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The earth's rotation-dominated seismicity preceding the 2023 M_(W) 7.8 Gaziantep, Türkiye, earthquake
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作者 Yane Li Xuezhong Chen Lijuan Chen 《Geodesy and Geodynamics》 EI CSCD 2024年第6期592-601,共10页
For earthquakes (M≥4.0) occurring along and around the East Anatolian fault zone and the Dead Sea fault zone within ten years immediately before the MW7.8 Gaziantep earthquake,Türkiye,of February 6,2023,we explo... For earthquakes (M≥4.0) occurring along and around the East Anatolian fault zone and the Dead Sea fault zone within ten years immediately before the MW7.8 Gaziantep earthquake,Türkiye,of February 6,2023,we explored the correlation between seismicity and the earth's rotation.We statistically evaluated the correlation using the Schuster's test.The results are quantitatively assessed by a p-value.We found a clear downward trend in the p-values from early 2020 to late 2022 in the studied region.We also obtained a spatial distribution of the p-values showing a low p-value area near the northeastern end of the aftershock zone.Although the stress induced by the rotation of the earth is very weak,it could control the earthquake occurrence when the focal medium is loaded to the critical state to release a large earthquake.The decrease in the b-value in the Gutenberg-Richter (G-R) relation is considered in the form of the tectonic stress increase in the crust.We investigated the b-value as a function of time in the study region.We found that the b-value had decreased for about eleven years before the p-value started to decrease,with a relative reduction of 57%.Therefore,the result of the lower p-values obtained in the present study infers that the earthquakes were dominated by the earth's rotation prior to the MW7.8 Türkiye earthquake due to a critical state of the focal region. 展开更多
关键词 Earth's rotation M_(W)7.8 Türkiye earthquake P-VALUE b-value
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Preliminary report of coseismic surface rupture(part)of Türkiye's M_(W)7.8 earthquake by remote sensing interpretation
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作者 Yali Guo Haofeng Li +3 位作者 Peng Liang Renwei Xiong Chaozhong Hu Yueren Xu 《Earthquake Research Advances》 CSCD 2024年第1期4-13,共10页
Both M_(W) 7.8 and M_(W) 7.5 earthquakes occurred in southeastern Türkiye on February 6,2023,resulting in numerous buildings collapsing and serious casualties.Understanding the distribution of coseismic surface r... Both M_(W) 7.8 and M_(W) 7.5 earthquakes occurred in southeastern Türkiye on February 6,2023,resulting in numerous buildings collapsing and serious casualties.Understanding the distribution of coseismic surface ruptures and secondary disasters surrounding the epicentral area is important for post-earthquake emergency and disaster assessments.High-resolution Maxar and GF-2 satellite data were used after the events to extract the location of the rupture surrounding the first epicentral area.The results show that the length of the interpreted surface rupture zone(part of)is approximately 75 km,with a coseismic sinistral dislocation of 2-3 m near the epicenter;however,this reduced to zero at the tip of the southwest section of the East Anatolia Fault Zone.Moreover,dense soil liquefaction pits were triggered along the rupture trace.These events are in the western region of the Eurasian Seismic Belt and result from the subduction and collision of the Arabian and African Plates toward the Eurasian Plate.The western region of the Chinese mainland and its adjacent areas are in the eastern section of the Eurasian Seismic Belt,where seismic activity is controlled by the collision of the Indian and Eurasian Plates.Both China and Türkiye have independent tectonic histories. 展开更多
关键词 2023 Türkiye M_(w)7.8 earthquake Coseismic surface rupture East anatolian fault zone Eurasian seismic zone Remote sensing interpretation
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2016年新爱尔兰M_(S)7.8地震前中国大陆水平摆倾斜仪记录异常分析
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作者 李伟 马钦忠 +1 位作者 方国庆 赵文舟 《地震地磁观测与研究》 2024年第6期98-109,共12页
2016年12月17日新爱尔兰发生M_(S)7.8地震,震前约1小时,我国新疆的库尔勒霍拉山台、石场台、榆树沟台、巴里坤台、阿合奇台、精河台、木垒台和河北的怀来台、丰宁台石英水平摆倾斜仪观测到前驱波(震中距最大为9053 km)。研究发现,该前... 2016年12月17日新爱尔兰发生M_(S)7.8地震,震前约1小时,我国新疆的库尔勒霍拉山台、石场台、榆树沟台、巴里坤台、阿合奇台、精河台、木垒台和河北的怀来台、丰宁台石英水平摆倾斜仪观测到前驱波(震中距最大为9053 km)。研究发现,该前驱波具有以下特征:①各台站前驱波波动持续时间存在一定差异;②同一台站记录的前驱波振幅和波形,在EW和NS分量上存在差异;③各台站前驱波波动变化的特征周期存在差异,最长周期可达660 s,而同一台站不同分量间的差异也较为明显,前驱波传播上具有不均匀性。选取同一发震构造带上基本同期发生的2次M≥7.8地震,从震源条件、观测条件等方面,与此次地震进行对比分析,认为新爱尔兰M_(S)7.8地震的前驱波现象成因,与震源、不同地质块体区域构造应力场和台站观测条件、观测仪器性能均有密切联系,是一种综合作用结果,现象重复性低。 展开更多
关键词 新爱尔兰M_(S)7.8地震 水平摆倾斜仪 前驱波 小波变换
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Source complexity of the 2016 M_W7.8 Kaikoura (New Zealand) earthquake revealed from teleseismic and InSAR data 被引量:4
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作者 HaiLin Du Xu Zhang +3 位作者 LiSheng Xu WanPeng Feng Lei Yi Peng Li 《Earth and Planetary Physics》 2018年第4期310-326,共17页
On November 13, 2016, an MW7.8 earthquake struck Kaikoura in South Island of New Zealand. By means of back-projection of array recordings, ASTFs-analysis of global seismic recordings, and joint inversion of global sei... On November 13, 2016, an MW7.8 earthquake struck Kaikoura in South Island of New Zealand. By means of back-projection of array recordings, ASTFs-analysis of global seismic recordings, and joint inversion of global seismic data and co-seismic In SAR data, we investigated complexity of the earthquake source. The result shows that the 2016 MW7.8 Kaikoura earthquake ruptured about 100 s unilaterally from south to northeast(~N28°–33°E), producing a rupture area about 160 km long and about 50 km wide and releasing scalar moment 1.01×1021 Nm. In particular, the rupture area consisted of two slip asperities, with one close to the initial rupture point having a maximal slip value ~6.9 m while the other far away in the northeast having a maximal slip value ~9.3 m. The first asperity slipped for about 65 s and the second one started 40 s after the first one had initiated. The two slipped simultaneously for about 25 s.Furthermore, the first had a nearly thrust slip while the second had both thrust and strike slip. It is interesting that the rupture velocity was not constant, and the whole process may be divided into 5 stages in which the velocities were estimated to be 1.4 km/s, 0 km/s, 2.1 km/s, 0 km/s and 1.1 km/s, respectively. The high-frequency sources distributed nearly along the lower edge of the rupture area, the highfrequency radiating mainly occurred at launching of the asperities, and it seemed that no high-frequency energy was radiated when the rupturing was going to stop. 展开更多
关键词 2016 MW7.8 Kaikoura earthquake BACK-PROJECTION of array RECORDINGS ASTFs-analysis of global RECORDINGS joint inversion of teleseismic and InSAR data COMPLEXITY of SOURCE
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Pulse-like ground motion observed during the 6 February 2023 M_(W)7.8 Pazarcık Earthquake(Kahramanmaraş,SE Türkiye) 被引量:2
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作者 Fan Wu Junju Xie +6 位作者 Zhao An Chenghao Lyu Tuncay Taymaz Tahir Serkan Irmak Xiaojun Li Zengping Wen Baofeng Zhou 《Earthquake Science》 2023年第4期328-339,共12页
In this study,we analyzed 100 three-component strong ground motion records observed within 200 km of the causative fault of the 6 February 2023 M_(W)7.8 Pazarcık(Kahramanmaraş)Earthquake in SE Türkiye.The wavelet... In this study,we analyzed 100 three-component strong ground motion records observed within 200 km of the causative fault of the 6 February 2023 M_(W)7.8 Pazarcık(Kahramanmaraş)Earthquake in SE Türkiye.The wavelet method was utilized to identify and analyze the characteristics of pulse-like ground motions in the near-fault region,while considering the uncertainty of the pulse orientation during the analysis.Our investigation focused on the effects of the focal mechanism and rupture process on the spatial distribution,pulse orientation,and maximum pulse direction of the observed pulse-like ground motion.We also analyzed the amplitude and period of the observed ground pulses and the effect of long-period amplification on the ground motion response spectra.Our results indicated the following:(1)A total of 21 typical ground velocity pulses were observed during this earthquake,exhibiting complex characteristics due to the influence of the strike-slip mechanism and rupture directivity.Most ground pulses(17 out of 21)were recorded within 20 km of the fault,in a wide range of orientations,including normal and parallel to the fault direction.The waveforms exhibited unidirectional features,indicating the effects of left-lateral fault slip.Distinct pulses observed more than 20 km from the fault were mainly oriented normal to the fault.The waveforms were bidirectional with double-or multi-round trips as a result of rupture directivity.(2)The amplitudes of the observed pulses ranged from 30.5 to 220.0 cm/s,with the largest peak velocity of 220.0 cm/s observed at Station 3138.The pulse periods ranged from 2.3 to 14.5 s,with the longest pulse period of 14.5 s observed at Station 3116.The amplitude and period of the pulses observed during this earthquake were comparable to those of similar-magnitude global earthquakes.The amplitude of the pulses decreased significantly with increasing fault distance,whereas the pulse period was not significantly affected by the fault distance.(3)Compared with non-pulse records,the velocity pulse records had a pronounced amplification effect on the acceleration response spectra near the pulse period,with factors ranging from 2.1 to 5.8.The larger velocity pulses also significantly amplified the velocity response spectra,particularly over the long periods.This significant amplification effect of the pulses on the response spectra leads to empirical models underestimating the long-period earthquake ground motion. 展开更多
关键词 2023 M_(W)7.8 Pazarcık earthquake pulse-like ground motion response spectrum predominant period
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Ionospheric disturbances associated with the 2015 M7.8 Nepal earthquake 被引量:4
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作者 Yiyan Zhou Jian Yang +3 位作者 Fuying Zhu Fanfan Su Liangchen Hu Wenbo Zhai 《Geodesy and Geodynamics》 2017年第4期221-228,共8页
Based on the total electron content (TEC) derived from Global Positioning System (GPS) observations of the Crustal Movement Observation Network of China (CMONOC) and the Global Ionosphere Map (GIM) from the Ce... Based on the total electron content (TEC) derived from Global Positioning System (GPS) observations of the Crustal Movement Observation Network of China (CMONOC) and the Global Ionosphere Map (GIM) from the Center for Orbit Determination in Europe (CODE), we detected and analyzed the ionospheric variations during the 2015 M7.8 Nepal earthquake (including the pre-earthquake ionospheric anomalies and coseismic ionospheric disturbances (CIDs) following the main shock). The analysis of vertical total electron content (VTEC) time series shows that the large-scale ionospheric anomalies appeared near the epicenter two days prior to the earthquake. Moreover, the pre-earthcluake ionospheric anomalies were also observed in the geomagnetically conjugated region. In view of solar-terrestrial environment, the pre-earthquake ionospheric anomalies could be associated with the Nepal earthquake. In addition, we also detected the CIDs through the high-frequency GPS observation stations. The CIDs had obvious oscillated waveforms with the peak-to-peak disturbance amplitudes of about I TECu and 0.4 TECu, which propagated approximately with the horizontal velocities of 877 ±75 m/s and 319 ± 30 m/s, respectively. The former is triggered directly by the acoustic waves which originated from the energy release of the earthquake near the epicenter, while the latter could be stimulated by the acoustic-gravity waves from the partial transformation of the acoustic waves. 展开更多
关键词 GPS TEC M7.8 Nepal earthquake Pre-earthquake ionospheric anomalies CID
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Measuring ground deformations caused by 2015 Mw7.8 Nepal earthquake using high-rate GPS data 被引量:1
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作者 Yong Huang Shaomin Yang +3 位作者 Xuejun Qiao Mu Lin Bin Zhao Kai Tan 《Geodesy and Geodynamics》 2017年第4期285-291,共7页
The April 25, 2015 Mw7.8 Nepal earthquake was successfully recorded by Crustal Movement Observation Network of China (CMONOC) and Nepal Geodetic Array (NGA). We processed the high-rate GPS data (1 Hz and 5 Hz) b... The April 25, 2015 Mw7.8 Nepal earthquake was successfully recorded by Crustal Movement Observation Network of China (CMONOC) and Nepal Geodetic Array (NGA). We processed the high-rate GPS data (1 Hz and 5 Hz) by using relative kinematic positioning and derived dynamic ground motions caused by this large earthquake. The dynamic displacements time series clearly indicated the displacement amplitude of each station was related to the rupture directivity. The stations which located in the di- rection of rupture propagation had larger displacement amplitudes than others. Also dynamic ground displacement exceeding 5 cm was detected by the GPS station that was 2000 km away from the epicenter. Permanent coseismic displacements were resolved from the near-field high-rate GPS stations with wavelet decomposition-reconstruction method and P-wave arrivals were also detected with S transform method. The results of this study can be used for earthquake rupture process and Earthquake Early Warning studies. 展开更多
关键词 High-rate GPS Mw7.8 Nepal earthquake Dynamic ground motion Permanent coseismic displacements P-wave arrival detection
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Three-dimensional coseismic deformation of the 2016 MW7.8 Kaikuora,New Zealand earthquake obtained by InSAR and offset measurements
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作者 Jiao Liu Guohong Zhang +5 位作者 Jiaqing Wang Guangtong Sun Yingfeng Zhang Yanzhao Wang Chunyan Qu Xinjian Shan 《Geodesy and Geodynamics》 CSCD 2022年第5期415-426,共12页
The 2016 MW7.8 Kaikoura earthquake struck the northern part of south Island,New Zealand,within the active and complex Australia-Pacific plate boundary system.Firstly,we used the InSAR method to obtain coseismic LOS de... The 2016 MW7.8 Kaikoura earthquake struck the northern part of south Island,New Zealand,within the active and complex Australia-Pacific plate boundary system.Firstly,we used the InSAR method to obtain coseismic LOS deformation fields based on SAR images and applied offset tracking methods to obtain offset measurements based on optical satellite images.The maximum displacement of about 6 m is detected in the direction away from the satellite on the south-west side and also towards the satellite on the north-east side.The 3D deformation field is then resolved by the combination of these measurements with a least-square solve method,and comparisons with 3 components of GPS stations show good consistency.Despite complex features demonstrated in the 3D deformation field,there are still clear spatial correlations between surface deformation and faults distribution.It reveals that more than ten faults were ruptured during the earthquake,including some faults were previously understudies for their tectonic activities.The maximum horizontal deformation of about 10 m occurs along the Kekerengu fault with the vertical deformation up to 2 m.The 3D deformation shows that the mainshock is a multisegments faulting with a rupture process of strike-slip,compression,transpressional rupture and strike-slip in space along the NE direction. 展开更多
关键词 The 2016 MW 7.8 Kaikuora earthquake THREE-DIMENSIONAL INSAR Offset tracking
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玛尼Mw7.6地震和可可西里Mw7.8地震应力迁移研究 被引量:5
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作者 汪建军 许才军 《大地测量与地球动力学》 CSCD 北大核心 2009年第1期11-14,共4页
根据库仑破裂准则研究了1997年玛尼Mw7.6和2001年可可西里Mw7.8地震间的静态及黏弹性库仑应力的迁移。计算结果表明:静态库仑应力和黏弹性库仑应力均不超过0.005 MPa,小于典型的应力触发阈值0.01MPa;玛尼地震对可可西里孕震区应力状态... 根据库仑破裂准则研究了1997年玛尼Mw7.6和2001年可可西里Mw7.8地震间的静态及黏弹性库仑应力的迁移。计算结果表明:静态库仑应力和黏弹性库仑应力均不超过0.005 MPa,小于典型的应力触发阈值0.01MPa;玛尼地震对可可西里孕震区应力状态的改变影响甚弱,震后造成的下地壳和上地幔的应力迁移效应对2001年可可西里地震的影响也甚弱;静态库仑应力和黏弹性库仑应力的迁移效应对可可西里地震无明显的触发作用,可能是随距离衰减相对较缓的动态库仑应力触发了可可西里地震。 展开更多
关键词 地震触发 静态库仑应力 黏弹性库仑应力 玛尼Mw 7.6地震 可可西里Mw 7.8地震
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1970年云南通海7.8级地震烈度震亡比调查分析 被引量:5
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作者 李永强 聂高众 杨杰英 《自然灾害学报》 CSCD 北大核心 2010年第6期17-26,共10页
首先系统收集整理了通海地震灾区地震当年县区、公社、大队、小队各级行政单元的人口数量、震亡人数和所处烈度等级;然后计算各行政单元人员震亡比,得到了不同行政单元烈度震亡比矩阵,分析了不同行政单元震亡数、震亡比的空间分布特征;... 首先系统收集整理了通海地震灾区地震当年县区、公社、大队、小队各级行政单元的人口数量、震亡人数和所处烈度等级;然后计算各行政单元人员震亡比,得到了不同行政单元烈度震亡比矩阵,分析了不同行政单元震亡数、震亡比的空间分布特征;最后用回归分析方法研究了烈度震亡比关系,建立了Logist烈度震亡比模型。结果表明,通海地震烈度震亡比具有典型的非线性增长特征,所建烈度震亡比矩阵对云南农村和乡镇地区仍具有实用意义。 展开更多
关键词 通海7.8级地震 人员伤亡 震亡比 震亡比增长模型 云南
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基于InSAR数据的西藏玛尼Ms7.9级地震的地壳不均匀性研究 被引量:15
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作者 许才军 温扬茂 《武汉大学学报(信息科学版)》 EI CSCD 北大核心 2008年第8期846-849,共4页
基于InSAR观测结果,考虑到发震区域南、北两盘地壳介质的横向不均匀性,结合更为真实的地表断层位置,采用三维半解析粘弹性模型和遗传算法,反演了发震断层滑动分布及南北两盘的地壳介质参数(泊松比)。反演结果显示,考虑介质横向不均匀性... 基于InSAR观测结果,考虑到发震区域南、北两盘地壳介质的横向不均匀性,结合更为真实的地表断层位置,采用三维半解析粘弹性模型和遗传算法,反演了发震断层滑动分布及南北两盘的地壳介质参数(泊松比)。反演结果显示,考虑介质横向不均匀性的模型能较好地拟合地表形变场;南北盘的横向介质差异性也可认为是玛尼地震同震形变的非对称性的影响因素之一。 展开更多
关键词 玛尼地震 INSAR 地壳横向不均匀性 三维半解析粘弹性模型
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高频GPS测定的尼泊尔M_W7.8和M_W7.3地震震时地表动态变形过程 被引量:2
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作者 黄勇 杨少敏 +4 位作者 乔学军 林牧 赵斌 刘刚 谭凯 《大地测量与地球动力学》 CSCD 北大核心 2017年第3期221-223,229,共4页
以陆态网络和尼泊尔境内高频(1Hz)GPS观测数据为基础,采用动态双差相对定位方法,获取2015年尼泊尔M_W7.8和M_W7.3地震震时近场地表动态变形过程。结果表明,M_W7.8地震震中东侧高频GPS站动态位移幅度明显大于震中西侧;各高频GPS站动态位... 以陆态网络和尼泊尔境内高频(1Hz)GPS观测数据为基础,采用动态双差相对定位方法,获取2015年尼泊尔M_W7.8和M_W7.3地震震时近场地表动态变形过程。结果表明,M_W7.8地震震中东侧高频GPS站动态位移幅度明显大于震中西侧;各高频GPS站动态位移幅度不仅与测站震中距有关,而且与地震破裂传播方向有关;M_W7.3地震引起的水平动态位移相对较小。将高频GPS与邻近强震仪动态位移时序进行对比发现,二者在振幅和相位上具有较好的一致性。 展开更多
关键词 高频GPS 尼泊尔M_W7.8、M_W7.3地震 震时地表动态变形
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新西兰2016年凯库拉M_W 7.8地震灾害考察与启示 被引量:2
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作者 韩竹军 袁仁茂 +1 位作者 冉洪流 郭鹏 《震灾防御技术》 CSCD 北大核心 2018年第2期255-266,共12页
在2016年新西兰凯库拉M_W 7.8地震中,北东—北东东向科科仁古断裂水平右旋位移量最大,为10—12m;北北西—近南北向帕帕提断裂垂直位移量最大,达到5—6m。对直接坐落在这2条地震地表破裂带或变形带之上的建筑物的破坏现场调查表明,尽管... 在2016年新西兰凯库拉M_W 7.8地震中,北东—北东东向科科仁古断裂水平右旋位移量最大,为10—12m;北北西—近南北向帕帕提断裂垂直位移量最大,达到5—6m。对直接坐落在这2条地震地表破裂带或变形带之上的建筑物的破坏现场调查表明,尽管房屋出现歪斜,但上部主体部分基本完整,没有出现倒塌或部分倒塌现象,避免了人员伤亡。在无法回避活动断裂及其大震危险性的情况下,隔震系统的广泛采用可以有效地提高建筑物抵御地震灾害的能力。此次地震触发了数万个滑坡体,最大滑坡体可达数百万立方米。对沃罗村北边2处边坡失稳地带的考察结果表明,针对该地至少从2个方面进行了考虑和处置:一是在选址上,避开了突出山嘴等高陡坡地带;二是在房屋正对的山坡地带,种植或保护了茂密的树木,这既增加了山体的稳定性,又可以在地震中有效地减缓崩塌的石块对房屋的冲击。对比中国中东部一些大震,如1976年唐山7.8级地震和2008年汶川8.0级地震中触目惊心的巨大人员伤亡和财产损失,即使在人口密度与滑坡规模上存在明显不同,对新西兰凯库拉地震灾害现场的考察结果,还是在如何有效抵御地震灾害方面给我们提供了很好的启示。 展开更多
关键词 凯库拉地震 地震灾害防御 地表破裂带 地震滑坡
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GPS测定的2020年阿拉斯加M_(W)7.8地震震时地表动态变形及永久同震形变场 被引量:2
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作者 王东振 赵斌 余建胜 《地震工程学报》 CSCD 北大核心 2022年第1期203-209,共7页
以UNAVCO公布的阿拉斯加地区GPS 1 Hz和30 s采样观测数据为基础,采用双差定位方法分别对两种采样率的数据进行处理分析,获得2020年7月22日阿拉斯加M_(W)7.8地震震时地表动态变形及同震三维形变场。结果显示,震中270 km范围内高频GPS震... 以UNAVCO公布的阿拉斯加地区GPS 1 Hz和30 s采样观测数据为基础,采用双差定位方法分别对两种采样率的数据进行处理分析,获得2020年7月22日阿拉斯加M_(W)7.8地震震时地表动态变形及同震三维形变场。结果显示,震中270 km范围内高频GPS震时波形明显,最大振幅达600 mm。根据各个GPS站的动态形变波形振幅及响应时间认为,其振幅和响应时间受地震的破裂传播方向和场地效应影响较大。静态同震位移矢量指向震中,同震位移大小基本符合随震中距离增大而减小的特征,除站点AC13外,其中距离震中最近站点的最大水平位移达26.7 cm。GPS测定的同震形变表明,2020年阿拉斯加地震是发生在阿拉斯加阿留申俯冲大断裂的一次逆冲型地震。 展开更多
关键词 阿拉斯加M_(W)7.8地震 高频GPS 同震形变 动态变形
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2023年2月6日土耳其M_(W)7.8帕扎尔哲克地震地表破裂特征分析
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作者 梁朋 田勤俭 +3 位作者 徐岳仁 周晓成 熊仁伟 李文巧 《震灾防御技术》 CSCD 北大核心 2023年第3期483-494,共12页
2023年2月6日土耳其东南部连续发生2次7级以上破坏性地震,造成大量人员伤亡和建筑物损坏。基于高分辨率遥感系统解译了帕扎尔哲克7.8级地震地表破裂空间分布,结合野外科考验证、基于立体像对生成的高分辨率数字地表模型及余震精定位数据... 2023年2月6日土耳其东南部连续发生2次7级以上破坏性地震,造成大量人员伤亡和建筑物损坏。基于高分辨率遥感系统解译了帕扎尔哲克7.8级地震地表破裂空间分布,结合野外科考验证、基于立体像对生成的高分辨率数字地表模型及余震精定位数据,对帕扎尔哲克7.8级地震地表破裂特征进行分析。该次地震地表破裂主要沿先前断层迹线发育,总长度约为320 km。地表破裂位置地貌特征、野外典型位置调查结果及余震精定位结果均显示该次地震以左旋走滑运动为主,局部伴有小规模垂向运动。最大左旋位移位于东安纳托利亚断裂帕扎尔哲克段,蒂尔克奥卢以南地表破裂逐渐不连续,左旋位错不明显。 展开更多
关键词 帕扎尔哲克7.8级地震 东安纳托利亚断裂 地表破裂 高分辨率数字地表模型
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Coseismic surface ruptures of MW7.8 and MW7.5 earthquakes occurred on February 6,2023,and seismic hazard assessment of the East Anatolian Fault Zone,Southeastern Türkiye
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作者 Peng LIANG Yueren XU +11 位作者 Xiaocheng ZHOU Ying LI Qinjian TIAN Huiping ZHANG Zhikun REN Jingxing YU Chuanyou LI Zheng GONG Shiguang WANG Aixia DOU Zifa MA Junjie LI 《Science China Earth Sciences》 2025年第2期611-625,共15页
On February 6,2023,southeastern Türkiye experienced a devastating earthquake doublet along the East Anatolian Fault(EAF),with moment magnitude(MW)values of 7.8 and 7.5.These strong earthquakes resulted in at leas... On February 6,2023,southeastern Türkiye experienced a devastating earthquake doublet along the East Anatolian Fault(EAF),with moment magnitude(MW)values of 7.8 and 7.5.These strong earthquakes resulted in at least 50,000 deaths and severe economic losses.Systematic research on coseismic surface ruptures induced by these events is vital for assessing the cascade rupture behaviors of plate boundary faults and future seismic hazards in the region.Interpretation of high-resolution post-earthquake satellite images and field investigations yielded the following results:(1)the two strong earthquakes had separate rupture zones.The first earthquake generated an approximately 280 km coseismic surface rupture along the southwestern segment of the main EAF,with 241 left-lateral displacements reaching up to 6.8±0.68 m,particularly 40 km northeast of the epicenter.The second earthquake produced a roughly 110 km surface rupture on an east-west branch of the EAF,with maximum displacements of 7.2±0.72 m.(2)The MW7.8 earthquake resulted in a cascading rupture across multiple segments of the southwestern section of the main EAF,with significantly variable displacements.The northeastern and southwestern parts of the main EAF and Malatya Fault remain at risk of strong earthquakes in the future.(3)The EAF rupture zone is densely populated,and due to the site amplification effect of loose sediments on foreland alluvial fans,foundation failures of buildings in the populated areas are common.Therefore,it is crucial to enhance the future seismic fortification capabilities in urban and rural areas along the EAF. 展开更多
关键词 Double strong earthquakes of Mw7.8 and Mw7.5 in Tirkiye East Anatolian Fault Surface rupture zone Strong earthquake hazard
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2023年土耳其7.8级地震灾害特征 被引量:5
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作者 张升 李兆焱 +1 位作者 张思宇 袁晓铭 《世界地震工程》 北大核心 2023年第3期45-55,共11页
北京时间2023年2月6日9时17分土耳其发生7.8级地震,震中位于北纬37.17°,东经37.08°,震源深度20 km,约9小时后,同一地区又发生了一次7.5级地震,土耳其出现了极为罕见的“双震”,土耳其和叙利亚两国共计至少53565人死亡、12979... 北京时间2023年2月6日9时17分土耳其发生7.8级地震,震中位于北纬37.17°,东经37.08°,震源深度20 km,约9小时后,同一地区又发生了一次7.5级地震,土耳其出现了极为罕见的“双震”,土耳其和叙利亚两国共计至少53565人死亡、129794人受伤。此次地震震级高并且强度大,震害极为严重,具体表现为:大量房屋倾倒或受损严重,建筑物的结构破坏为主要形式,内部的水管泄漏和柜体倾覆;建筑外部非结构破坏以填充墙、楼体贴面、装饰和玻璃等构件的破坏为主;生命线系统破坏中桥梁损坏数量较大但程度较为轻微,主要破坏形式为桥台变形、支座失效及桥墩损坏等;公路破坏形式为路面隆起、龟裂和扭曲,多个地区产生了严重的拥堵现象;铁路系统受到了严重破坏,主要破坏形式为轨道发生严重弯曲和断裂;场地效应主要表现形式为土壤液化、山体滑坡和地面变形等,其中土壤液化现象较为广泛,且存在土壤液化导致附近的建筑物地基失效、房屋倾倒和生命线毁坏等破坏现象。震害调查表明:此次地震灾害分布集中在近震中地区,震害主要体现在建筑物、工程场地和生命线系统等方面。地震后土耳其根据欧洲ESRM20模型给出了明显过低的人口伤亡评估结果;美国地质调查局(USGS)第一时间给出了人员伤亡和经济损失等过于保守的灾害预测,不利于震害评估和灾害救援。需要完善和发展更加合理的地震灾害预测方法,震害资料不断累积后,2023年2月19日美国地质调查局给出了趋于准确的预测的结果,为了更合理的进行地震应急救援和灾后快速重建评估工作,需要发展新的灾害预测评估方法。 展开更多
关键词 土耳其7.8级地震 建筑物破坏 生命线破坏 场地破坏 震害预测方法
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2016年新西兰凯库拉M_(W)7.8地震同震破裂及子断层间相互影响
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作者 耿亚清 张勇 +1 位作者 邵志刚 刘琦 《地震》 CSCD 北大核心 2022年第2期123-139,共17页
2016年11月13日新西兰南岛东北部凯库拉M_(W)7.8地震同震破裂比较复杂,其发震断层多达12条.通过反演InSAR同震位移,确定了断层同震位错分布.结果表明:最大位移量发生在Kekerenbgu断层北部,约13.5 m,以右旋走滑运动为主,而最大逆冲错动... 2016年11月13日新西兰南岛东北部凯库拉M_(W)7.8地震同震破裂比较复杂,其发震断层多达12条.通过反演InSAR同震位移,确定了断层同震位错分布.结果表明:最大位移量发生在Kekerenbgu断层北部,约13.5 m,以右旋走滑运动为主,而最大逆冲错动发生在Jor-dan Thrust 断层和 Papatea 断层上,板块界面上的最大滑移位于Jordan Thrust断层下.为进一步分析各子断层破裂间的相互关系,基于各发震断层同震位错反演结果,分别计算了破裂过程中先破裂断层在后续破裂断层上的同震库仑应力变化.结果表明:相邻断层间引起的最大同震库仑应力变化量级在MPa范围,除Hundalee断层和Jordan Thrust东北部断层上的同震库仑应力减少外,其他断层都位于库仑应力增加的区域,增加的量级可达MPa,远高于一般认为的触发阈值0.01 MPa.据此认为,在此次地震复杂的多断层破裂过程中,静态库仑应力是破裂传播和断层触发的关键因素,在很大程度上促进了后续断层的破裂. 展开更多
关键词 2016年凯库拉M_(W)7.8地震 同震位错反演 同震库仑应力 触发
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2020年阿拉斯加M_(W)7.8地震断层滑动反演及其触发影响研究
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作者 王玉婷 王武星 +2 位作者 周新 刘琦 朱雨菲 《地震》 CSCD 北大核心 2022年第2期111-122,共12页
2020年7月22日,在北美板块和太平洋板块交界区的阿拉斯加半岛阿留申俯冲带上发生了M_(W)7.8逆冲地震,三个月后距震中西南80 km处发生了M_(W)7.6走滑地震,一年后距震中东南50 km处发生了M_(W)8.2逆冲地震.本文基于GPS同震形变,利用非负... 2020年7月22日,在北美板块和太平洋板块交界区的阿拉斯加半岛阿留申俯冲带上发生了M_(W)7.8逆冲地震,三个月后距震中西南80 km处发生了M_(W)7.6走滑地震,一年后距震中东南50 km处发生了M_(W)8.2逆冲地震.本文基于GPS同震形变,利用非负最小二乘方法反演了M_(W)7.8地震的断层同震破裂滑动分布,研究其变形特征,并基于地震位错理论计算了该地震对后续两个地震的库仑应力影响.地震断层滑动反演结果显示地震矩为9.28×10^(20) N·m,矩震级为M_(W)7.8;断层破裂滑移自震中沿断层向SWW向延伸,在震中西南侧断层滑动量较大,深度范围集中在25~45 km,最大滑动量为2.26 m.同震形变符合海沟特大地震的逆冲断层弹性回跳理论模式.库仑应力变化计算结果显示2020年阿拉斯加M_(W)7.8地震的库仑应力加载触发了M_(W)7.6走滑地震,并加速了2021年M_(W)8.2逆冲地震的发生. 展开更多
关键词 2020年阿拉斯加M_(W)7.8地震 同震位移 断层滑动分布 库仑应力 地震触发
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2016年新西兰凯库拉M_(W)7.8地震前空间大气扰动
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作者 虞良斌 高飞 +2 位作者 屈小川 安家春 綦子民 《大地测量与地球动力学》 CSCD 北大核心 2022年第10期1089-1094,共6页
采用欧洲中尺度天气预报中心(ECMWF)的ERA5温度数据和GPS观测数据,提取2016-11-13新西兰凯库拉M_(W)7.8地震前的温度异常和电离层VTEC异常,探讨震前空间大气扰动的时空变化特征。结果表明,2016-11-08、09震中以北分别出现温度异常和VTE... 采用欧洲中尺度天气预报中心(ECMWF)的ERA5温度数据和GPS观测数据,提取2016-11-13新西兰凯库拉M_(W)7.8地震前的温度异常和电离层VTEC异常,探讨震前空间大气扰动的时空变化特征。结果表明,2016-11-08、09震中以北分别出现温度异常和VTEC异常。温度异常具有增温-增温加强-增温衰减-增温高峰-快速衰减的变化特征,这与岩石形变-破裂释放热的过程基本一致;随着高度上升,增温面积及幅度逐渐减小,符合地震热异常在自下而上的抬升过程中逐渐消退的趋势。 展开更多
关键词 新西兰M_(W)7.8地震 电离层异常 四分位距法 温度异常 天体引潮力
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