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1.
苏维刚  刘磊  孙玺皓 《地震工程学报》2022,44(3):700-706,712
2021年5月22日青海玛多发生了MS7.4地震,该次地震打破了中国大陆长时间的7级地震平静,随后在2022年1月8日发生青海门源MS6.9地震,分析这两次地震前的前兆异常变化对于青藏高原强震孕震过程和强震短临跟踪具有重要意义。通过对两次地震前青海西宁佐署地震台地下流体异常变化特征、同震响应和震后效应特征分析,发现:佐署动水位异常在2021年2月25日和2021年8月25日出现突降异常变化,较好地对应了玛多MS7.4和门源MS6.9地震;佐署动水位、水温在2021年7月10日同步出现的趋势性转折异常对门源MS6.9地震有一定的时空指示意义。佐署台作为构造敏感点,其地下流体异常变化对青海及邻区次级块体上强震具有较好的短期指示意义。  相似文献   

2.
钟骏  王博  周志华  晏锐 《中国地震》2021,37(3):574-585
地震地下流体在地震预测研究与震情跟踪方面发挥着重要作用,本文对2021年5月22日青海玛多MS7.4地震前震中附近地下流体观测资料及异常特征进行系统分析,并结合震前预测过程进行了回顾性总结。结果表明,玛多MS7.4地震震中距500km范围内存在5项异常,其中4项为短期异常,主要出现在震前2~3个月。异常在空间上分布不均匀,主要位于玛多MS7.4地震震中的东北部和西南部,整体呈现出由外围向震中收缩的迁移特征,且玛多MS7.4地震和2010年青海玉树MS7.1地震在异常特征和应力加载作用方面具有较好的相似性。研究结果为地震监测能力较低地区积累了震例资料,对于提升强震地下流体前兆异常认识及未来震情趋势判定水平具有一定的参考意义。  相似文献   

3.
2021年5月22日青海省果洛州玛多县发生M_S7.4地震。为探究本次地震的发震构造及余震分布特征,选取2021年5月1日—6月3日青海测震台网观测到的33°~36°N,97°~99.5°E空间范围内的地震观测报告,利用双差精定位方法进行双差精定位处理。重定位后整体残差平均减小了0.23,深度在5~25 km间随机分布。根据地震迁移方向和震区地质构造,认为本次地震的发震构造为昆仑山口—江错断裂,玛多—甘德东段受主震触发影响爆发一系列小震,两条断裂之间可能因为本次地震产生一定联系。本次地震产生新的断裂,突破了两条断裂之前的空区,连接到玛多—甘德断层,使两条断层交叉相连,形成新的断层构造。  相似文献   

4.
The MW7.4 Maduo earthquake occurred on 22 May 2021 at 02:04 CST with a large-expansion surface rupture. This earthquake was located in the Bayan Har block at the eastern Tibetan Plateau, where eight earthquakes of MS >7.0 have occurred in the past 25 years. Here, we combined interferometric synthetic aperture radar, GPS, and teleseismic data to study the coseismic slip distribution, fault geometry, and dynamic source rupture process of the Maduo earthquake. We found that the overall coseismic deformation field of the Maduo earthquake is distributed in the NWW-SEE direction along 285°. There was slight bending at the western end and two branches at the eastern end. The maximum slip is located near the eastern bending area on the northern branch of the fault system. The rupture nucleated on the Jiangcuo fault and propagated approximately 160 km along-strike in both the NWW and SEE directions. The characteristic source rupture process of the Maduo earthquake is similar to that of the 2010 MW6.8 Yushu earthquake, indicating that similar earthquakes with large-expansion surface ruptures and small shallow slip deficits can occur on both the internal fault and boundary fault of the Bayan Har block.  相似文献   

5.
2021年5月22日,在青海省玛多县发生了M7.4地震。研究选用5月1日至22日同仁台、宕昌台、武都台和姑咱台洞体应变观测资料,采用多尺度小波分解方法处理。结果显示,在尺度11,较近的两个台北南向在震前均出现幅度明显增大的现象,总体显示出震中距越小形变幅度越大的特征。对于5月份的10日至14日和16日至20日两个时段的矢量运动轨迹进行比较,显示出明显不同的运动特征。另外,大武台和合作台地磁垂直分量的多尺度小波分解也表明,在尺度18,同样时段内也存在振幅增大的现象,这也印证了应变异常的可靠性。我们认为这个应变异常现象和其后发生的玛多M7.4地震有关,是青藏块体东向推挤的结果。结合其他学者的研究结果,我们推测这可能与震中区下方存在的高导层的运动变化有关联。但这只是一个初步研究,其详细的孕震环境和机理尚需进一步研究认识。  相似文献   

6.
2021年5月21日云南漾濞县发生M_S6.4地震、5月22日青海玛多县发生M_S7.4地震,分别分析漾濞震中500 km内12个地电场台数据、玛多震中500 km内8个地电场台数据,获知:(1)漾濞地震周围罗茨等8台优势方位角在震前出现了异常变化,弥渡等4台看不出明显异常变化;盐源等7台相关系数在震前2~6个月出现了大幅度下降,元谋、苴林等5台相关系数看不出明显异常变化。(2)玛多地震周围门源等4台方位角在震前出现了异常变化,都兰等4台方位角看不出明显异常变化;门源等5台在玛多地震前2~6个月相关系数出现了大幅下降、变化范围明显变窄等现象,都兰、白水河、金银滩等3台优势方位角和相关系数都看不出明显异常变化。(3)两次地震分析中地电场优势方位角和相关系数异常变化在时间上皆具有同步或准同步性。  相似文献   

7.
嘉峪关气氡浓度在多年上升的背景下,于2017年出现了转折异常变化,但祁连山地震带内一直没有发生与异常幅度和持续时间相匹配的地震,直到2021年5月22日,在距离嘉峪关气氡测点570 km的玛多发生MS7.4地震。为了判断嘉峪关气氡浓度异常与玛多地震的关系,结合震例,从异常信度、震前异常特征、震后异常变化及地质构造背景等方面对其进行深入分析。结果发现:嘉峪关气氡浓度的异常特征与地震所处的构造有关,发生在祁连山地震带内的地震,气氡浓度异常表现为1年或半年尺度的年畸变,发生在该地震带以外远距离的地震,气氡浓度异常表现为多年的趋势性变化;玛多地震发生后,嘉峪关气氡浓度下降速率减缓之后转折,呈恢复状态;嘉峪关气氡测点与玛多地震都位于青藏高原东北部,具有相同的动力背景且在构造上具有关联性。综合分析认为嘉峪关气氡多年趋势异常与玛多MS7.4地震有关,研究对建立可靠的异常指标体系、提高地震预测水平具有重要意义。  相似文献   

8.
2021年5月22日,青海省果洛藏族自治州玛多县发生M_S7.4地震。以青海省地震局玛多地震烈度调查为基础,着重分析6个重点地区的房屋震害及极震区桥梁道路的破坏情况。此次地震震级高、伤亡轻,仅造成震中附近个别土木结构、砖木结构房屋出现倒塌破坏,部分砖混及框架结构出现楼梯间及填充墙开裂的现象,多数房屋基本完好;调查中还发现野马滩一号、二号大桥以及昌马河大桥均出现不同程度的倒塌损毁,这也为烈度图的划分提供了数据支持;最后对此次地震产生的次生地质灾害进行统计分析,并对灾后重建和抗震设防提出意见及建议。  相似文献   

9.
玛多7.4级地震前临震微波动现象研究   总被引:1,自引:0,他引:1       下载免费PDF全文
强震临震微波动是强震临震阶段优势频率集中在11~16 Hz、频谱形态较为整齐的临震异常脉动记录。利用"兰州临震微波动实时监控与跟踪系统"的数据资料,对2021年5月22日玛多7.4级地震震中200 km半径的范围内台站的临震微波动事件进行分析。认为震前距离震中67 km的巴颜喀拉台EW通道存在显著异常,达到杨立明提出的异常跟踪指标;10个测震台站中的8个在本次地震前记录到了临震微波动事件,震中南侧台站记录到的事件多于北侧。  相似文献   

10.
利用甘肃前兆台网观测资料进行时空扫描,发现地下流体参量、地倾斜等在甘肃酒泉金塔5.4级地震前10天内出现了一系列异常变化,鼎新—德令哈基线在两年半的时间内缩短5 mm;短临异常主要出现在距震中200km范围的台站,时间是3月中旬和4月下旬;临震异常集中出现的时间是4月28日至5月1日。距离震中较近的高台倾斜完整记录下酒泉金塔MS5.4地震发生过程中岩土石受力变化的全部过程,提供了地震孕育和发生的完整演化资料,对完善地震理论模型和地震预测有积极的研究价值。  相似文献   

11.
2017年8月8日四川阿坝州九寨沟发生M_W6.6地震,震源机制解显示该地震为左旋走滑型地震。对震中周围的GPS连续站观测资料进行处理,获得高频GPS动态形变和静态同震水平位移。震中100km范围内四川松潘和甘肃武都站观测到1 Hz动态形变。距离震中约69km的松潘站观测的同震水平位移为7.4mm。根据少量的GPS静态同震位移反演的同震破裂模型显示本次地震的最大滑动量为376mm,地震矩为7.25×1018 N·m,等效矩震级为M_W6.6。正演计算的同震三维形变场显示本次地震的最大水平位移可达4~5cm,垂直位移呈四象限分布,最大可达1.5cm,区域内10个流动GPS站可观测到同震形变。  相似文献   

12.
加卸载响应比(LURR)是根据岩石应力-应变关系的动态演化规律提出的地震预测方法。以Benioff应变为响应量,分析青海玛多M_S7.4地震前震中及其周边400 km内的LURR异常的演化特征发现,在震前一个月LURR值达到最高值,半个月之后出现高值回落的现象,说明此时孕震区岩石介质已进入屈服阶段的末端。在此基础上,利用NOAA卫星地面长波辐射(OLR)数据,分析高值回落后(5月14—25日)地面长波辐射值的短临异常演化规律。结果显示:震前在空间上仅仅在震中北部出现OLR显著且连续的短临异常变化并呈现向震中扩展的趋势,在时间上整个演化过程经历了初始增温-异常扩展-达到峰值-异常减弱-地震发生-异常消失等6个阶段。LURR和OLR震前短临异常特征说明,回落前的LURR高值反映了岩石介质屈服阶段的结束,OLR在一定程度上可以表征处于临界状态的活动断层的构造应力累积状态,综合研究两种物理参量震前异常演化特征,有助于更准确评估地震活动趋势。  相似文献   

13.
The time-space distribution characteristics of fault deformation anomaly in the near-source region and its outlying zone in the seismogenic process of the Jingtai M s=5.9 earthquake occurred on June 6, 2000 in Gansu Province is studied preliminarily. The distribution scope of fault deformation anomaly before the earthquake is wide, the anomaly shape is complicated and the pattern anomalous zone of fault deformation (strain) information index is obvious. The shape and amplitude of fault deformation anomaly in different regions differ significantly, which is closely related with the tectonic location of anomaly. The fault deformation anomaly of α, β, and γ phases along the western segment of Haiyuan fault zone shows the process from the quasi-linearity to non-linearity of fault movement in the near-source region, matches the high-value anomalous area of fault deformation (strain) information index, and reflects the high strain accumulation in the seismogenic region. However, the anomaly of abrupt jump and cusp with a large amplitude occurred in the areas far from the earthquake, such as Liupanshan fault zone which is the tectonic convergent section does not reflect the strain accumulation of its location, maybe it is a sign that the regional tectonic stress field is strengthened in the seismogenic process. Based on the above-mentioned facts and combined with the preliminary summary of experiences and lessons in the intermediate and short-term prediction of the Jingtai M s=5.9 earthquake, we study and explore the application of fault deformation anomaly to earthquake judgment. Foundation item: National Key Basic Research Development Program (G1998040703 and G1998040705), and State Scientific and Technological Project of the “Ninth Five-Year Plan” (96-913-09-01-02-03 and 96-913-09-02-02-03), China.  相似文献   

14.
利用乌什台数字化前兆形变观测资料,分析乌什MS 4.5级地震前乌什台水管倾斜仪、洞体应变仪数据变化情况。通过对比分析发现:地震前,洞体应变仪北南分量数据曲线正常,东西分量数据曲线加速拉张,05:14-20:32拉张幅度达到7.40×10-7,7月19日5时至20日16时乌什洞体应变仪东西分量快速拉张了9.20×10-7;7月19日5-19时,水管倾斜仪北南分量数据曲线正常,东西分量数据曲线反向西倾7.13ms,且05:59-06:06、07:36-07:46、18:42-18:56数据掉格,水管倾斜仪异常结束后1小时,在洞体应变仪异常过程中发生了乌什MS 4.5级地震。水管仪东西分量震前反向西倾,洞体应变仪东西分量震前拉张加速,短临异常明显,且2套形变观测震前异常时间同步性较好。  相似文献   

15.
运用Sentinel-1A卫星数据和D-InSAR技术,获取2021-05-21云南漾濞M_S6.4地震的同震形变场。结果显示,漾濞地震同震形变场长轴近NW展布升降轨形变场符号相反,视线向最大沉降量和抬升量为0.1 m。InSAR同震形变场反演的滑动分布主要集中在沿走向2~12 km,倾向1~9 km的范围内,最大滑动量0.35 m,发震断层长9.8 km、宽4 km,滑动量主要集中在地下3~6 km范围内,滑动角-146.7°。同震位移场及滑动分布模型反映本次地震为发震断层的右旋走滑事件,地震破裂未达到地表。断层模型反演结果显示,矩震级为M_W6.1,发震断层以北西走向右旋走滑运动为主,初步认为本次M_W6.1地震发震断裂可能是一条NW向的维西—乔后断裂西侧的隐伏次生断裂。  相似文献   

16.
An MS7.4 earthquake struck west China in Maduo county, Guoluo prefecture, Qinghai province on May 22, 2021, at 2:04 Beijing time (18:04 UTC on May 21, 2021), which broke the quiet period of Chinese mainland for 1382 days without earthquakes of magnitude 7 or higher. The analysis of the seismic data sequence would play an important role in the in-depth study of the Maduo earthquake and the Bayan Har block. The Institute of Geophysics, China Earthquake Administration (CEA), compiled observation data recorded through 57 broadband seismometers within 500 km of the earthquake epicenter and intended to share for further researches in earthquake science community. The shared dataset included waveforms of the event and its sequence with magnitudes of 3.0 or higher that occurred between May 22–31, 2021 with a sampling rate of 100 sps along with the continuous waveforms of 20 Hz and 100 Hz. Additionally, the seismic instrument response files also were shared. The event and continuous waveform records could be downloaded by submitting a request through the web platform of the Earthquake Science Data Center of the Institute of Geophysics, CEA (www.esdc.ac.cn).  相似文献   

17.
Based on the analysis of coseismic deformation in the macroscopic epicentral region extracted by Differential Interferometric Synthetic Aperture Radar (D-InSAR), and combined with the seismic activity, focal mechanism solutions of the earthquake and field investigation, the characteristic of coseismic deformation of M S=8.1 western Kunlunshan Pass earthquake in 2001 was researched. The study shows that its epicenter lies in the northeast side of Hoh Sai Hu; and the seismogenic fault in the macroscopic epicentral region can be divided into two central deformation fields: the west and east segments with the lengths of 42 km and 48 km, respectively. The whole fault extends about 90 km. From the distribution of interferometry fringes, the characteristic of sinistral strike slip of seismogenic fault can be identified clearly. The deformations on both sides of the fault are different with an obviously higher value on the south side. In the vicinity of macroscopic epicenter, the maximum displacement in look direction is about 288.4 cm and the minimum is 224.0 cm; the maximum sinistral horizontal dislocation of seismogenic fault near the macroscopic epicenter is 738.1 cm and the minimum is 551.8 cm.  相似文献   

18.
To study the crustal movement in the vicinity of the epicenter before the Zhangye MS5.0 earthquake in 2019, the characteristics of crustal deformation before the earthquake are discussed through the GPS velocity field analysis based on the CMONOC data observed from GPS. The baseline time series between two continuous GPS stations and the strain time series of an area among several stations are analyzed in the epicenter area. The resulting time series of baseline azimuth around the epicenter reflects that the energy of the fault in the northern margin of Qilian Mountain is accumulated continuously before 2017. Besides, the movement trend of azimuth slows down after 2017, indicating the stress accumulation on both sides of the seismogenic fault zone has reached a certain degree. The first shear strain and EW-direction linear strain in the epicentral area of the Zhangye MS5.0 earthquake remain steady after 2017, and the surface strain rate decreases gradually after 2016. It is illustrated that there is an obvious deformation loss at the epicentral region three years before the earthquake, indicating that a certain degree of strain energy is accumulated in this area before the earthquake.  相似文献   

19.
宋成科 《地震工程学报》2021,43(5):1037-1044
分析距离九寨沟MS7.0地震震中分别为65 km、254 km和238 km的松潘地磁台、成都地磁台和天水地磁台2017年连续观测结果,发现九寨沟地震前,松潘地磁台出现异常变化,主要表现为2017年5月开始,松潘地磁台长时间垂直分量累积变化量达40 nT。短时间内也存在地磁场突变,最高可达10 nT,而成都地磁台和天水地磁台地磁场无明显异常。通过对观测数据的详细检查发现松潘地磁台很多观测日的最后一个观测值与后一观测日的第一个观测值相差超过1 nT,因此认为九寨沟地震前观测数据的异常是由观测系统异常导致。对三个台站地磁场垂直分量日变化的统计分析发现垂直分量在不同时段相关性保持一致,说明地震前短时间内不存在地磁垂直分量的明显异常变化,三个台站地磁场日变化的差异是由地下介质性质不同导致。岩石圈磁场在震中西侧区域出现正负异常交替现象,这可能与九寨沟地震的孕育有关。  相似文献   

20.
河北应变固体潮汐参数及震例研究   总被引:1,自引:1,他引:0       下载免费PDF全文
选取河北省5个形变台站的观测资料,利用Venedikov调和分析法计算河北省境内M_S4.0以上的潮汐因子、相位等参数,发现应变潮汐因子对地震都有多则半年,少则几周的异常期。宽城台对河北省境内发生M_S4.0以上的地震中,震中距较其他台站最近(震中距最远为350km、最近为100km),资料较好,故在综合分析河北应变台站的基础上,重点选取宽城台的应变潮汐因子对河北2005—2015年地震案例进行简要分析,发现该台对地震的对应率达到60%,虚报率40%,漏报率极低只有14%,前兆异常可信度较高,可作为前兆异常的参考。  相似文献   

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