes with ML≥4.0; The statistical results on type of focal mechanisms show that, there are 142 strike-slip earthquakes(63.4%), 50 normal fault earthquakes(22.3%)and 32 thrust fault earthquakes(14.3%). In this study period(from 2001 to 2012), most earthquakes had a strike-slip mechanism in Hetao seismic belt, this is one of the inherent characteristics of the stress field.The result of average stress axis tensor and LSIB shows that, the azimuth of maximum compressional stress is 47°~52°, direction is NE-SW; The azimuth of minimum compressional stress is 313°~322°, direction is NW-SE; This indicates that, the stress field characteristics of Hetao seismic belt and its sub-block are not completely consistent. Linhe Basin exhibits coordinated stress field characteristics with Hetao seismic belt, but Hubao Basin exhibits regional differences, direction of compressive stress has clockwise deflection in Baotou area, and the compressive stress direction is NEE. This heteropical character of stress field is also confirmed by horizontal projection distribution of stress axis of historical strong earthquakes and recent moderate and small earthquakes. Since 2003, the temporal sequence curve of consistency parameter of Hetao seismic belt had a downward trend, this change was caused by focal mechanism consistency parameter of Linhe to Wuhai area, which indicates that this structural position is possible to be a priority area for stress accumulation and accelerated release in future.  相似文献   

15.
中、强震前应力场动态演变特征综合分析   总被引:4,自引:0,他引:4  
使用由地震记录 P波初至波符号求取的小震综合机制解资料 ,分析研究了华北地区 4次中强地震前震源区及其附近小震应力场的动态变化。结合前人的有关研究成果 ,综合归纳了中、强地震前震源区及附近应力场的动态演变特征 ,并尝试给出了小震综合机制解参数预报地震的判据指标。  相似文献   

16.
On October 17, 2014, a MS6.6 earthquake occurred in Jinggu, Yunnan. The epicenter was located in the western branch of Wuliang Mountain, the northwest extension line of Puwen Fault. There are 2 faults in the surrounding area, one is a sinistral strike-slip and the other is the dextral. Two faults have mutual intersection with conjugate joints property to form a checkerboard faulting structure. The structure of the area of the focal region is complex. The present-day tectonic movement is strong, and the aftershock distribution indicates the faulting surface trending NNW. There is no obvious surface rupture related to the known fault in the epicenter, and there is a certain distance from the surface of the Puwen fault zone. Regional seismic activity is strong. In 1941, there were two over magnitude 7.0 earthquakes in the south of the epicenter of Jinggu County and Mengzhe Town. In 1988, two mainshock-aftershock type earthquakes occurred in Canglan-Gengma Counties, the principal stress axes of the whole seismic area is in the direction of NNE. Geological method can be adopted to clarify the distribution of surficial fracture caused by active faults, and high-precision seismic positioning and spatial distribution characteristics of seismic sequences can contribute to understand deep seismogenic faults and geometric features. Thus, we can better analyze the three-dimensional spatial distribution characteristics of seismotectonics and the deep and shallow tectonic relationship. The focal mechanism reveals the property and faulting process to a certain extent, which can help us understand not only the active property of faults, but also the important basis for deep tectonic stress and seismogenic mechanism. In order to study the fault characteristic of the Jinggu earthquake, the stress field characteristics of the source area and the geometric parameters of the fault plane, this paper firstly uses the 15 days aftershock data of the Jingsuo MS6.6 earthquake, to precisely locate the main shock and aftershock sequences using double-difference location method. The results show that the aftershock sequences have clustering characteristics along the NW direction, with a depth mainly of 5~15km. Based on the precise location, calculations are made to the focal mechanisms of a total of 46 earthquakes including the main shock and aftershocks with ML ≥ 3.0 of the Jinggu earthquake. The double-couple(DC)component of the focal mechanism of the main shock shows that nodal plane Ⅰ:The strike is 239°, the dip 81°, and the rake -22°; nodal plane Ⅱ, the strike is 333°, the dip 68°, and the rake -170.31°. According to focal mechanism solutions, there are 42 earthquakes with a focal mechanism of strike-slip type, accounting for 91.3%. According to the distribution of the aftershock sequence, it can be inferred that the nodal plane Ⅱ is the seismogenic fault. The obtained focal mechanism is used to invert the stress field in the source region. The distribution of horizontal maximum principal stress orienation is concentrated. The main features of the regional tectonic stress field are under the NNE-SSW compression(P axis)and the NW-SE extension(T axis)and are also affected by NNW direction stress fields in the central region of Yunnan, which indicates that Jinggu earthquake fault, like Gengma earthquake, is a new NW-trending fault which is under domination of large-scale tectonic stress and effected by local tectonic stress environment. In order to define more accurately the occurrence of the fault plane of the Jinggu earthquake, with the precise location results and the stress field in the source region, the global optimal solution of the fault plane parameters and its error are obtained by using both global searching simulated annealing algorithm and local searching Gauss-Newton method. Since the parameters of the fault plane fitting process use the stress parameters obtained by the focal mechanism inversion, the data obtained by the fault plane fitting is more representative of the rupture plane, that is, the strike 332.75°, the dip 89.53°, and the rake -167.12°. The buried depth of the rupture plane is 2.746km, indicating that the source fault has not cut through the surface. Based on the stress field characteristics and the inversion results of the fault plane, it is preliminarily believed that the seismogenic structure of the Jinggu earthquake is a newly generated nearly vertical right-lateral strike-slip fault with normal component. The rupture plane length is about 17.2km, which does not extend to the Puwen fault zone. Jinggu earthquake occurred in Simao-Puer seismic region in the south of Sichuan-Yunnan plate. Its focal mechanism solution is similar to that of the three sub-events of the Gengma earthquake in November 1988. The seismogenic structure of both of them is NW-trending and the principal stress is NE-SW. The rupture plane of the Jinggu main shock(NW direction)is significantly different from the known near NS direction Lancang Fault and the near NE direction Jinggu Fault in the study area. It is preliminarily inferred that the seismogenic structure of this earthquake has a neogenetic feature.  相似文献   

17.
基于1999—2007年山西断陷带GPS站点位移速率,采用格林函数法计算了山西断陷带地壳10 km深处的最大主应力和最大剪应力变化,并与区域地质构造、中强地震活动及其震源机制解等对比分析,结果表明:山西断陷带中强地震活动受区域构造应力场的控制,现今应力场变化强烈的区域,地震活动水平相对较高,地震震源机制与构造应力场变化特征一致性较强;构造应力场变化和中强地震活动还受构造相关区强震活动的影响,2009年以来忻定盆地原平段至石岭关隆起区中强地震活跃可能与汶川8.0级地震影响有关;山西南部尤其是运城盆地具有较高的背景应力水平,应进一步关注该区域的地震危险性。  相似文献   

18.
利用垂直向和波振幅比方法计算了2003年1月至2009年10月间宁夏北部及邻区的31个中小地震震源机制解,然后对计算所得的31个地震震源机制解进行系统聚类及应力场分析,并利用格点尝试法研究阿拉善区域(I区)和银川盆地及以北地区(II区)的平均震源机制解。结果表明:31个中小地震中走滑型地震占了近77%,显示出宁夏北部及邻近地区地震错动方式以近走滑为主;I区域地震产生的震源区构造变形是近南北向发生压缩,近东西向发生相对扩张;II区域构造应力场主压应力方向以水平作用为主,地震产生的震源区构造变形是北东向发生压缩,北西向发生相对扩张。  相似文献   

19.
欧亚地震带现代构造应力场及其分区特征   总被引:1,自引:0,他引:1  
利用美国哈佛大学矩心矩张量目录中的2818个地震的震源机制解资料,分析了欧亚地震带及其5个分区现代构造应力场的基本特征,给出了5个分区的震源机制主压应力方向分布图。结果表明:①欧亚地震带以逆断型和走滑型断层活动为主;②地中海地震区以走滑断层活动为主,主压应力方向为SSW向;③伊朗—阿富汗—巴基斯坦地震区以逆断型断层活动为主,主压应力优势方向为NNE—NS向;④喜马拉雅地震以逆断型为主,主压应力优势方向为NS和NE向;⑤川—滇—缅地震区以走滑断层活动为主,主应力场方向为NNE向;⑥印度尼西亚地震区以逆断型断层活动为主,主压应力优势方向为NE—SSW向。各分区的主压应力方向明显受其所在区域板块运动的影响,由此推测板块运动可能是产生欧亚地震带构造应力的主要力源。  相似文献   

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