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1.
近震源宽频带记录的地震矩张量反演   总被引:4,自引:1,他引:4       下载免费PDF全文
吴忠良  陈运泰 《地震学报》1994,16(2):141-152
以1985年4月18日云南禄劝地震(Ms=6.1)的15次余震为例, 使用简单介质模型进行近震源记录的地震矩张量反演, 并试图通过反演结果的讨论, 进一步明确有关方法的意义和限度。将DCS-302数字磁带加速度仪组成的小孔径流动台网获得的三分向近震源宽频带记录进行两次积分得到位移地震图, 对依据震相特征选出的信噪比较大的直达P波、直达S波和SP转换波波形在频率域进行矩张量反演。反演中采用均匀弹性半空间的格林函数。计算结果表明, 采用简单的介质模型, 选取信噪比较大的震相进行矩张量反演, 对MLL约为4-5的地震可以较好地给出震源机制解。在不十分了解详细结构的情况下, 用本文所发展的反演方法处理大量中小地震求震源机制和构造应力场是十分便利的。地震矩张量反演的结果给出禄劝地区的主压应力轴为近NNW向, 接近水平, 表明该地震与欧亚板块和印度板块边界的构造运动有关。   相似文献   

2.
张北地区震前、震时和震后的震源机制   总被引:4,自引:0,他引:4  
对于张北地震之前出现在小震条带上的地震,我们收集了区域地震台网的P波初动和垂直向记录的直达P、S的最大振幅,由理论地震图反演出15次地震的震源机制;同样的方法反演得到145次余震的震源机制;连同刘瑞丰给出的6.2级主震、哈佛大学提供的5.6级强余震的矩张量解一起分析。发现,震前小震震源机制优势取向的平均解、震后余震震源机制优势取向的平均解和主震以及强余震的矩张量解,基本一致。震前、震时和震后的震源机制的优势取向,没有发生可以觉察的显著变化。表明震区始终受到构造应力场的控制,呈现出一定的稳定性。  相似文献   

3.
利用江苏区域数字地震台网宽频带地震计记录的Pnl波波形资料,采用TDMT_INV时间域地震矩张量反演方法,尝试反演2009-2011年江苏及附近海域7次中小地震(ML3.5以上,最大震级ML5.3)的地震矩张量解,并通过记录清晰的P波初动在震源球的下半球投影对反演结果进行评价.结果表明:反演结果与初动方向一致较好.由此说明在研究区域用矩张量反演法测定中小地震震源机制解具有一定的可行性.  相似文献   

4.
刘超  张勇  许力生  陈运泰 《地震学报》2008,30(4):329-339
本文利用全球地震台网(GSN)的宽频带与长周期地震波形资料,采用矩张量反演的新方法,反演得到了2008年5月12日四川省汶川县MS8.0地震及其7个较大余震(MS5.0-6.0)的矩张量解与震源时间函数等震源参数.文章首先简要叙述矩张量反演新方法的理论背景和技术途径,并以汶川大地震的一个余震为例阐述了具体的实现过程;然后给出包括主震在内的8次地震的矩张量解和震源时间函数;最后分析探讨这些结果的构造意义.本文提出的矩张量反演新方法,不但与全球矩心矩张量(GCMT)一样,可以给出点源矩张量解,而且还可以给出点源的震源时间函数. 反演得到的汶川大地震的7个较大余震的震源时间函数表明,即使是中等强度的地震也可能有复杂的震源过程;汶川大地震的多数余震发生在以逆冲为主、兼具小量走滑分量的龙门山断裂带的主断裂上,但很可能有些余震则发生在主断裂附近的次级走滑断裂上.   相似文献   

5.
利用兰州临时微震台网的数字记录对2006年4月19日兰州Ms2.5地震进行了定位和震源机制反演,用P波初动和矩张量反演方法得出的震源机制具有较好的一致性。结合该地区的地震分布对可能的发震断层进行了讨论。  相似文献   

6.
利用江苏区域数字地震台网宽频带地震计记录的Pnl波波形资料,采用TDMT-INV时间域地震矩张量反演方法,尝试反演2009—2011年江苏及附近海域7次中小地震(M_L3.5以上,最大震级M_L5.3)的地震矩张量解,并通过记录清晰的P波初动在震源球的下半球投影对反演结果进行评价。结果表明:反演结果与初动方向一致较好。由此说明在研究区域用矩张量反演法测定中小地震震源机制解具有一定的可行性。  相似文献   

7.
毛燕  王彬  周光全 《地震研究》2006,29(2):131-136
建立合于云南地区的速度结构模型,对云南数字地震台网记录的2000年姚安Ms6.5地震3.0≤ML〈5.0余震的垂直分量进行频率域内的地震矩张量反演。结果表明:矩张量分解得到纯膨胀(各向同性)分量P、纯剪切(双力偶)分量M0和补偿线性矢量偶极C三部分,其中纯剪切(双力偶)分量帆占主要部分,表明地震的震源破裂过程以剪切破裂为主。从余震震源机制解可知,NW-NWW方位的节面占主导,结合余震分布尺度可以判断发震断裂是北西向的断裂。  相似文献   

8.
通过建立格林函数库可以降低在矩张量反演过程中的计算量,提高获取中小地震震源机制解的速度。运用此方法对2008年11月10日青海大柴旦6.4级地震的地震序列中ML≥2.0的98个余震进行了震源机制解,在小震矩张量反演中克服了模拟资料无法准确得到小震震源机制解的缺陷,初步探索了运用区域数字地震台网资料确定中小地震震源机制解的方法,并对计算结果给出了解释。  相似文献   

9.
2013年吉林前郭MS5.8震群为爆发性震群,目前余震活动仍然在持续.基于吉林、辽宁、黑龙江、内蒙古四省地震台网记录的前郭震群波形资料,利用波形信噪比、震源类型、台站及速度模型组合的指标选择最佳的反演方案,应用矩张量的三种反演模式,对序列中5个MS≥5.0地震进行矩张量反演研究,获得了全矩张量、偏矩张量和纯双力偶的矩张量.使用F-test对地震的三种模式的矩张量反演结果进行显著性检验来确定最佳反演模式.结果显示,5个地震的最优矩张量解均为全矩张量模式反演获得的结果,其双力偶分量仅有20%~65%,矩心深度位于地下3~4 km处,地震在Hudson震源类型图上的投影远离双力偶震源类型区域.这些结果表明,震源类型并非典型的构造地震,推断前郭地震可能是与人类活动有关的诱发地震.  相似文献   

10.
2021年5月21日云南大理州漾濞县发生了MS6.4 地震.我们利用区域地震台网记录的地震波形资料,首先采用多点源地震矩张量反演方法确定了漾濞地震序列中 3 次MS≥5.0地震的矩心矩张量解,分析研究了地震矩释放的最佳模型;然后对序列中较大地震进行了绝对定位,结合余震序列重新定位结果研究了地震矩心在断层面上的位置.结果显示MS5.6 前震可用2 点源模型模拟,矩震级分别为MW 5.3、MW5.1,矩心时间相隔约30 s,矩心位置相距约 2 km.MS 6.4 主震可用单点源模型模拟,矩心与起始破裂点平面距离约 5 km.前震和主震的矩心均位于地表以下 6 km处,矩心与起始破裂点的位置关系显示两地震向南东方向单侧破裂,断层以"前震-主震"型地震序列典型的"撤退式"方式破裂,MS5.6 前震的发生降低了断层面的抗剪强度,从而发生了更大的MS6.4 主震.MS5.2余震可用单点源模型模拟,起始破裂点与矩心空间位置相近,在地表以下约 10 km处.余震区构造应力场反演结果显示漾濞 6.4级地震序列属于区域应力场触发的地震活动,地震序列震源机制解符合走滑断裂伴生的负花状构造系统内部断裂的运动特征,余震的空间分布图像显示花状构造系统内部的两条断裂发生了地震活动.  相似文献   

11.
Based on the three component accelerograms, recorded at near-field distance by a temporary seismic network consisting of digital cassette tape recording accelerographs, the focal mechanisms of three aftershocks of the April 18, 1985, Luquan, Yunnan Province, China, earthquake ofM S=6.1, are calculated using seismic moment tensor inversion technique. The phases of direct P, S and converted SP waves in the displacement seismograms, produced by twice integrations of the observed accelerograms, are identified via forward calculation using Green’s functions for homogeneous semi-infinite elastic medium, and used in the inversion. The results of inversion show that a better fit of synthetic to the observed seismograms of direct as well as converted phases can be achieved if appropriate weighting functions are used in solving the over definite linear equations. While these aftershocks are of different magnitudes (M L=4.8, 3.2 and 3.5, respectively) and hypocentral locations, their focal mechanisms are very similar and consistent with that of the main shock. This feature demonstrates the intrinsic correlation between the occurrence of aftershocks and the seismogenic fault of main shock. Our experimentations show that using the near field accelerogram obtained from the digital seismic network with appropriate azimuthal coverage on the focal sphere, with the aid of even simple medium model, not only the shear dislocation source, but also the isotropic part and CLVD (compensated linear vector dipole) can be retrieved by the technique of moment tensor inversion. The Chinese version of this paper appeared in the Chinese edition ofActa Seismologica Sinica,13, 412–419, 1991. This work is supported by the Chinese Joint Seismological Sciences Foundation and the Western Yunnan Earthquake Prediction Test Site (WYEPTS), State Seismological Bureau.  相似文献   

12.
以2008年11月10日大柴旦Ms6.3级地震余震数字地震波观测资料为基础,运用矩张量反演方法,利用单台三分量波形资料计算余震的震源机制。收集整理大柴旦Ms6.3级地震公认的震源参数结果和青海区域地震台网数字地震波资料,以大柴旦Ms6.3级地震的震源参数作为约束,计算理论地震波来确定该区域的地壳速度模型。以此模型计算ML≥2.0级余震震源机制解。共收集160个余震资料,最后确定了85个余震震源机制解,其中最大震级为朋。4.7,最小震级为ML2.0。进行单台与多台联合矩张量反演结果对比,两种方法所确定的结果相差不大。实际计算表明,在观测资料信噪比较高的情况下,运用单台数字地震波观测资料可以较好地确定中小地震的震源机制。  相似文献   

13.
Moment tensor inversion of near-source broadband data   总被引:1,自引:0,他引:1  
Moment tensor inversion of near-source broadband data(吴忠良)(陈运泰(倪江川)(王培德)(王鸣)Momenttensorinversionofnear-sourcebroadbanddata¥Z...  相似文献   

14.
赵博  高原  黄志斌  赵旭  李大虎 《地球物理学报》2013,56(10):3385-3395
2013年4月20日发生了四川芦山MS7.0地震,主震中位于青藏地块与华南地块结合部的龙门山断裂带南端.本研究用双差定位法对芦山地震主震及余震序列进行重新定位,得到主震位置为(30.29°N,102.97°E,17.82 km)及4100多次余震重新定位结果.利用GSN/IRIS台网和国家台网及四川省区域台网的波形数据对主震及部分余震进行了震源机制解反演.结果表明,主震为一次逆冲地震,根据余震序列分布确定发震断层面走向为200°,震源机制解断层倾角为45°.基于震源断层面解和断层滑动方向,采用力轴张量计算法得到了研究区域的平均主压应力方向约为N112°E.  相似文献   

15.
利用IRIS全球地震台网30°—90°的长周期P波记录, 反演了2008年3月21日新疆于田MS7.3地震的破裂过程, 得到了此次地震的破裂时空图像, 并初步分析了余震分布与主震断层滑动量分布的关系. 结果表明, 此次地震是一个破裂尺度长100 km、 宽20 km的破裂过程; 破裂持续时间约为40 s, 在第13 s时地震矩释放速率达到峰值, 断层面上一次大的破裂行为几乎构成了整个地震的破裂过程. 地震所释放的标量地震矩为4.23×1019 N·m, 其矩震级为MW7.02. 由主震断层静态滑动量分布图可以看出, 整个破裂区以正断左旋走滑为主, 显示出双侧破裂特征, 最大滑动量为151 cm, 位于初始破裂点沿断层出露地表处. 精定位后的余震在断层面上的投影结果显示, 80%以上ML4.0—4.9余震和全部ML≥5.0余震均发生在初始破裂点附近区域及其南西方向, 位于主震破裂滑动位移量迅速减小的区域, 反映了震源区介质强度的不均匀性.   相似文献   

16.
A MS8.0 earthquake occurred in Wenchuan County, Sichuan Province, China, on May 12, 2008, and subsequently, numerous aftershocks followed. We obtained the moment tensor solutions and source time functions (STFs) for the Wenchuan earthquake and its seven larger aftershocks (MS5.0~6.0) by a new technique of moment tensor inversion using the broadband and long-period seismic waveform data from the Global Seismic Network (GSN). Firstly, the theoretical background and technical flow of the new technique was briefly introduced, and an aftershock of the Wenchuan earthquake sequence was employed to illustrate the real procedure for inverting the moment tensor; secondly, the moment tensor solutions and STFs of the eight events, including the main shock, were presented, and finally, the interpretation of the results was made. The agreement of our results with the GCMT results indicates the new approach is efficient and feasible. By using this approach, not only the moment tensor solution can be obtained but also the STF can be retrieved; the inverted STFs indicate that the source rupture process may be complicated even for the moderate earthquakes. The inverted focal mechanisms of the Wenchuan earthquake sequence show that the most of the aftershocks occurred in the main faults of the Longmenshan fault zone with predominantly thrustingwith minor right-lateral strike-slip component, but some of them may have occurred in the subfaults with strike-slip faulting in the vicinity of the main faults.  相似文献   

17.
The Lorca 2011 seismic series was recorded by an unprecedented set of high quality on scale broadband seismograms and strong motion accelerograms. The waveforms from permanent and temporary broadband seismic networks deployed in the region by different institutions allowed to invert regional moment tensor for the fore, main and largest aftershock of the complete seismic sequence. Using double-difference algorithm we have performed a precise relocation of the seismic series, where body wave travel times from strong ground motion accelerograms were included in the data set. Regional moment tensor inversion for the three main events show similar oblique-reverse faulting regime with a northeast-southwest fault orientation. The scalar seismic moment, moment magnitude and focal depth retrieved from the inversion yield the following values for each event: \(\hbox {Mo}=6.5\times 10^{16}\) Nm (Mw = 5.2) for the mainshock, \(\hbox {Mo}= 9.6 \times 10^{15}\) Nm (Mw = 4.6) for the foreshock and \(\hbox {Mo}=7.3\times 10^{14}\) Nm (Mw = 3.9) for the large aftershock. The centroid depths range between 4 and 6 km. The double-difference relocation of the seismic series shows significant epicentral differences with the preliminary routine location. The epicentral solutions given by this relocation show a seismic sequence distributed following a NE–SW strike, subparallel to the Alhama de Murcia fault and compatible with the faulting parameters inverted from the moment tensor analysis. The hypocenters of the series generate a subvertical trend in depth distribution, being concentrated between 2 and 6 km. The depth distribution of the main events, which range from 4.6 to 5.5 km, is in good relationship with the faulting and depth parameters deduced from the moment tensor inversion technique. The regional moment tensor solutions for the three largest earthquakes, the epicentral distribution and the focal depths show good relationship with the surface geometry and tectonic regime of the Alhama de Murcia fault. The stress drop deduced for the mainshock gives a value ranging between 58 and 85 bars, which does not support the idea of a high stress drop release as a main factor contributing to the high ground acceleration recorded at Lorca. The PGA values observed at Lorca, which contributed to the high damage independently of structural deficiencies, could be generated mainly by shallowness and proximity to the seismic source together with a directivity effect in the seismic radiation.  相似文献   

18.
IntroductionOn September 27, 2003, an earthquake of MS=7.9 struck the border area of China, Russia and Mongolia. According to the field investigation from the Earthquake Administration of XinjiangAutonomous Region, the whole northern Tianshan region felt the hit. Buildings and structures within six counties and one city in Altay region, which is total about 0.11×106 km2 area, were damaged to different extent and caused certain economic losses. The epicenter determined by China National …  相似文献   

19.
Using the digital broadband seismic data recorded by Xinjiang network stations, we obtained focal mechanism of the July 3 Pishan, Xinjiang, MS6.5 earthquake with generalized Cut and Paste(gCAP)inversion method. The strike, dip and rake of first nodal plane are 97°, 27°, 51°, and the second nodal plane are 318°, 70°, 107°. The centroid depth and moment magnitude are calculated to be 12km and 6.4. Combining with the distribution of aftershocks, we conclude that the first nodal plane is the seismogenic fault, and the main shock presents a thrust earthquake at low angle. We relocated 1014 earthquakes using the double-difference algorithm, and finally obtained 937 relocated events. Our results show that the earthquake sequences clearly demonstrate a unilateral extension about 50km nearly in NWW direction, and are mainly located above 25km depth, especially the small earthquakes are predominately located at the shallow parts. Furthermore, the focal depth profile shows a southwestward dipping fault plane at the main shock position, suggesting listric thrust faulting, which is consistent with the dip of the mainshock rupture plane. The spatial distribution of aftershocks represents that the Tarim block was thrust under the West Kunlun orogenic belt. In addition, the dip angle of the fault plane gradually increases along the NWW direction, possibly suggesting a gradual increase of strike-slip component during the NWW rupturing process. From above, we conclude that the Pishan MS6.5 earthquake is the result of Tibet plateau pushing onto the Tarim block from south to north, which further confirms that the continuous collision of India plate and Eurasia plate has strong influence on the seismic activity in and around the Tibet plateau.  相似文献   

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