首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 156 毫秒
1.
对于平层界面和倾斜界面的反射地震波,基于射线理论,采用波动方程进行数值模拟;使用Matlab软件,编写2种界面不同倾角、不同震中距时反射地震波走时程序,绘制走时曲线,分析地震波的传播特点,为研究地震波在地球内部的传播路径提供参考。  相似文献   

2.
最短路径射线追踪方法是计算地震波走时的主要方法之一,该方法基于惠更斯原理和费玛原理,具有稳健、适于复杂介质模型的优点.为处理方便,最短路径方法中的介质模型通常以规则网格进行剖分,界面节点(界面与网格的交点)以其邻近的模型单元节点(即边界单元节点)近似表示.界面近似将导致计算误差,对于反射波尤为严重.反射波的走时精度可通过减小网格的尺寸提高,但这样会大大增加计算时间,为高精度和高效率地计算地震反射波走时,我们提出了一种基于规则网格的走时校正技术.地震波传播至或起始于边界单元节点的走时校正为地震波传播至或起始于该边界单元节点所对应的界面节点的走时.数值模型计算结果表明,走时校正方法可使反射波的走时精度提高约1~2个数量级,而其计算时间则和常规算法基本上在相同量级.  相似文献   

3.
界面和速度反射联合成像──理论与方法   总被引:3,自引:4,他引:3  
依据波逆行原理重新推导了由地震波反射走时资料反演界面深度的关系式──走时对界面偏导数关系,它不仅适用于反射波,也适用于透射波.还给出了任意多个复杂界面情况下走时对界面偏导数关系的离散形式.另外,正交算子投影法被推广用来解决速度与界面的同时成像问题.数值模拟的结果表明,本文的方法是有效的.  相似文献   

4.
平面声波在粗糙界面上的反射特征研究   总被引:3,自引:1,他引:3       下载免费PDF全文
基于有关粗糙界面的Rayleigh假设,讨论了平面声波按余弦规律快速变化的小尺度粗糙界面上的反射特征.研究表明:这类界面与位于该位置的一个过渡地层的作用相当.该过渡层的厚度为粗糙界面的起伏幅度,速度和密度为上下两层介质相应量的平均值.研究了埋藏很深的微粗糙界面所引起的地震反射(绕射)波的频散特性和走时的构成,即包含零炮检距反射时间、正常时差和界面粗糙时差三部分内容.该粗糙时差与空间坐标和时间坐标无关,与绕射波的阶次有关,绕射波尾随在反射波之后以某一固定的时差出现.且只有当界面的粗糙波长与地震波的波长相当时,才能观测到这类绕射波.该结论为粗糙界面地震反射资料的处理方法提供了理论依据.  相似文献   

5.
本文提出了一种利用反射波走时曲线计算垂向非均匀介质速度和反射界面深度的方法。当在地球表面没有获得来自地下某一深度范围内介质的任何信息时,可以认为这一深度范围内的地震波速度具有连续性。利用来自其底部反射界面的反射波走时曲线,可以计算出该深度范围的地震波速度结构。对三种模型进行了理论计算,所得反演解与真实值较为一致,其中计算出的反射界面深度最为精确。利用本文提出的方法可以计算两个相邻反射面之间的垂向非均匀速度结构,如低速层等。  相似文献   

6.
三维介质中速度结构和界面的联合成像   总被引:11,自引:5,他引:11       下载免费PDF全文
根据波逆行原理推导了三维介质中地震波射线走时对界面偏导数的完整基本关系式,并对基本关系式进行简化,得到其在二维和一维介质中的关系式. 给出了任意多个复杂界面情况下,反演时所需的走时对界面偏导数系数矩阵. 为了检验三维介质中速度和界面联合成像理论的有效性,进行了数值模拟计算,很好地对三维速度结构和界面进行了重建.  相似文献   

7.
高频假设下的地震射线理论以及相应的地震成像理论表明,在射线稀疏条件下,不可能得到较高分辨率的构造成像;而有限频射线理论更符合实际地震的传播规律,即地震波的走时不仅与中心射线(传统的几何射线)上的速度分布有关,而且与中心射线附近一定范围(称其为第一菲涅耳体)内的速度异常分布有关.鉴于此,本文提出了计算多震相地震波菲涅耳体有限频射线的方法,并定义了走时敏感核函数,同时给出了利用多震相菲涅耳体有限频射线进行速度模型和反射界面同时反演成像的公式.利用多震相走时资料,使用传统射线层析成像方法与有限频射线层析成像方法进行了速度和界面的同时反演成像.结果表明,当射线密度较小时,无论是对速度模型的重建还是对反射界面几何形状的更新,有限频射线层析成像方法均优于传统射线层析成像方法, 而变频有限频射线层析成像则是实际地震层析成像的首选反演算法.   相似文献   

8.
利用地震回折波资料反演界面位置与速度分布   总被引:1,自引:0,他引:1  
论述了利用地震回折波资料反演界面位置与速度分布的方法,推导了地震波走时对于界面位置偏导数的计算公式。数值模拟和实测资料的计算结果表明了该方法的有效性和编制的计算程序的实用性。该方法最突出的特点是充分地利用了透射波资料中所含的界面位置的信息。界面位置的分辨率与界面两边的速度反差有关,速度差别越大,则分辨率越高。  相似文献   

9.
为探索大容量气枪震源在陆内地壳结构反射地震探测中的应用前景,在安徽长江中下游池州一铜陵段完成气枪震源流动水体激发、岸上反射地震仪器接收的探测试验,获得测线下方反射地震数据剖面。结果显示:在研究区内大容量气枪震源激发的地震波信号具有传播距离远、穿透深度大等特点,在距炮点13km处获得清晰地震波初至起跳信号,纵向上双程走时...  相似文献   

10.
本文以有限元数值模拟方法为依托,依次从波场快照、地震记录、波场分离、工程实例等四个角度论证了地震波传播规律和波场分离特点.模拟了单界面介质条件下地震波在隧道围岩中传播的全波波场.研究了反射波时距曲线的线性相关系数.比较了τ-p变换和F-K变换的滤波特点.结合工程实例,讨论了这两类线性波场分离方法在提取隧道前方反射波中的可行性和准确性,研究结果表明:当隧道前方地层倾角由直立变为缓倾时,反射纵波和横波的时距关系都能很好的视为线性.地层倾角的改变主要影响反射波走时和视速度.因此,应用τ-p变换和F-K变换进行波场分离,提取隧道前方单独的反射纵波和横波是可行和有效的.但对于缓倾地层,线性变换波场分离的结果存在较大的走时和视速度误差.易误滤除反射信号,需进行偏移处理.  相似文献   

11.
藏北与滇南均是地震多发区,甘肃台网记录的该两区地震波有明显差异。滇南地震波途经青藏高原东缘到兰州,其体波波列以短周期成分为主。短周期面波L(g1)和L(g2)非常显著,起始尖锐。藏北地震波途经青藏高原东北部到兰州,传播介质对地震体波的短周期部分吸收相当强,体波和面波均有一定的衰减,L(g1)不明显或缺失,L(g2)起始缓慢,周期长。对两区地震波的对比研究表明,由于两传播路径中的上地幔与地壳上部构造差异显著,介质密度和分层不同,对地震波的吸收也就不同,从而造成两地区地震记录上的差别。  相似文献   

12.
随着深井观测地震台网的进一步发展,在深井中获得的地震资料反映出了不少有意义的信息。本文对纵向不同深度上记录的地震波特征进行了分析和研究,探讨了纵向不同深度上各点之间记录的地震波走时差异和振幅差异的物理成因,指出了台基介质特性及空间状态(全空间或半空间)对地震波传播特征和记录特征的影响,并用软盖层效应加以统一解释。结果表明,在地下纵向不同深度上,自下而上直至地面,地震波的位移幅度逐渐放大、走时加长、周期变大;平原地区的松散沉积覆盖层对地震波产生放大、延时和滤波作用;在井下可以观测到向下传播的地面反射波,因而使得波列变复杂。  相似文献   

13.
Currently, the study on the active fault in the land areas is relatively mature, while there is still lack of detection and research on active faults in the sea areas. Marine exploration, which is different from land areas, has a prominent problem due to the existence of strong reflecting interfaces such as water surface and seafloor in the sea, thus the recording is often accompanied by interference of multiples on seafloor reflections. In addition, because of the characteristics of marine seismic exploration, the source exciting in the water and the geophone receiving in the water, ghost wave usually can be recorded simultaneously during the reflected wave propagation. This phenomenon makes it difficult to distinguish the effective waves and the noise, and has always plagued the data and seriously affects the quality of records. In the offshore and other regions of complex structures, such as inclined interfaces, it is difficult to eliminate the interference of multiples accurately by traditional multiples suppression methods, which are based on the horizontal interface assumption. This paper combines the sea area seismic data and its acquisition method, uses simplified model to simulate the multiples based on the time-distance analysis of multiples and their ghost wave in inclined interface. The time-distance characteristics of the multiples and their ghost waves from different interfaces(including the inclined interface)are obtained, and they are consistent with the actual records. The multiples time-distance simulation can help to distinguish the causes of reflected waves, summarize the multiple-wave time-distance characteristics from different interfaces(including inclined interfaces), and analyze the relationship between the characteristics of multiple waves and primary waves. In particular, this simulation has a significant effect on characterizing the internal multiples that are difficult to identify due to inconspicuous periodicity and the multiples of the inclined interface which present the phenomenon that the vertex of the time-distance curve is shifted. On this basis, relying on the time-distance analysis of ghost wave, we analyze the travel time difference characteristics between reflected waves and their accompanying ghost waves. The differences of the travel time characteristics of different orders ghost wave and reflected wave are summarized and the symmetry of the travel time difference between inclined interface and horizontal interface of ghost waves and reflected waves is analyzed. We simulate the distraction of the ghost wave event with the event of the reflected wave and analyze the influence of the ghost wave on the sea area seismic records. These results can improve the practical interpretation of seismic data. At last, the time-distance information is used to synthesize sea area seismic records, which can help us carry out the effective data processing and understand the characteristics of the time-distance and velocity of multiples in different interfaces and the layer artifact caused by multiples. This study combines the time-distance simulation of multiples and their ghost wave with conventional seismic data processing to analyze the pre-stack and post-stack features of multiple waves and their ghost waves in the seismic records of the sea area. The results of this study are conducive to the effective identification of multiples in seismic records in the sea, provide a theoretical basis for multi-wave suppression and prediction, and may facilitate the future study of sea-area seismic activity detection.  相似文献   

14.
Dispersion analysis is an important part of in-seam seismic data processing, and the calculation accuracy of the dispersion curve directly influences pickup errors of channel wave travel time. To extract an accurate channel wave dispersion curve from in-seam seismic two-component signals, we proposed a time–frequency analysis method based on single-trace signal processing; in addition, we formulated a dispersion calculation equation, based on S-transform, with a freely adjusted filter window width. To unify the azimuth of seismic wave propagation received by a two-component geophone, the original in-seam seismic data undergoes coordinate rotation. The rotation angle can be calculated based on P-wave characteristics, with high energy in the wave propagation direction and weak energy in the vertical direction. With this angle acquisition, a two-component signal can be converted to horizontal and vertical directions. Because Love channel waves have a particle vibration track perpendicular to the wave propagation direction, the signal in the horizontal and vertical directions is mainly Love channel waves. More accurate dispersion characters of Love channel waves can be extracted after the coordinate rotation of two-component signals.  相似文献   

15.
组合震源技术通过调节延迟激发时间和震源埋藏深度能够实现地震波场的定向传播,提高地震波的照明能量和地震数据信噪比.然而,目前国内外对基于特定目标的组合震源最佳聚焦方向的选取以及起伏地表组合震源定向理论的研究相对较少.在聚焦方向选取方面,目前基本是利用多种不同延时参数的组合震源分别进行试验,从而确定较好的组合震源延时参数.本文则利用爆炸反射面原理,在目的层界面上均匀布置震源同时激发地震波,能够产生垂直于地层界面传播的平面波,当初至波传播至地表时进行地表方向统计.根据互易性原理,以初至波传播方向的反方向为聚焦方向,激发产生的地震波主波束方向将垂直入射到目的层界面上,从而精确的计算出组合震源的最佳聚焦方向.在组合震源定向方面,目前主要是利用组合震源方向因子公式进行计算,但该方法要求震源布置在同一条直线上,并不能满足起伏地表的应用要求.本文以惠更斯-菲涅尔原理为理论基础,提出通过炮点向量在聚焦方向上的投影来确定组合震源传播至虚拟波前的走时,从而确定任意起伏地表组合震源的延迟激发时间.该方法不仅能够计算出沿给定地质模型的目的层界面垂直入射的组合震源聚焦方向,也能够确定任意起伏地表情况下形成沿该聚焦方向定向传播地震波场的组合震源延迟激发时间.因此,本文提出的面向目标的起伏地表组合震源延时参数计算方法对组合震源数据采集具有理论与实践意义.  相似文献   

16.
基于精细积分法的三维弹性波数值模拟(英文)   总被引:1,自引:0,他引:1  
波动方程有限差分法是地震数值模拟中的一种重要的方法,对理解和分析地震传播规律、分析地震属性和解释地震资料有着非常重要的意义。但是有限差分法由于其离散化的思想,产生了不稳定性。精细积分法在有限差分法的基础上,在时间域采用解析解的表达形式,在空间域保留任意差分格式,发展成为半解析的数值方法。本文结合并发展了以往学者的成果,推导了任意精细积分法的三维弹性波正演模拟计算公式,并对其稳定性进行了数值分析。在计算实例中,实现了精细积分法二维和三维弹性波模型的地震正演模拟,对计算结果的分析表明,精细积分法反射信号走时准确,稳定性好,弹性波场相较于声波波场,弹性波波场成分更为丰富,包含了更多波型成分(PP-和PS-反射波、透射波和绕射波),这对实际地震资料的解释和储层分析有重要的意义。实践证明,该方法可直接应用到弹性波的地质模型的数值模拟中。  相似文献   

17.
Acoustic transversely isotropic models are widely used in seismic exploration for P‐wave processing and analysis. In isotropic acoustic media only P‐wave can propagate, while in an acoustic transversely isotropic medium both P and S waves propagate. In this paper, we focus on kinematic properties of S‐wave in acoustic transversely isotropic media. We define new parameters better suited for S‐wave kinematics analysis. We also establish the travel time and relative geometrical spreading equations and analyse their properties. To illustrate the behaviour of the S‐wave in multi‐layered acoustic transversely isotropic media, we define the Dix‐type equations that are different from the ones widely used for the P‐wave propagation.  相似文献   

18.
产生地震动空间效应的主要原因是地质构造的变化会极大地改变复杂场地条件下到达不同观测点的地震波,因此地震波振幅和相位发生明显变化。本文利用有限元和边界元耦合的方法,通过建立雷克子波入射时的非线性响应模型求解复杂场地条件下的波动积分方程,进行复杂近地表构造中地震波场数值模拟,旨在分析复杂场地条件下入射方向不同的地震波的动力响应规律。研究结果显示近地表会极大地改变地震波传播特征,导致地震波传播趋向不一致性的因素是由于复杂场地条件重建了地震波的传播路径,尤其须指出的是非一致性地表位移响应源于软土层中低频子波的传播。在地震响应分析中导致系统不同动力响应的其他原因是主频和地震波速度结构的改变,同时地震波入射角度的改变会引起到达观测点的时间滞后,地表位移响应随着入射角度的增大而增加,地震动的空间效应随着入射角度的减小而愈趋明显。  相似文献   

19.
Summary Section 1 (and 11) develops the concepts of the front velocity, the front gradient, the travel time in space and on seismometric profiles, the profile velocity and the profile gradient in connection with the propagation of the fronts of elastic waves in solid isotropic and anisotropic media. The sectional velocity and the sectional gradient are defined in terms of the motion of the curve of intersection of a front with a fixed surface. Section 2 (and 12) relates the coefficients of elasticity of the medium, the front types, and their respective rays. In section 12, the theory of fronts of arbitrary shape and of the corresponding rays for any anisotropic, homogeneous or inhomogeneous solid medium is summarized. In section 3 (and 13), the law of reflection and refraction of fronts on surfaces of discontinuity of arbitrary shape is presented. Sections 4 to 6 (and 14 to 16) treat some elementary applications of seismic travel time methods to homogeneous, uniaxially anisotropic media (=transverse isotropy) in greater detail. In section 4 (and 14), the travel time of a direct front generated by a point source is considered and it is shown how the coefficients of elasticity of the medium can be found based on travel time measurements. The seismic prospection of a plane reflector and of a reflecting boundary of arbitrary shape and position are discussed in section 5 (and 15). In section 6 (and 16), the seismic refraction method is used to locate a plane boundary between a homogeneous, uniaxially anisotropic and a homogeneous isotropic medium, where the boundary is perpendicular or at an arbitrary angle to the direction of anisotropy.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号