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1.
以2011年8月11日在伽师—阿图什交界处发生的5.8级地震为例,利用MODIS的LST产品数据,采用STL分解法有效地去除地表温度时空数据中的年变趋势及季节因素周期性的影响,对其余的残余项进行GESD异常检测,并分析2008年1月1日至2013年1月1日的LST异常及其他地震的关系数据,研究结果表明:(1)地表温度的变化具有明显的时空变化趋势;利用STL分解法可以看出震前存在明显的热红外异常,增温现象经历了"出现-扩大-分散增温-增温幅度达到极值-消失-发震"等几个阶段。(2)发震前四个月研究区周围存在明显的热红外异常,2月10日发震断层周围出现大面积异常,异常特征持续2个月后的4个月发震,峰值距发震时刻时间间隔较长。(3)余震分布与断裂带和热红外异常分布特征相关,震后大部分余震主要分布在主震发生的震前出现热红外异常的断裂带附近。(4)通过对比同地区相似震例发现,本次地震与2018年9月4日伽师县MS5.5地震的热异常特征有许多共同点,其中相同的峰值距发震时刻的时间间隔具有一致性,为震前热红外异常特征的归纳提供典型的参考信息。该次地震热红外异常显著,进一步验证了...  相似文献   

2.
LIU Yue  SHAO Zhi-gang 《地震地质》2016,38(4):1070-1081
According to the Region-Time-Length (RTL) algorithm,the analysis of seismicity changes prior to the 2014 Yunnan Jinggu MS6.6 earthquake was conducted by using the earthquake catalogues about 6 and 15 years before this earthquake,respectively.When the studied period was nearly 6 years,an enhancement of seismic activity was detected around the epicenter since the beginning of 2013.The anomalies mainly distributed in the region of 22.5°~24.5°N and 99°~102°E.The range and degree of anomalies changed from small to large,and then to small chronologically.As the surface integral in respect to RTL,the physical parameter IRTL,which could reflect the regional seismicity level,began to increase since August 2013,and then reduced after reaching the peak point.The time length from the peak point of IRTL curve to the earthquake occurrence was 9 months.When the analyzed catalogue was nearly 15 years,the 2007 Ninger MS6.4 occurred in the studied region.Seismicity quiescence was detected prior to the Ninger MS6.4.Before the Jinggu MS6.6,seismicity quiescence was detected firstly,and then enhanced activity was observed 1 year prior to the earthquake occurrence.The anomalies mainly distributed in the region of 22.5°~24.5°N and 99°~102°E.The time length from the peak point of IRTL curve to the earthquake occurrence was 7 months.The above study showed that even the earthquakes location was near and the magnitude was close to each other,a big difference in seismic activity before the earthquakes may exist.Before the Jinggu MS6.6,there was some difference in seismicity changes according to different beginning time of catalogues,but the distribution of anomalies and the time length from the peak point of IRTL to the earthquake occurrence were uniform.So there was an important significance for exploring the relationship between the distribution of anomalies and the earthquake location,and the relationship between the time of the peak point of IRTL and the earthquake occurrence time.  相似文献   

3.
姚休义  滕云田  解滔 《地震学报》2019,41(3):343-353
基于2016年5月29日—2018年5月28日中国静止气象卫星FY-2E (FY-2G)的连续亮温观测数据,利用连续小波变换法分析了2018年5月28日松原MS5.7地震前震中附近(119°E—134°E,40°N—50°N)热红外亮温相对小波能谱的时空演化。结果显示:自2018年2月起,热红外亮温相对小波能谱首先在北西向的第二松花江断裂前郭部分出现高值异常;随后异常范围沿第二松花江断裂前郭部分和扶余—肇东断裂扩展,至2018年3月异常范围及幅值达到峰值;而后异常空间分布逐渐向震中附近收缩成一条NE走向的沿扶余—肇东断裂分布的窄带状区域,异常幅值逐渐降低;最终于4月中旬异常在该区域内消失,其后约40天发生松原MS5.7地震,震中位于异常区域的边缘。此外,本文还分析了2013年以来研究区域内热红外亮温相对小波能谱高值异常与所发生地震的对应关系,结果显示:在7组异常中有4组异常出现后有地震发生,且此4次地震为该时段内研究区内所发生的所有浅源地震。   相似文献   

4.
刘月  吕晓健 《地震学报》2016,38(2):208-219
基于区域-时间-长度(RTL)算法,本文以汶川MS8.0、 于田MS7.3、 芦山MS7.0、 鲁甸MS6.5及景谷MS6.6地震为例, 对强震前地震活动异常空间分布与发震地点的关系进行分析, 并根据新提出的物理参数区域-时间-长度的面积分IRTL探索区域地震活动水平与地震发生时间的关系. 结果显示:3次MS≥7.0强震前均检测到地震活动平静, 2次MS>6.0地震前均检测到地震活动增强, 这些地震活动平静和增强异常主要分布在震中及其附近潜在发震断裂带及周边, 异常范围和异常程度随时间由小到大再到小. MS≥7.0强震前, 地震活动平静主体区的IRTL曲线在震前1—3年从零值下降至低谷后回升,低谷点与地震发生的时间间隔为9—18个月; 鲁甸MS6.5和景谷MS6.6地震前, IRTL曲线分别在震前1年和1.8年由低值开始上升, 达到峰值后回落, 峰值点与地震发生的时间间隔分别为3个月和9个月. 本文结果表明, 地震活动平静的IRTL低谷点和地震活动增强的IRTL峰值点对地震发生可能有一定的指示意义.   相似文献   

5.
以中国静止气象卫星FY-2C/2E红外遥感资料为依据,采用小波变换与功率谱相对变化法对2014年10月7日云南景谷MS6.6地震进行震例数据处理和分析。结果显示:震前热异常具有明显时空特征,2014年8月上旬震中及其周围区域出现热红外异常,异常区范围随时间逐渐扩大、幅度陡增;8月30日左右异常面积达到最大,异常持续时间近一个月,异常幅度最大值达到平均值的14倍多,最大值45天后发生地震;该次地震热红外异常特征显著,容易识别,可作为一种识别地震热异常信息的判据,进一步验证卫星热红外异常在地震预判方面的作用。  相似文献   

6.
陈兆辉  陈石  张双喜  刘金钊 《地震》2021,41(1):25-39
本文基于EGM2008重力场模型研究了青藏高原东南缘均衡重力异常和多尺度的布格重力异常特征,以鲁甸和景谷地震为例,认识其深部构造环境和动力学过程,为该区域的构造运动和地震孕育环境研究提供依据.结果表明,研究区布格重力异常和均衡重力异常与地质构造格局相关性较好,川滇地块剧烈的区域布格重力异常和非均衡状态与其强烈的地壳变形...  相似文献   

7.
本文研究了2010年2月27日智利8.8级地震前后地球表面潜热通量的时空演化过程,并分析了可能的潜热通量异常及其与地表温度变化的关系.结果表明:(1)此次地震及其强余震前出现了三次明显的潜热通量异常,第一次潜热通量异常出现于主震1个月前,主要分布在震中及其东南陆区,第二次潜热通量异常出现在主震前7天,异常区分布在震中西...  相似文献   

8.
The Hutubi MS6.2 earthquake of December 8, 2016 is a pure thrust event in the northern Tianshan thrust fold belt. The earthquake occurred between the Qigu Fault and the Junggar southern margin fault, which are both thrust faults. Based on mobile gravity measurements from 2013 to 2018 in the northern Tianshan, the gravity net adjustment was accomplished using Urumqi absolute gravity observation point as the datum, and the absolute gravity value of surface observation points were obtained. In order to eliminate the seasonal effect on gravity variation, the paper uses the observation data in May per annual as studying objects and obtains the temporal-spatial dynamic evolution images of gravity field differences in the northern Tianshan at different time scales as well as the time series of gravity variation of some points in the adjacent area of the epicenter. The characteristics of regional gravity variation before and after the Hutubi MS6.2 earthquake on December 8, 2016 and their relations are analyzed systematically. The results show that: 1)The gravity variations in the study area are dramatic in generally, and the contours of gravity variation are consistent with the main faults basically. There was a four-quadrant distribution near the epicenter before the earthquake, and the Hutubi MS6.2 earthquake occurred near the center of the four-quadrant distribution and at the turn of the gravity variation contour. The three years' cumulative gravity variation before the earthquake and the gravity variation after the earthquake are inversed, and the variation amplitudes are equivalent, suggesting that the MS6.2 earthquake has released the stress and the energy accumulated before the earthquake. 2)This paper focuses on the analysis of gravity variation at the observation points on both sides of the Junggar southern margin fault near the epicenter. Regional gravity variation and gravity time series show that gravity variations at the same side of the Junggar southern margin fault are basically consistent, however, gravity variations at the different sides of the Junggar southern margin fault are different from each other obviously, indicating the difference of material migration laws in different structural regions. In addition, the strain energy accumulated in the epicenter is basically released after the earthquake, and the area nearby the epicenter tends to be stable. 3)The Hutubi MS6.2 earthquake occurred near the center of the four-quadrant and at the turn of the high-gradient zone of gravity variation, reflecting the location of strong earthquake is related to the distribution of four-quadrant of regional gravity variation, the high-gradient zone of regional gravity variation and its turn. It has a unique advantage in determining the location of strong earthquake using gravity variation results. The regional spatial-temporal gravity variation before the earthquake is manifested as a systematic evolution process of “steady state→regional gravity anomaly→four-quadrant distribution→earthquake occurring in the reverse process”. Studying the temporal-spatial evolution characteristics of gravity field before and after Hutubi MS6.2 earthquake has important practical significance for understanding the occurrence law of large earthquakes and capturing the precursory information of earthquakes.  相似文献   

9.
应用四川芦山MS7.0和汶川MS8.0震中周围部分地电场观测台站的资料,主要利用地电场波形比较和极化方位变化两种方法,并结合观测台站的工作日志,对两次地震前地电场观测资料进行了分析研究,并得出:芦山MS7.0和汶川MS8.0地震前部分台站地电场波形出现变异现象,主要表现为两种形式:日变波形的畸变(如盐源台和泸沽湖台)和相应时段地电场频谱特性出现变化,这些变异基本上出现在震前1~2个月内;利用两次地震前地电场观测的日均值计算了部分观测台站的地电场极化方位,发现在震前地电场的极化方位出现了大幅变化,最大变化幅度达160°,最小变化幅度也有10°;初步研究还发现,两次地震前夕,震中周围部分台站极化方位的正向或反向延长线,相汇集的区域与地震的震中有一定联系;对于研究所得结果,从地震电信号的产生机制和震源特性方面进行了尝试性理论解释.  相似文献   

10.
本文将地震释放能量作为地震活动场的基本要素, 采用自然正交函数展开方法, 系统研究2014年景谷6.6级地震震中区域地震活动能量场的时空特征。 结果表明, 景谷6.6级地震前能量场的前4个主要特征值对应的典型能量场时间因子都出现明显上升变或下降异常, 空间等值线形成局部能量高值异常危险区, 可能是景谷 6.6级地震空间异常的中短期特征。 我们还进一步研究了景谷6.6级地震前后空间异常随时间的演变, 给出了异常发展变化模式, 最后应用研究地震资料的累积次数从物理角度解释异常形成的机制。  相似文献   

11.
利用DEMETER卫星数据分析强震前后的电离层异常   总被引:1,自引:0,他引:1  
基于法国DEMETER卫星观测的离子温度(Ti)、 VLF电磁场单频点频谱数据探索了2008年5月12日汶川MS8.0、 2010年1月12日海地MS7.3和2010年2月27日智利MS8.8等3次强震前后与地震有关的电离层异常现象. 结果发现, 汶川地震前3天(5月9日)震中北偏西方向离子温度明显升高, 震前4天(5月8日)VLF磁场低于200 Hz的频段范围频谱在震中2°以内有明显突升; 智利地震前9天(2月18日)震中北东方向离子温度有剧烈扰动, 震前4天(2月23日)VLF磁场100—160 Hz频段范围内出现突升; 海地地震震前没有观测到明显的异常现象, 但地震发生当天(震后约4—5小时)的Ti, 40—160 Hz频段电场频谱, 以及120—480 Hz磁场频谱均有明显突升, 应为地震发生后能量释放所引起. 分析认为, 不同地震由于发震机制等各种情况的不同, 其地震前后的表现也各不相同. 虽然目前没有直接的证据表明本文研究的异常变化是由地震的孕育和发生引起的, 但在数据处理中已尽可能排除了太阳、 地磁等因素的影响, 并且研究结果与前人的研究经验吻合, 因此本文发现的异常可能与地震发生的关系较大.   相似文献   

12.
董超  陈斌  袁洁浩  王振东  王粲 《地震学报》2021,43(4):453-462
本文利用2019年和2020年两期的全国流动地磁矢量数据,针对玛多MS7.4地震震中附近的岩石圈磁场空间分布,分析研究了岩石圈磁场各个分量的震前变化特征。结果表明,玛多MS7.4地震发生前,震中附近的岩石圈磁场分量均发生了不同程度的变化:震中位于各分量的弱变化区域和零变线附近;震中位于各分量的高梯度带和低梯度带之间。本文证实了地震发生前会引起岩石圈磁场变化这一现象,并总结了震前地磁分量的变化特征,为今后强地震(尤其是M≥7.0地震)的震磁关系研究提供了一个震例参考。   相似文献   

13.
2014年2月12日新疆于田发生MS7.3地震,该震前1天曾发生MS5.4前震,震后余震活动频繁.截止到2月20日12时,该地震序列记录到4000多次余震,最大余震为2月12日MS5.7地震,序列类型为前震—主震—余震型.该地震前震的b值明显低于该区域正常活动的b值和余震的b值.这次地震位于西昆仑断裂带与阿尔金断裂带的交汇区域的阿什库勒断裂北段,震源机制解为走滑型.余震区NE向长70 km、宽20 km,分为主余震分布区和次余震分布区,其中ML4.0以上强余震基本位于NE向主余震分布区,N--S向的次余震分布区则以ML3.0左右地震分布为主,显示该部分可能受到主震的触发作用.于田地区曾发生的2008年3月21日MS7.3地震的震源机制解为正断型,距这次地震约100 km;2012年8月12日发生的MS6.2地震的震源机制解为正断型,距这次地震约10 km.该地区的发震构造背景是:在NE向阿尔金断裂带尾端向SW方向延伸过程中,左旋走滑作用逐渐转换为拉张作用,形成多条左旋走滑兼具拉张作用的断裂. 2014年于田MS7.3地震的发震模式表现为:左旋走滑的阿什库勒断裂北段与南段因速率差异而产生的小型构造盆地,在区域拉张作用力下顺时针旋转;2008年MS7.3张性地震后区域的伸展作用增强,导致盆地南侧的苦牙克断裂发生2012年MS6.2张性地震,该地震引起2014年MS5.4前震,两者激发其后在盆地北侧阿什库勒断裂发生了2014年MS7.3主震.   相似文献   

14.
张丽峰  郭晓  章鑫  屠泓为 《地震学报》2018,40(6):797-808
以中国静止气象卫星亮温数据为数据基础,采用小波变换和功率谱估计方法进行处理分析,并对处理后的数据进行时空扫描。结果表明:① 在2017年8月8日九寨沟MS7.0地震前,沿龙门山断裂带存在一条热红外辐射增温带,其热辐射异常主要分布于四川盆地边缘,异常面积最大可达6×104 km2,九寨沟地震即发生在增温区域的边缘;② 九寨沟地震的相对功率谱时序演化特征显示,2017年7月初相对功率谱幅值迅速升高以后,长时间持续呈高幅值状态,且与过去十年的数据相比相对功率谱较为突出,直到地震后一段时间才恢复;③ 九寨沟地震异常的分布与汶川地震前热辐射异常展布相似,对其它发生在含油气盆地边缘的地震进行综合分析认为,热辐射异常均具有类似盆地形态的特征,反之,这种类似盆地形态的异常与MS≥6.5地震的对应率为75%;④ 地震盆地效应是位于盆地边缘的、具有不同发震构造的地震表现出相似的热辐射空间展布的主要原因,与地球放气理论机理解释相一致。   相似文献   

15.
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   

16.
Based on the mobile gravity observation data in 2014-2016 in Guangxi and its adjacent areas, this paper systematically analyzed the changes of regional gravity field and its relation to the MS5.4 Cangwu, Guangxi earthquake on July 31, 2016, and combined with GPS observation data and seismic geological survey results, discussed the temporal and spatial distribution characteristics of the changes of regional gravity field and its mechanism. The results show that:(1) Before and after the MS5.4 Cangwu earthquake, the gravity anomaly changes near the earthquake area were closely related to the major faults in space, which reflects the crustal deformation and tectonic activities that caused the surface gravity change along the seismogenic fault in the period of 2014-2016; (2) The gravity changes near the epicenter before and after the MS5.4 Cangwu earthquake showed an evolution process in which the positive gravity anomaly zone changed to the negative gravity anomaly zone, a gravity gradient belt appeared along NNE direction and the earthquake occurred in its reverse change process; (3) The epicenter of the MS5.4 Cangwu earthquake located both near the gravity gradient belt and in the zero transition zone of the surface strain gradient and the edge of the high maximum shear strain rate area, the observational fact further proved that the dynamic image of gravitational field and deformation field have important instruction significance to the location prediction of strong earthquakes; (4) in recent years, the gravity dynamic change in northwestern Guangxi presented a four-quadrant distribution pattern, and there is the risk of generating earthquake of magnitude about 5 in the center of the quadrants.  相似文献   

17.
为考察2014年10月7日景谷M_S 6.6地震前的可能的中长期地震前兆现象以及相关的孕震物理过程,采用加速矩释放(AMR)现象对此次地震进行了分析,首先用T=15 a, R=100 km的时空窗对CBS释放曲线的均方根残差RMS在m-tf二维空间中的分布以及最小RMS对应的m值随时间的变化分析,然后用震前15个月地震资料以逐3个月的扫描方式,对T-M_C二维空间中矩释放指数m值的分布进行分析。结果表明:景谷M_S 6.6地震前在震中附近100 km范围内, m值随着时间逐渐逼近实际发震时刻而逐渐减小,时间上有逐渐趋近于临界状态的趋势,空间上震前似存在AMR逐渐向震中附近"迁移"的现象。  相似文献   

18.
应用MODIS遥感数据中反应地表温度的数据波段,对2011年3月11日的日本9.0级地震影响区域进行震前震后的变化检测分析,结果表明,区域范围的温度异常逐月、逐天变化皆较为显著,可为大地震的震情预测提供依据。  相似文献   

19.
We analyzed the variation characteristics of Poisson's ratio in crustal media from January 2009 to December 2012 at 11 fixed seismic stations(for station SCH, it is from January 2006 to December 2012)within an epicenter distance of 200km of the Xinyuan-Hejing MS6.6 earthquake in Xinjiang on June 30, 2012 using the methods of P wave receiver functions, H-κ stacking of receiver functions, and time sliding window, and obtained the following conclusions: (1)The crustal media's Poisson ratio of five stations in an epicenter distance less than 130km showed a significant and long-lasting decline about 2~3 years before Xinyuan-Hejing MS6.6 earthquake. Taking the crustal Poisson ratio mean value as reference, the decrease ranges between 0.003 and 0.014, the decrease in 4 stations are more than twice the mean error. The variations of the Poisson's ratio in crust are characterized by "V" shape or "double V" shape. Earthquakes occur at the end of the formation of "V" shape. After the occurrence of earthquakes, the Poisson's ratio continues to rise. The earliest initial fall appeared in July 2009 at WUS station which has the minimum epicentral distance(77km). The Poisson ratio of the crustal media of 6 stations with epicentral distance more than 150km fluctuated up and down around the mean value, and there is no significant decline or persistent low value. (2)We analyzed the arrival-time variations of the quasi-repetitive receiver functions Ps converted wave(tPs)of the 3 stations WUS, SCH and XNY and found that the travel times of Ps converted waves became smaller in the crust before the earthquake and increased after the earthquake. (3)Through the comprehensive analysis on the descending process, decline ranges, variations process, duration of Poisson' ratio, the Ps converted waves arrival time variations, the original time of earthquake, and the number of stations, it is inferred that the cause for Poisson's ratio anomalous variations is the change of physical properties of crustal media in the process of earthquake preparation and occurrence. Since the variation characteristics of crustal media may be related to the earthquake magnitude, the size of seismogenic area, the medium properties under stations, and the focal distance, whether the medium variation characteristics exist before and after Xinyuan-Hejing MS6.6 earthquake will need more earthquake cases analyses. (4)The H-κ stacking of receiver functions is used to calculate the velocity ratio. Because P-wave velocity is given, this method can only be applied when the Ps converted wave velocity of Moho surface of receiver functions changes before an earthquake. With the application of receiver functions to the analysis of more earthquake cases, we can gain more insights into the variation of crustal medium parameters during the seismogenic process. This observation indicates that the receiver function method may become a new approach to detect the Poisson's ratio change of the crustal media before strong earthquake under the condition of high seismic network density.  相似文献   

20.
通过对荣县MS4.9地震震中及附近地区地震监测、地震地质、地震活动背景和区域地震活动性的分析表明,荣县MS4.9地震震前经历了区域地震平静至活跃、再发震的过程,该序列为正常的震群型,震中区及其附近的华蓥山断裂地震带和马边地震带的震后地震学参数均正常。荣县MS4.9地震发震断裂为荣县-威远基底断裂,华蓥山断裂带及其附近地区2018年开始的5—6级地震活跃与川西地区东昆仑断裂带2017年8月九寨沟MS7.0强震的发生存在呼应关系。   相似文献   

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