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1.
应用CAP和深度震相方法,对2018年3月20日发生在广东阳西的M3.7级地震震源深度进行了测定。首先通过CAP方法反演获得震源机制解,拟合最佳震源深度为12km。然后在震中距100km以内的近台识别出清晰的sPL和PmP、sPmP震相,利用频率-波数(F-K)方法,计算出深度震相在不同深度下的理论地震图,与实际观测波形对比测定震源深度为12km。再利用250~400km震中距范围内台站上识别出的sPn与Pn震相的走时差,测得震源深度12.6km。多种方法的研究结果一致,表明该地震震源深度为12km比较可靠。  相似文献   

2.
本文从误差解析公式及数值模拟计算两种途径讨论了利用常用地方震相Pg,Sg,PmP,Pn,sPL测定震源深度的误差问题,结果表明,两种途径获取的误差值相当。对于上地壳的地震而言,当直达波走时误差处于0.1 s的量级时,若要将误差控制在3 km左右,则应选用震中距为30 km以内的台站;当走时误差处于0.2 s的量级时,若要控制同等误差,则应选用震中距为20 km以内的台站;如果地震位于下地壳,震中距可适当放宽,然而当震中距更大或走时误差更大时,震源深度的误差则近乎成倍增长。PmP,Pn,sPL对上地壳的震源深度测定误差要小于下地壳,同时对误差的控制较好,不会随震中距的增大而快速增大,震中距处于90 km范围以内且走时误差小于0.1 s时的深度误差基本均能控制在3.5 km以内。此外,本文还通过“棋盘格”的方式定量地分析了速度扰动对走时的影响,并以首都圈地区台网布局为基础,分析了加入首波对震源深度测定的改善效果。这两项数值对比结果均表明,在2%的速度扰动下,只要下地壳和莫霍面的速度参数不同时出现过大或过小现象,加入首波后对震源深度的测定误差则基本能控制在3 km以内,且一致性明显地高于单独使用直达波。   相似文献   

3.
上海地震台阵的地震定位方法   总被引:5,自引:0,他引:5  
详细介绍了上海地震台阵数据处理软件系统中的地震定位方法,用台阵的聚束方法得到地震的方位角和视慢度,根据统计得到的视慢度-震中距表推算震中距。并结合了地震台网的定位方法,由单台记录的各类主要震相从J-B走时表得到震中距,然后进行地震定位。该定位方法可对近震、远震进行定位处理,并由深震相得到震源深度。  相似文献   

4.
Pb震相是近震震相中的一个重要震相.关于Pb震相典型特征的总结和分析,对指导区域台网工作人员如何识别该震相,丰富台网观测报告震相产出,提高地震定位精度和确定康拉德界面等相关研究具有重要意义.但由于识别困难,国内很少有系统进行有关Pb震相的识别和研究工作.本研究采用首都圈地区高密度台网2009-2015年记录到的369个ML≥2.5地震事件的波形资料,重新分析震相并识别出1153条Pb震相.基于震相资料,利用时频分析、多项式拟合、射线分析、最小二乘法、联合反演、理论走时计算等方法进行研究,并在结合前人研究结果的基础上,我们得出:在首都圈及邻区,在肉眼可识别时频域内的特征来看,通常容易识别的Pb的振幅或频率高频部分相对比初至Pn和Pg大或高,也有振幅变小或者频率变化不明显的情况,这可能与震源机制、台站方位、场地响应、仪器类型等方面有关.时频分析、功率谱密度和肉眼识别分析的结果表明,P波的主要能量集中在相对低频部分,Pn,Pb,Pg,PmP四种震相(本研究以后提到的震相顺序只考虑这四种震相)有很强的共性,区别在于传播路径上的不同,频率或观测记录周期上的小幅度差别.在Pg作为初至波时,Pb震相的低频主频部分与Pg震相的低频主频部分带宽差不多(受到包含Pg震相的影响),但是高频主频部分频率更高,Pb到时在Pg之后,PmP之前.Pn作为初至波时,Pn震相低频主频部分带宽比Pb宽,但是Pb高频主频部分频率相对更高,Pb在Pn之后,在Pg之前.鉴于震源深度对Pb到时顺序的影响,及其在定位结果中精确度最差的情况,在震中距约在80~140km范围内时,得考虑区域地壳厚度横向不均匀、震中距、震源深度等情况并结合波形特征,来判定Pb是否为初至震相.Pb震相在康拉德界面的平均传播速度约为7.0km·s^-1,康拉德界面平均深度约为23km.Pb射线的分布情况直接证明了康拉德界面在首都圈地区的分布是连续的.基于本研究利用Pg,Pb,Pn,PmP震相走时联合反演所得模型计算的理论走时结果和实际观测结果一致进一步证明了我们结果的可靠性.  相似文献   

5.
Automatic pickings in earthquake real-time monitoring systems often contain noise bursts and/or phases of different event(s) occurring almost simultaneously. Typically, a locator uses these picks as P and S waves arrival times coming from a single event and, therefore, should be complemented by a distinctive phase association logic. The method we propose manages to automatically associate data related to different events and eliminates the influence of spoiled data from single events. The method is based on “network beamforming”, a robust and stable algorithm, which utilizes a hypocenter grid search for the stack maximum of a set of complex exponents applied to the P phase readings. The algorithm separates the residual outliers and then uses them for location. If successful, a hypocenter is established for the interfering event. The solutions obtained are overall robust and independent from the estimate of origin times. The preliminary epicenter for the grid search is provided by the intersection of perpendicular bisectors in the modified “arrival order algorithm” or by the modified “Tnow” algorithm, which uses non-arrival information. We applied this method to automatic first arrival phase readings of 915 events registered by the Hi-net Japan seismic network and our results are statistically promising. Here, we present two interesting and complicated examples.  相似文献   

6.
2011年1月19 日安庆ML4.8地震的震源机制解和深度研究   总被引:19,自引:7,他引:12       下载免费PDF全文
2011年1月19日在安徽省安庆市辖区与怀宁县交界处发生了ML4.8级地震,引起安庆市及周边地区强烈的震感.为了更好地认识这次地震的发震构造,我们利用安徽省及临近几个省份区域台网的近震波形资料,首先通过hypo2000绝对定位得到震中位置;然后采用CAP方法反演了该地震的震源机制解和震源深度,并在此基础上结合P、sP、pP和sPmP等深度震相对震源深度进行了精确确定;最后,将反演得到的结果作为已知输入,利用F-K方法计算理论地震图,并与观测记录进行对比,以验证结果的可靠性.反演结果显示,这次安庆地震是一个带少量走滑分量的逆冲型地震,地震矩震级为MW=4.3,最佳双力偶解为节面Ⅰ走向131°,倾角30°,滑动角29°;节面Ⅱ走向15°,倾角75°,滑动角116°,最佳震源深度为4~5 km,属于浅源地震.从震中和震源机制解来看,安庆地震极有可能发生在宿松-枞阳断裂上.  相似文献   

7.
The little destruction to the deployment site and high repeatability of the Controlled Accurate Seismic Source (CASS) shows its potential for investigating seismic wave velocities in the Earth's crust. However, the difficulty in retrieving impulsive seismic waveforms from the CASS data and identifying the seismic phases substantially prevents its wide applications. For example, identification of the seismic phases and accurate measurement of travel times are essential for resolving the spatial distribution of seismic velocities in the crust. Until now, it still remains a challenging task to estimate the accurate travel times of different seismic phases from the CASS data which features extended wave trains, unlike processing of the waveforms from impulsive events such as earthquakes or explosive sources. In this study, we introduce a time-frequency analysis method to process the CASS data, and try to retrieve the seismic waveforms and identify the major seismic phases traveling through the crust. We adopt the Wigner-Ville Distribution (WVD) approach which has been used in signal detection and parameter estimation for linear frequency modulation (LFM) signals, and proves to feature the best time-frequency convergence capability. The Wigner-Hough transform (WHT) is applied to retrieve the impulsive waveforms from multi-component LFM signals, which comprise seismic phases with different arrival times. We processed the seismic data of the 40-ton CASS in the field experiment around the Xinfengjiang reservoir with the WVD and WHT methods. The results demonstrate that these methods are effective in waveform retrieval and phase identification, especially for high frequency seismic phases such as PmP and SmS with strong amplitudes in large epicenter distance of 80–120 km. Further studies are still needed to improve the accuracy on travel time estimation, so as to further promote applicability of the CASS for and imaging the seismic velocity structure.  相似文献   

8.
Fuzzy neural network models for liquefaction prediction   总被引:1,自引:0,他引:1  
Integrated fuzzy neural network models are developed for the assessment of liquefaction potential of a site. The models are trained with large databases of liquefaction case histories. A two-stage training algorithm is used to develop a fuzzy neural network model. In the preliminary training stage, the training case histories are used to determine initial network parameters. In the final training stage, the training case histories are processed one by one to develop membership functions for the network parameters. During the testing phase, input variables are described in linguistic terms such as ‘high’ and ‘low’. The prediction is made in terms of a liquefaction index representing the degree of liquefaction described in fuzzy terms such as ‘highly likely’, ‘likely’, or ‘unlikely’. The results from the model are compared with actual field observations and misclassified cases are identified. The models are found to have good predictive ability and are expected to be very useful for a preliminary evaluation of liquefaction potential of a site for which the input parameters are not well defined.  相似文献   

9.
The dense broadband seismic network provides more high-quality waveform that is helpful to improve constraint focal depth of shallow earthquake. Many shallow earthquakes occurring in sediment were regarded as induced events. In Sichuan basin, gas industry and salt mining are dependent on fluid injection technique that triggers microseismicity. We adopted waveform inversion method with regional records to obtain focal mechanism of an M s4.8 earthquake at Changning. The result suggested that the Changning earthquake occurred at a ESE thrust fault, and its focal depth was about 3 km. The depth phases including teleseismic pP phase and regional sPL phase shows that the focal depth is about 2 km. The strong, short-period surface wave suggests that this event is a very shallow earthquake. The amplitude ratio between Rayleigh wave and direct S wave was also used to estimate the source depth of the mainshock. The focal depth (2–4 km) is far less than the depth of the sedimentary layer thickness (6–8 km) in epicentral region. It is close to the depth of fluid injection of salt mining, which may imply that this event was triggered by the industrial activity.  相似文献   

10.
This paper presents a summary of uncorrected peak ground accelerations recorded during the Northridge, California, earthquake of 17 January 1994 and a preliminary analysis of these data. The presented contours of recorded accelerations agree well with observed patterns of damage. The paper also addresses the issue of how ‘unusual’ and ‘unexpected’ the recorded accelerations are relative to earlier predictions.  相似文献   

11.
一种修定震源参数的方法   总被引:2,自引:1,他引:2       下载免费PDF全文
本文描述了空间域中的一种定位方法。此方法的主要特点是:1.震中位置与震源深度、发震时刻分离求解;2.震中位置的确定是采用Romney提出的曾融生改进的台偶到时差来建立最小平方条件方程,几乎不受结构的影响;3.震源深度和发震时刻的确定是采用慢度定深度、到时曲线时间截距定发震时刻的方法来实现的。本文用四川境内的5个工业爆破资料,作了方法试验并修定了近年发生的50个天然地震。修定后的震中位置更加靠近断裂带,走时残差减小了,震源深度呈现出沿龙门山断裂由北东向南西逐渐加深的规律性。  相似文献   

12.
Empirical scaling equations of Fourier spectrum amplitudes in terms of the Modified Mercalli Intensity (MMI), local soil conditions (‘rock’, stiff soil, and deep soil), and local geologic conditions (depth of sediments) are presented. It is shown that both soil and geological site effects should be used together in estimation of the site specific Fourier amplitude spectra.  相似文献   

13.
2011年1月19日发生的安庆MS4.8地震,在较远范围引起了明显震感.通过仔细辨认此次地震不同频段的波形记录,发现在一些台站记录到了清晰的SmS震相.采用CAP方法反演了其震源机制解,并利用理论地震图与实际观测数据对比进一步确认了SmS震相的存在.结合已有实验结果,推断在人类有感频率(1Hz至几Hz)范围内,震中距70——200 km内SmS震相往往是振幅最大的震相,是引起远距离有感的主要原因.利用理论地震图研究了震源深度对SmS震相的影响. 结果表明,震源深度可改变SmS震相发育的临界震中距,震源越深对应的临界震中距越小.进一步通过对比SmS与S的振幅比,定性讨论了震源机制解中倾角、滑动角和地壳浅层衰减等因素对SmS震相的影响.结果表明,倾角和滑动角对其振幅比影响呈现比较复杂的关系,而SmS与S振幅比随地壳浅层衰减的增大而减小,说明浅层衰减对SmS震相影响较大.综合分析认为,除当地地壳速度结构的影响外,SmS震相的发育受到震源机制解的倾角、滑动角,震源深度以及地壳浅层衰减等多种因素的影响.   相似文献   

14.
Glass and mineral fragments from discrete volcanic ash layers were sampled from DSDP/IPOD Site 450 in the Parece Vela Basin, Philippine Sea and analyzed by electron microprobe. The ashes are interpreted as eruptive products of the adjacent West Mariana arc system between 25 and 14 Ma B.P., and have compositions between basaltic andesite and rhyolite, and rarely, boninite. ‘Continuous’ chemical trends appear to reflect mixing of mafic and silicic magmas. ‘Discontinuous’ trends between these end-members are relatively few, and are consistent with ‘liquid lines’ produced by fractional crystallization. Andesitic tephra become progressively richer in MgO and CaO through the middle Miocene, while boninite appears towards the end of the sequence, between 14 and 15 Ma B.P. Coeval rhyolitic glasses become richer in K2O and Na2O, with maximum concentrations at about 15 Ma B.P. Chronologic changes in fractionation type and composition of parent magmas are interpreted to reflect the subaerial volcanic evolution of the West Mariana arc. The appearance of boninite is believed to signal early stages of arc sundering, and corresponds temporally with regional uplift of the sea floor above the carbonate compensation depth, precursor to a new pulse of back-arc spreading.  相似文献   

15.
利用北天山地区2016~2019年观测的4期流动重力观测资料,分析研究一年尺度的重力场动态变化特征,并利用小波分析方法,将不同场源深度的重力异常进行分离。通过功率谱分析,获取各阶小波重力细节对应的场源深度。研究结果表明,2017年8月9日精河MS6.6地震前,震中位于负值集中区,四阶小波重力细节显示震中附近出现明显的四象限分布;2020年1月16日库车MS5.6地震前,震中位于负值区,小波重力细节整体量值较小;功率谱估算的场源近似深度与2次地震的震源深度相近。  相似文献   

16.
大容量气枪震源特征及地震波传播的震相分析   总被引:27,自引:1,他引:26       下载免费PDF全文
利用大容量气枪震源在陆上水库进行地震波激发试验,研究陆上水库环境下激发气枪震源所产生的地震波特征及传播距离. 试验结果表明,大容量气枪震源是具有丰富的10 Hz以下低频信号的低频震源,其激发的地震波具有传播距离远,穿透深度深的特点. 在185 km长的测线上均记录到了气枪信号,成功检测到Pg,Pc,P2,PmP和Pn等多组震相,并在此基础上对地下深地壳结构进行了一维速度结构正演,讨论了该区域壳幔过渡带的低速结构. 气枪震源还具有一般炸药震源不具有的特征,如长期定点重复激发和有效转换S波的优点,是陆上进行长炮检距深穿透地下结构研究的一种优良人工震源.  相似文献   

17.
张建中  张珂  郝美仙  张晖  王鑫  翟浩 《中国地震》2021,37(3):671-680
以敖汉旗地区震群作为研究对象,选取内蒙古测震台网2018—2019年的震相观测报告,分别利用单纯型定位法、Hypo2000定位法和双差定位法对其进行重定位和对比分析。结果显示,双差方法的定位精度最高。根据双差方法定位结果,敖汉旗的震群在赤峰?开源断裂的南北两侧均有1个集中分布区,2个区域的震源深度范围均为4~12km;其中,73%的地震位于断裂北侧,震中位置沿NW?SE向呈条带状展布,延伸长度约6.8km,震源深度由西向东逐渐变深、由南向北逐渐变深再变浅;而断裂南侧的地震其震中位置聚集呈簇状,SN向最大扩展长度约0.98km,震源深度无明显沿EW或SN方向的变化特点。敖汉旗震群的精定位结果与对该序列地震空间分布特点的认识,可为该地区发震构造的研究与三维精细速度结构的建立提供更为精确的震源参数与参考依据。  相似文献   

18.
Time series measurements from an array of temperature miniloggers in a line at constant depth along the sloping boundary of a lake are used to describe the ‘internal surf zone” where internal waves interact with the sloping boundary. More small positive temperature time derivatives are recorded than negative, but there are more large negative values than positive, giving the overall distribution of temperature time derivatives a small negative skewness. This is consistent with the internal wave dynamics; fronts form during the up-slope phase of the motion, bringing cold water up the slope, and the return flow may become unstable, leading to small advecting billows and weak warm fronts. The data are analysed to detect ‘events’, periods in which the temperature derivatives exceed a set threshold. The speed and distance travelled by ‘events’ are described. The motion along the slope may be a consequence of (a) instabilities advected by the flow (b) internal waves propagating along-slope or (c) internal waves approaching the slope from oblique directions. The propagation of several of the observed ‘events’ can only be explained by (c), evidence that the internal surf zone has some, but possibly not all, the characteristics of the conventional ‘surface wave’ surf zone, with waves steepening as they approach the slope at oblique angles.  相似文献   

19.
Several new empirical equations of the frequency dependent duration of strong earthquake ground motion are presented. The duration is considered as being composed of two parts: (1) the duration of stong motion as it is observed at recording stations located on basement rocks, and (2) the prolongation of this duration for stations located on sediments. The first part, called the ‘basic duration’, is modelled in terms of the Modified Mercalli intensity and (in some cases) the hypocentral distance. The depth of the sediments under the station, the distance from the station to the rocks surrounding it, and the angular measure of the size of those rocks (as seen from the station) are chosen as the parameters for modelling the prolongation of the duration. The new empirical equations are compared (a) with each other, (b) with our previous models which used similar ‘prolongation’ terms, but the ‘basic duration’ was expressed in terms of the magnitude of the earthquake and the source-to-station distance, and (c) with models with ‘intensity-type’ ‘basic duration’, but with a simplified ‘prolongation’ term (the geological conditions at the stations are modeled by lumping all the sites into three groups: basement rock, sediments and intermediate geology). This collection of models is found to have good internal consistency. The choice of the proper model depends on the availability of the earthquake and site parameters. The residuals of the empirical regression equations are found to have similar distribution functions for all the models. An explicit functional form for such distributions is proposed, and the frequency dependent coefficients are found for all the models of duration. This allows one to predict (for each set of earthquake and site parameters) the probability of exceedance of any given level of duration of strong ground motion at a given frequency.  相似文献   

20.
LI Tong  GUO Zhi  GAO Xing 《地震地质》1979,42(4):881-892
The August 2018 Tonghai earthquake sequence and focal mechanisms of the two main shocks about MS5.0 were investigated through relocation of catalog data and inversion of event waveform recordings downloaded from the China National Seismic Network. The epicenter of 2018 Tonghai earthquake locates in the southern edge of Chuandian block, where the Xiaojiang Fault separates the Chuandian block from South China block in the east, and the Red River Fault separates the Chuandian block from the Indo-China in the southwest. These two faults blocked and absorbed the continuous southward movement of Chuandian block, significant tectonic stress has been built up in the southern tip of Chuandian block. As a seismicity active zone, Tonghai has been struck by a M7.0 strong earthquake in 1970. The August 2018 Tonghai earthquake is the major earthquake occurring in Tonghai and surrounding areas since the 1970 strong earthquake. Therefore, detailed focal mechanism study for 2018 Tonghai earthquake sequence is crucial for the earthquake relief effect for the Tonghai and surrounding area. In this study, we first relocate the epicenter of earthquake sequence by using the double difference relocation method, then we inverted focal mechanism for two main earthquakes with magnitude of ~5.0 by using the W-phase method. The relocated epicentral locations of Tonghai earthquake sequence show a NE-SW trend narrow band, predominant depth range of 5~10km and near vertical seismogenic fault. The focal parameters for the August 13 earthquake are: strike of 298.2°, a dip of 45.2°, a rake of -172.9° and strike of 203.2°, a dip of 84.9°, a rake of -45.0°, respectively, and magnitude of MW=5.07; Focal parameters for the August 14 earthquake are: strike of 297.0°, a dip of 63.6°, a rake of -161.5° and strike of 198.5°, a dip of 73.5°, a rake of -27.7°, respectively, and magnitude of MW=4.89. Combined analysis of the relocated epicentral locations and obtained focal mechanisms suggest that the seismogenic fault of the August 2018 Tonghai earthquake sequences could be related to the NE-striking Mingxing-Erjie Fault, and the temporal and spatial distribution characteristics of the earthquake sequence is consistent with the regional seismotectonic background.  相似文献   

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