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1.
计算了滇西北地区的16个固定地震台和喜马拉雅台阵项目的103个流动台站(共119个地震台站)记录的238个5.8级以上的远震事件,从中挑选了5558个信噪比高、震相清晰的接收函数,采用人工读取震相到时的方法,获得了各个台站下方的地壳厚度和泊松比.结果显示:滇西北地区地壳厚度等值线呈ES向舌状突出,地壳厚度和泊松比横向变...  相似文献   

2.
SsPmp波是远震S波经地表反射转换的P波在莫霍面发生反射后被地表台站接收得到的震相.震中距在30°~50°之间的远震S波震相经地表反射转换的P波射线参数较大,在莫霍面发生全反射,使得台站接收的SsPmp波具有较强的能量,能够从地震记录中清楚地识别出来,为探测台站附近的莫霍面形态提供新的途径.本文通过合成理论地震图分析了SsPmp震相与地壳厚度、射线参数和Pn波速度之间的关系.结果表明:对于水平界面,地壳厚度只影响SsPmp与Ss波之间的相对到时差;Pn波速度只影响SsPmp的相位;射线参数既对SsPmp波的相对到时有影响,也会引起SsPmp波的相位变化.对于复杂的界面,SsPmp反映的深度与速度梯度最大的深度接近,而反映的Pn波速度与实际的Pn波速度一致.  相似文献   

3.
本文利用我国西南地区地震台记录的一次卡罗林岛地震和一次西里比斯岛地震的瑞利波,进行相位对比,用三台方法计算了各地区瑞利波的相速度。将观测的相速度与理论曲线(采用Press模型)比较,得到各地区的地壳厚度。  相似文献   

4.
利用中国大陆东部21个台站的43条面波大圆路径上瑞利面波记录的双台资料,计算出双台间地震面波相速度频散,采用Tarantola概率反演的方法求得相速度频散曲线的分布,并由各处相速度频散曲线反演得到地壳上地幔的三维横波波速图像,进而得到中国东部地壳上地幔的S波速度结构.结果表明:我国大陆东部地壳厚度总体上呈东薄西厚的趋势,以105°E为界向西地壳厚度逐渐加深到55 km以上,其中有一个北东向的h形地壳厚度的坡度带.豫西及晋南地区为相对薄地壳的地区.大别山地区和泰山附近地区地壳变厚,但秦岭地区地壳不变厚.上地幔低速层上界面的深度在华北地区较浅,为80-90km,在鄂尔多斯、四川东部以及黔湘地区为120-130km.扬子地块东部及华南褶皱系中、东部上地幔顶部速度偏低使低速层的速度反差不明显.滇黔褶皱系的西部在200 km以内的上地幔中未出现低速层.  相似文献   

5.
本文利用三个堪察加地震和两个阿拉斯加地震在我国某些地震台上所记录的乐夫波,进行了相位对比,用最小二乘法分别计算了各地区的乐夫波相速度。将观察的相速度与理论曲线相比较,得到各地区的地壳厚度。 理论曲线系根据多尔曼(Dorman)208模型的数据,采用β_1=3.53公里/秒,ρ_1=2.78克/厘米~3  相似文献   

6.
利用接收函数方法对横跨秦岭造山带、渭河地堑及鄂尔多斯块体的15个地震观测台站下方的地壳结构进行研究分析,结果表明三种不同类型(造山带型、拉张盆地型和稳定克拉通型)的构造单元的地壳结构和物质组成存在明显的差异.秦岭北缘平均地壳厚度为37.8km,泊松比为0.247,相对偏低的泊松比表明地壳物质长英质组分增加.鄂尔多斯块体南缘平均地壳厚度为39.2km,泊松比为0.265,偏高的泊松比与鄂尔多斯下方古老的铁镁质结晶基底以及浅部沉积有关.通过接收函数正演计算表明低速的、厚度较大的松散沉积层对Mohorovicic不连续面(Moho)的震相具有较大影响,是渭河地堑内部台站的接收函数Moho转换震相不清楚的主要原因.S波速度结构反演结果表明渭河地堑上覆松散沉积层,其厚度约为4-8km,该沉积层使得位于渭河地堑内台站的接收函数Moho震相复杂.另外渭河地堑下方中下地壳位置存在一高速区域,该高速体可能与渭河断裂系统的活动有关.  相似文献   

7.
本文选取黔江地震台2007年至2011年记录到的60个远震宽频带数字地震记录,采用频率域反褶积法获得台站的接收函数,并用H-Kappa叠加法来反演台站下方的地壳厚度和泊松比,最终得到了黔江地震台下方的地壳速度结构。同时,通过H-Kappa法反演得到的台站下方的地壳厚度作为波速反演的约束条件,以减少反演的非唯一性。计算结果显示,黔江地震台下方的地壳厚度为44km,这与广泛认同的中国大陆中西部地区莫霍深度在38—45km基本一致。本文对增强该地区深部地质构造特征研究和孕震机制分析具有积极的意义。  相似文献   

8.
论述了地震定位系统中所涉及的台站记录震相数据的筛选、地壳速度结构及遗传算法初始化参数的选择等技术改进思路,结合山东数字化虚拟测震台网的实际记录,研究了不同的速度结构和不同的定位方法对定位精度的影响.结果表明,选择遗传算法和华南速度模型,并合理选择震相数据,可保证利用较少的台站数据以较快的速度给出较高定位精度的地震基本参数.  相似文献   

9.
利用小湾电站水库诱发地震台网之青华地震台记录到的93个远震地震事件,挑选其中效果较好的55个远震地震事件进行接收函数的计算,研究同一个台站下方地壳厚度随反方位角的变化情况。结果表明:①在青华地震台下方地壳平均厚度约为40.5 km;②不同方位的远震事件反映出台站下方不同方位的地壳厚度存在差异;③青华地震台下方地壳厚度存在由南向北逐渐增厚的特点,而东西向的横向变化不明显;④青华地震台反方位角在112°附近区域地壳厚度变化异常明显。  相似文献   

10.
正借助中蒙国际科技合作项目中69个流动台站获取的宽频带地震阵观测资料,在前期已经完成的瑞利波相速度层析成像的基础上,应用研究区提取到的周期为10~80s的每个网格点瑞利波相速度频散,参考体波震相资料重建的地壳结构作为地壳初始模型,采用全球AK135模型的地幔部分作为地幔初始模型(其中假设100km以上地幔部分层厚10km,100  相似文献   

11.
Summary The records of Rayleigh surface waves from near earthquakes recorded at the seismic stations of Middle Asia have been analysed. The structure of the upper crust from dispersion of phase and group velocities of Rayleigh waves has been obtained.Communication presented to the XIII General Assembly of the European Seismological Commission, Brashov, 1972.  相似文献   

12.
由深源远震体波记录反演华北北部地壳上地幔速度结构   总被引:5,自引:2,他引:5  
重点研究的地区为河北省北部包括京津地区,以及山西、内蒙的部分地区,在此区选取了29个台站;在向东延伸的背景区,选取了6个台站。利用这些台站的深源远震体波记录资料,通过选取介质结构模型,计算理论地震图,与观测图进行拟合,以确定地震台下介质结构的可接受模型。在拟合时,对每个地震台站都选择若干次深源远震的体波记录作为观测图。对每个地震台站一般都算出60个不同模型的理论图。实际上做出的结果比地壳深,为大约80km(即大致相当于岩石层或称岩石圈)厚度内的地壳上地幔介质结构,它们大都由10层左右的介质组成。通过波形拟合共给出了上述35个台站下的壳幔介质分层结构。并由此给出了Moho面的轮廓。  相似文献   

13.
Rayleigh wave phase velocities of South China block and its adjacent areas   总被引:2,自引:0,他引:2  
Using records of continuous seismic waveforms from 609 broadband seismic stations in the South China Block and its adjacent areas in 2010–2012, empirical Green's functions of surface waves were obtained from cross-correlation functions of ambient noise data between these stations. High quality phase velocity dispersion curves of Rayleigh waves were obtained using time-frequency analysis. These interstation dispersion curves were then inverted to build Rayleigh wave phase velocity maps at periods of 6–50 s. The results of phase velocity maps indicate that phase velocities at 6–10 s periods are correlated with the geological features in the upper crust. Major basins and small-scale grabens and basins display slow velocity anomalies; while most of the orogenic belts and the fold belts display high velocity anomalies. With the gravity gradient zone along Taihang Mountain to Wuling Mountain as the boundary for the phase velocity maps at period of 20–30 s, the western area mainly displays low velocity anomalies, while the eastern side shows high velocity anomalies. Phase velocities in the eastern South China Block south to the Qinling-Dabie orogenic belt is higher than that in the eastern North China Block to the north, which is possibly due to the differences of tectonic mechanisms between the North China Craton and the South China Block. The phase velocities at periods of40–50 s are possibly related to the lateral variations of the velocity structure in the lower crust and upper mantle: The low-velocity anomalies in the eastern part of the Tibetan Plateau are caused by the thick crust; while the Sichuan Basin and the southern part of the Ordos Basin display distinct high-velocity anomalies, reflecting the stable features of the lithosphere in these blocks. The lateral variation pattern of phase velocities in the southern part of the South China Block is not consistent with the surface trace of the block boundary in the eastern Yunnan Province and its vicinities. The phase velocities in the Sichuan Basin are overall slow at short periods and gradually increase with period from the central part to the edge of the basin, indicating the features of shallower basement in the center and overall stable lithospheric mantle of the basin. The middle and upper crust of the southern Ordos Basin in the North China Block is heterogeneous, while in lower crust and the uppermost mantle the phase velocities mainly exhibit high anomalies. High-velocity anomalies are widespread at the middle of the Qinling-Dabie orogenic belt, as well as the areas in southeastern Guangxi with Caledonian granite explosion, but its detailed mechanism is still unclear.  相似文献   

14.
我国西北地区地壳中的高速夹层   总被引:13,自引:1,他引:13       下载免费PDF全文
在我国西北地区的柴达木盆地东部和甘肃地区,在距离炮点40互100公里处,能够接收到不少能量较强的地壳深界面反射波。另外还发现一种与一般反射波性质不同的波,其视速度特大,视速度随距离的变化不大,而且有较明显的终点;其吋距曲线与一般深界面反射波的时距曲线相交。根据它的特征可以判断地壳中存在具有速度梯度的高速夹层.求得的夹层参数为: 甘肃地区柴达木盆地东部覆盖层厚度 18.8公里 30.5公里覆盖层平均速度 5.5公里/秒 5.3公里/秒夹层厚度 6.0公里 3.2公里夹层速度 7.5-8.5公里/秒 7.5-8.0公里/秒夹层的上下界面均为强反射面,可以产生多次反射波。分別利用相邻两个反射波可以求得各层参数,并能避免射线折射的影响。甘肃地区和柴达木盆地东部的地壳厚度分別为51和52公里。地壳中有高速夹层的存在,可以更好地说明P~*速度分散的原因,而且也能够解释Lg波的传播机制。  相似文献   

15.
Direct earthquake-to-station Rayleigh and Love wave data observed on high gain broadband records are analyzed in order to improve the lateral resolution of the uppermost mantle in the southwest Pacific region. We used data of nine permanent Geoscope and Iris stations located in the southern hemisphere and nine other stations as part of two temporary networks, the first one installed in New Caledonia and Vanuatu (hereafter named Cavascope network) by ORSTOM and the EOST from Louis Pasteur University in Strasbourg (France) and the second one installed in the Fiji, Tonga and Niue islands (hereafter named Spase network) by Washington University in St. Louis (USA). In order to collect more significant details on the surficial structures, we included the analysis of short period waves down to 8 s. A multiple frequency filtering technique has been used to recover phase velocities of Rayleigh and Love waves for selected earthquakes with magnitude greater than 5.5 and with known centroid moment tensor (CMT). About 1100 well-distributed seismograms have been processed in the period range 8–100 s and corrections for topography and water depth have been applied to the observed phase velocities. The geographical distribution of phase velocity anomalies have then been computed using the tomographic method developed by Montagner [Montagner, J.P., 1986a. Regional three-dimensional structures using long-period surface waves. Ann. Geophys. 4 (B3), 283–294]. Due to a poor knowledge of dense, well-distributed, crustal thickness values and corresponding velocity models, we did not perform or speculate on the construction of an S-wave 3D velocity model; therefore, we limited this study to the interpretation of the phase velocity distribution. The location of phase velocity anomalies are well determined and the deviations are discussed within the framework of the geological context and compared with other tomographic models. At long periods, from 40 s to 100 s, our results agree well with most of previous studies: the tomographic imaging shows a large contrast between low and high phase velocities along the Solomon, New Hebrides and Fiji–Tonga trenches. The lowest phase velocity anomalies are distributed beneath northern and southern Fiji basins and the Lau basin (corresponding to the volume situated just above the dipping slabs), whereas the highest values are displayed beneath the Pacific plate and the eastern part of Indian plate downgoing under the North Fiji basin. At shorter periods, our results show that the phase velocity distributions are well correlated with the large structural crustal domains. The use of local temporary broadband stations in the central part of the studied area gives us the opportunity to observe surface waves showing well-dispersed trains, allowing extended velocity measurements down to 8 s although aliasing due to multipaths become important. The continental regions (Eastern Australia, New Guinea, Fiji islands and New Zealand) show low velocities which are likely due to thick continental crust, whereas the Tasmanian, D'Entrecasteaux, and the Northern and Southern Fiji basins are characterized by higher velocities suggesting thinner oceanic crust. Additional analysis including the anisotropic case and S-wave velocity inversion with depth is in progress.  相似文献   

16.
用瑞利波研究新疆塔里木盆地地壳分层结构及QR   总被引:1,自引:0,他引:1       下载免费PDF全文
利用新疆塔里木盆地附近喀什和高台地震台所记录到的天然地震面波资料,研究了该地区的地壳结构,并测定了瑞利波QR值。 结果表明:塔里木盆地地壳为多层结构,地壳厚度约60公里,其中沉积层厚度约为10公里,是造成塔里木盆地的面波群速度异常低的主要因素。同时,地壳中部有一低速层;长周期瑞利波QR值偏低,反映了地震波在该区的地壳下部和上地幔的强衰减。  相似文献   

17.
Introduction The Yunnan region is located on the east margin of the collision zone between the Indian and Eurasian plates; it belongs to the south section of the N-S Seismic Belt of China and is the junc-ture of the Yangtze metaplatform, Songpan-Garz?fold system, Sanjiang fold system and South China fold system. This region has complex tectonic movements, crisscross faults and frequently occurring strong earthquakes, and hence it is one of the regions with the strongest earthquake ac-tivi…  相似文献   

18.
Digital seismograms from 25 earthquakes located in the southeastern part of Europe, recorded by three-component very broadband seismometers at the stations Vitosha (Bulgaria) and Muntele Rosu (Romania), were processed to obtain the dispersion properties of Rayleigh and Love surface waves. Rayleigh and Love group-velocity dispersion curves were obtained by frequency–time analysis (FTAN). The path-averaged shear-wave velocity models were computed from the obtained dispersion curves. The inversion of the dispersion curves was performed using an approach based on the Backus–Gilbert inversion method. Finally, 70 path-averaged velocity models (35 R-models computed from Rayleigh dispersion curves and 35 L-models computed from Love dispersion curves) were obtained for southeastern Europe. For most of the paths, the comparison between each pair of models (R-model and L-models for the same path) shows that for almost all layers the shear-wave velocities in the L-models are higher than in the R-models. The upper sedimentary layers are the only exception. The analysis of both models shows that the depth of the Moho boundary in the L-models is shallower than its depth in the R-models. The existence of an anisotropic layer associated with the Moho boundary at depths of 30–45 km may explain this phenomenon. The anisotropy coefficient was calculated as the relative velocity difference between both R- and L-models at the same depths. The value of this coefficient varies between 0% and 20%. Generally, the anisotropy of the medium caused by the polarization anisotropy is up to 10–12%, so the maximum observed discrepancies between both types of models are also due to the lateral heterogeneity of the shear-wave velocity structure of the crust and the upper mantle in the region.  相似文献   

19.
Using short-period (1–18 s) surface wave data recorded by 23 stations of the Yunnan Digital Seismic Network of China we determined phase velocities of the fundamental Rayleigh wave along 209 paths by the two-station narrowband filtering and cross-correlation method, followed by an inversion for phase velocity distributions at various periods using the Ditmar-Yanovskaya method. We then obtained a 3-D S-wave velocity structure of the middle and upper crust in the Yunnan region using the genetic algorithm. The results show strong lateral variation of phase velocity in the region. The short-period phase velocity variation is closely related to thickness variation of sedimentary layer in the shallow crust. Within the depth range of 26–30 km, the S-wave velocity in the Sichuan-Yunnan rhombic block is lower than in the surrounding areas. Most large earthquakes of M > 6.0 in Yunnan occurred in the transition zones between low and high velocities.  相似文献   

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