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1.
基于常规地震干涉法和地震超越干涉法,提出了SI和BSI的结合方法SIBSI,即在SI被动源低频信息提取的基础上,重构主动源BSI地震数据,并利用BSI进行格林函数重构和面向目标的Marchenko成像.研究了基于频率优势的主动源低频重构方法,在完整保留了主动源信号高频信息的基础上,有效重构了低频信息,拓宽了地震数据的频带范围.讨论了含有自由表面多次波的地震数据在Marchenko成像中应用的方法.设计了一个含有高阻抗地层的模型,在该模型上使用SI低频信息重构BSI主动源地震数据,最后与纯主动源地震数据的格林函数重构和Marchenko成像进行了对比,证明了本文所提出方法的有效性、抗噪性以及在提高成像效果中的优势.  相似文献   

2.
多尺度快速匹配追踪多域联合地震反演是一种通过地震数据多尺度分解的迭代反演方法.与此同时,在快速匹配追踪算法中引入低频模型约束,有效提高了收敛精度,使反演结果具有丰富的高低频信息.首先通过对大尺度地震资料进行反演得到低频背景.在此基础上,采用中尺度与小尺度地震数据进行逐级迭代用以获得高频数据,因而有效缓解了常规反演方法对于初始模型精度的依赖.最后利用理论模型与实际地震数据进行测试,通过与常规时间域反演方法的反演结果进行对比可以看出,本文方法在地层连续变化处依然可以对变化地层进行精确刻画,且在纵向分辨率提升的同时保持了较好的横向连续性.  相似文献   

3.
多尺度快速匹配追踪多域联合地震反演是一种通过地震数据多尺度分解的迭代反演方法.与此同时,在快速匹配追踪算法中引入低频模型约束,有效提高了收敛精度,使反演结果具有丰富的高低频信息.首先通过对大尺度地震资料进行反演得到低频背景.在此基础上,采用中尺度与小尺度地震数据进行逐级迭代用以获得高频数据,因而有效缓解了常规反演方法对于初始模型精度的依赖.最后利用理论模型与实际地震数据进行测试,通过与常规时间域反演方法的反演结果进行对比可以看出,本文方法在地层连续变化处依然可以对变化地层进行精确刻画,且在纵向分辨率提升的同时保持了较好的横向连续性.  相似文献   

4.
针对传统拓频技术存在的振幅、相位失真等问题,提出一种双向拓频高分辨率地震技术(ButHRS),其主要通过Butterworth子波载波调制在低频和高频两个方向上来压制地震记录子波旁瓣,进而大幅拓宽地震记录频带.在提高地震资料分辨能力同时,可保持地震资料信噪比、相对振幅关系和时频特性的稳定.经准噶尔盆地乌夏断裂带3D地震...  相似文献   

5.
油气的存在并不是对所有频率成分的地震信号都产生影响,它只使部分频率能量发生变化,当储层含油气时,将会引起高频能量的衰减和低频能量的增强.通过频谱分析,确定储层由于含油气引起能量变化的主要高频和低频,利用分频属性确定油气范围.时频三原色显示技术的优势在于其同时利用了高、中、低频率融合在一起显示,更直观方便的突出了地震体的优势频率,为含油气性预测提供参考.Marr小波具有计算简单、速度快,又具有良好的局部性能,可以用Marr小波模拟雷克子波对地震记录进行分频,利用三原色显示技术达到快速成像的目的.实际应用表明该方法对低频伴影能做到快速准确识别的效果,该项技术的发展将为深水少井和无井区隐蔽油气藏的研究提供有力的技术支持.  相似文献   

6.
高分辨率地震资料可以达到更精细的井震标定结果,能更清晰地进行构造解释与储层刻画,同时对薄层具有更好的识别能力。为提高地震分辨率,需要对地震数据进行拓频处理。常规地震拓频方法通常在频率域进行,易受到高频噪音影响,降低资料可靠性。本文提出一种基于鬼波处理与多阶差分结合的时域拓频技术,仅通过原始地震道数次积分与差分运算便能拓宽地震频带,积分及差分结果在高斯窗口内进行振幅匹配以保证处理前后振幅一致性。与差分结果进行加权融合,高阶差分设置较小权值以避免高频噪声的影响,提高算法的抗噪性。本理论模型及实际地震资料处理分析结果表明,该方法能有效提高地震资料分辨率。   相似文献   

7.
海洋地震勘探由于受到海面强反射界面的影响,记录数据中存在鬼波,致使数据频谱中产生陷波效应,限制数据的频带宽度,影响数据的分辨率,干扰地层反射的识别.近年来发展的鬼波压制方法,能够较好的压制地震数据中的鬼波,然而现有鬼波压制技术容易产生延续相位,且计算效率较低.为进一步提高鬼波压制效果和工作效率,本文对海上地震资料特性进行分析,研究认为,海上地震资料中的海底反射信号真实记录了海底有效反射、震源鬼波和检波点鬼波的形态,可以利用提取的海底反射子波对数据进行确定性子波反褶积处理,能够有效的压制震源鬼波和检波点鬼波.模型海上实际数据测试结果表明,该方法具有鬼波压制效果好、计算效率高的优势,处理之后的数据频带得到有效拓宽,低频和高频信息均得到加强.  相似文献   

8.
地震数据中低频成分倾向于反映较厚的岩性地层单元,而高频成分倾向于刻画较薄的等时沉积单元,因此地震分频解释有助于精细沉积层序分析.但目前地震沉积学方法中使用频率滤波方法得到的分频剖面中,地层反射信息不全,不是真正意义上的分频地层反射剖面.为此,本文提出了一种基于时变子波稀疏脉冲反褶积的分频地震层序分析方法,目的是为了得到地层信息较全的真分频地层反射剖面.拟合例子中使用本文提出方法得到的分频地层反射剖面与真实情况相差非常小,验证了本文方法的准确性和有效性.对三角洲前积沉积层序的实例分析,可以清楚得到原始地震剖面中无法显示的细层层序,可用于精细层序分析.  相似文献   

9.
基于反演的稳定高效衰减补偿方法   总被引:1,自引:1,他引:0       下载免费PDF全文
反Q滤波方法是提高地震数据分辨率的一种有效途径,可以用来补偿振幅和校正相位.常规的反Q滤波方法一般基于波场延拓理论,具有不稳定性或振幅补偿不足的缺点.本文基于波场延拓的正Q滤波方程,借鉴反演的思想以及正则化策略提出了一种新的衰减补偿方法,该方法稳定、精确,利用该方法可最终得到高分辨的地震记录.该方法仅计算有效频带内的频率分量,提高了计算效率.模拟数据以及实际数据处理验证了本文方法的有效性.  相似文献   

10.
本文就两种抗噪反Q滤波方法进行了讨论,其中对比了考虑时频域信噪比的反Q滤波方法和基于变稳定因子的反Q滤波方法.与稳定的反Q滤波方法相比,这两种方法可以抑制噪声,提高反Q滤波后地震数据的分辨率和信噪比.然而,它们基于不同的方法原理,并且在处理效果上存在一定的差异.为了探究反Q滤波方法抑制噪声的关键问题,回顾了方法的原理,对比和讨论这两种方法的差异,并通过理论模型数据和实际地震数据进行了比较.测试结果表明,反Q滤波方法抑制噪声的关键在于有效控制振幅补偿的频带范围.就算法而言,考虑时频域信噪比的反Q滤波方法可根据地震数据的信噪比水平选择不同的频带补偿范围,具有较强的灵活性,但需要先计算出地震数据的时频域信噪比;而基于变稳定因子的反Q滤波方法具有更加简单的算法,其振幅补偿规律本身即具有一定的噪声压制能力,避免了计算时频域信噪比.当选取合适的参数,二者的振幅补偿频带范围接近时,这两种抗噪反Q滤波方法可以得到相似的处理效果.  相似文献   

11.
In land seismic surveys, the seismic data are mostly contaminated by ground-roll noise, high amplitude and low frequency. Since the ground-roll is coherent with reflections and depends on the source, the spectral band of seismic signal and ground-roll always overlap, which can be clearly seen in the spectral domain. So, separating them in time or frequency domain commonly causes waveform distortions and information missing due to cut-off effects. Therefore, the combination of these factors leads to search for alternative filtering methods or processes. We applied the conventional Wiener–Levinson algorithm to extract ground-roll from the seismic data. Then, subtracting it from the seismic data arithmetically performs the ground-roll suppression. To set up the algorithm, linear or nonlinear sweep signals are used as reference noise trace. The frequencies needed in creating a reference noise trace using analytical sweep signal can be approximately estimated in spectral domain. The application of the proposed method based on redesigning of Wiener–Levinson algorithm differs from the usual frequency filtering techniques since the ground-roll is suppressed without cutting signal spectrum. The method is firstly tested on synthetics and then is applied to a shot data from the field. The result obtained from both synthetics and field data show that the ground-roll suppression in this way causes no waveform distortion and no reduction of frequency bandwidth of the data.  相似文献   

12.
Ground roll waves interfere with seismic data. The suppression of ground roll waves based on the division of wavelet frequencies considers the low-frequency characteristics of ground roll waves. However, this method will not be effective when the ground roll wave and the effective signal have the same frequency bands because of overlapping. The radial trace transform (RTT) considers the apparent velocity difference between the effective signal and the ground roll wave to suppress the latter, but affects the low-frequency components of the former. This study proposes a ground roll wave suppression method by combining the wavelet frequency division and the RTT based on the difference between the ground roll wave velocity and the effective signal and their energy difference in the wavelet domain, thus making full use of the advantages of both methods. First, we decompose the seismic data into different frequency bands through wavelet transform. Second, the RTT and low-cut filtering are applied to the low-frequency band, where the ground roll waves are appearing. Third, we reconstruct the seismic record without ground roll waves by using the inverse RTT and the remaining frequency bands. The proposed method not only improves the ground roll wave suppression, but also protects the signal integrity. The numerical simulation and real seismic data processing results suggest that the proposed method has a strong ability to denoise while preserving the amplitude.  相似文献   

13.
一种自适应增益限的反Q滤波   总被引:3,自引:0,他引:3       下载免费PDF全文
地层的Q吸收会造成地震波振幅衰减、相位畸变,分辨率和信噪比明显降低.反Q滤波可消除由于地层Q吸收造成的振幅衰减和相位畸变,从而提高地震资料的分辨率;但反Q滤波振幅补偿的数值不稳定性问题会严重降低地震资料的信噪比,并产生很多假象.截止频率法和稳定因子法反Q滤波振幅补偿方法虽可控制数值非稳定性问题,但振幅补偿函数的增益限为一个时不变的常数,且与地震数据动态范围无关,其经常会压制深层地震波的高频成分,反而降低地震资料的分辨率;因此,本文在研究截止频率法和稳定因子法的基础上,结合地震数据的动态范围对地震记录分辨率的影响,提出了一种自适应增益限的反Q滤波振幅补偿方法,其增益限和稳定因子都是时变的,且都自适应于地震数据有效频带的截止频率.合成数据和实际数据试算表明,本文的自适应增益限的反Q滤波方法可恢复地震信号有效频带范围内的能量,且能较好地控制数值非稳定性问题,最终获得高分辨率和高信噪比的地震数据.  相似文献   

14.
提出一种自适应协方差的时频域极化滤波方法。该方法在广义S变换时频方法的基础上,构造时频域自适应协方差矩阵,通过特征分析计算时频域瞬时极化参数,设计极化滤波器,实现多分量地震极化分析和滤波。其优势在于协方差矩阵的分析时窗的长度由多分量地震数据的瞬时频率确定,可以自适应于有效信号的周期,在每个时频点计算极化参数不需要进行插值处理;结合时间频率信息,解决在时间域或频率域波形或频率重叠的信号具有明显的直观性。模型数据及实际三分量台站地震数据处理结果表明,该极化滤波方法在台站地震资料分析和处理方面具有很好的直观性和较高的分辨率。  相似文献   

15.
Greater attention has been paid to vintage-merge processing of seismic data and extracting more valuable information by the geophysicist. A match filter is used within many important areas such as splicing seismic data, matching seismic data with different ages and sources, 4-D seismic monitoring, and so on. The traditional match filtering method is subject to many restrictions and is usually difficult to overcome the impact of noise. Based on the traditional match filter, we propose the wavelet domain L1 norm optimal matching filter. In this paper, two different types of seismic data are decomposed to the wavelet domain, different detailed effective information is extracted for L1-norm optimal matching, and ideal results are achieved. Based on the model test, we find that the L1 norm optimal matching filter attenuates the noise and the waveform, amplitude, and phase coherence of result signals are better than the conventional method. The field data test shows that, with our method, the seismic events in the filter results have better continuity which achieves the high precision seismic match requirements.  相似文献   

16.
Conventional seismic data are band limited and therefore, provide limited geological information. Every method that can push the limits is desirable for seismic data analysis. Recently, time‐frequency decomposition methods are being used to quickly extract geological information from seismic data and, especially, for revealing frequency‐dependent amplitude anomalies. Higher frequency resolution at lower frequencies and higher temporal resolution at higher frequencies are the objectives for different time‐frequency decomposition methods. Continuous wavelet transform techniques, which are the same as narrow‐band spectral analysis methods, provide frequency spectra with high temporal resolution without the windowing process associated with other techniques. Therefore, this technique can be used for analysing geological information associated with low and high frequencies that normally cannot be observed in conventional seismic data. In particular, the continuous wavelet transform is being used to detect thin sand bodies and also as a direct hydrocarbon indicator. This paper presents an application of the continuous wavelet transform method for the mapping of potential channel deposits, as well as remnant natural gas detection by mapping low‐frequency anomalies associated with the gas. The study was carried out at the experimental CO2 storage site at Ketzin, Germany (CO2SINK). Given that reservoir heterogeneity and faulting will have significant impact on the movement and storage of the injected CO2, our results are encouraging for monitoring the migration of CO2 at the site. Our study confirms the efficiency of the continuous wavelet transform decomposition method for the detection of frequency‐dependent anomalies that may be due to gas migration during and after the injection phase and in this way, it can be used for real‐time monitoring of the injected CO2 from both surface and borehole seismics.  相似文献   

17.
18.
In land seismic surveys spectrum equalization can increase the quality of seismic data in a selected frequency band. The power of lower frequencies in the spectrum of input traces is generally greater than that of higher frequencies, particularly in land seismic surveys because of ground roll. In order to improve the quality of seismic data it is necessary to raise the energy of higher frequencies to the same level as that of lower frequencies, without alteration of the phases. The first step of the method is to compute the amplitude spectrum of each input trace to determine a weighting function which is then applied to the amplitude spectrum in order to balance it. The function is the inverse of the short wavelength variation of the amplitude spectrum. The short wavelength variation can be obtained by interpolation between average values of the modulus of the amplitude spectrum computed in narrow bands within a selected band of frequencies. Another way of obtaining the short wavelength variation is to apply a low-pass filter to the amplitude spectrum. The calculations are readily performed in the frequency domain by the Fourier transform. Spectrum equalization is automatically adjusted to each trace and does not modify the average amplitude in the time domain. However, as the frequency band and energy of the ground roll both vary according to the distance from the shot, spectrum equalization tends to make the spectrum of output traces independent of the offset distance. The use of spectrum equalization before any two-dimensional filtering improves ground roll elimination. Continuity and resolution of horizons are also increased by spectrum equalization before CDP stack. Several examples of applications of spectrum equalization to seismic land and marine surveys are shown.  相似文献   

19.
宽频带地震观测数据中有效信号和干扰噪声经常发生混频效应,常规的频率域滤波方法很难将二者分离.地震波信号属于时变非平稳信号,时频分析方法能够同时得到地震波信号随着时间和频率变化的振幅和相位特征,S变换是其中较为高效的时频分析工具之一.本文以S变换为例,提出了基于相位叠加的时频域相位滤波方法.与传统叠加方法相比,相位叠加方法对强振幅不敏感,对波形一致性相当敏感,更加利于有效弱信号信息的检测.时频域相位滤波方法滤除与有效信号不相干的背景噪声,保留了相位一致的有效信号成分,显著提高了信噪比.运用理论合成的远震接收函数数据和实际的宽频带地震观测数据检验结果显示该方法较传统的带通滤波方法相比,即使在信噪较低且混频严重条件下,时频域相位滤波方法的滤波效果依然很明显,有助于识别能量较弱的有效信号.  相似文献   

20.
含流体砂岩地震波频散实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了研究孔隙流体对不同渗透率岩石地震波速度的影响,在实验室利用跨频带岩石弹性参数测试系统得到了应变幅值10-6的2~2000Hz频段下的地震波速度和1 MHz频率下的超声波速度,利用差分共振声谱法得到了频率600Hz岩石干燥和完全饱水情况下岩石声学参数.实验表明,在低饱和度下,致密砂岩在地震和超声频段下没有明显的频散;在高饱和度下纵波速度的频散变得明显.从干燥到完全水饱和条件,不同频率测量的致密砂岩的体积模量随岩石孔隙度增高而降低,且体积模量的变化量受岩石微观孔隙结构的影响较大.高孔、高渗砂岩无论在低含水度下还是在高含水饱和度下频散微弱,并且在地震频段下围压对于岩石纵横波速度的影响要大于频率的影响.高孔、高渗砂岩和致密砂岩不同含水饱和度下的频散差异可应用于储层预测,油气检测等方面,同时该研究可以更好地帮助理解岩石的黏弹性行为,促进岩石物理频散理论的发展,提高地震解释的精度.  相似文献   

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