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1.
基于小波变换的地震相干体算法研究   总被引:27,自引:2,他引:27       下载免费PDF全文
基于计算相干体算法,提出了用模拟地震子波的小波函数(或高分辨导数小波函数)的小波变换,得到分频瞬时相位,再计算相干体的相干体算法1和用小波变换得到的实、虚部(相当Hilbert变换)计算相干体的相干体算法2. 在油田构造解释中,为了突出小断层特征,用分频计算出的相干体进行重构. 实际资料计算表明,相干体算法2较K. J. Marfurt相干体算法抗噪声能力强;相干体算法1较相干体算法2在实际应用中效果更明显.  相似文献   

2.
Fault and fracture interpretation is a fundamental but essential tool for subsurface structure mapping and modelling from 3D seismic data. The existing methods for semi-automatic/automatic fault picking are primarily based on seismic discontinuity analysis that evaluates the lateral changes in seismic waveform and/or amplitude, which is limited by its low resolution on subtle faults and fractures without apparent vertical displacements in seismic images. This study presents an innovative workflow for computer-aided fault/fracture interpretation based on seismic geometry analysis. First, the seismic curvature and flexure attributes are estimated for highlighting both the major faults and the subtle fractures in a seismic volume. Then, fault probability is estimated from the curvature and flexure volumes for differentiation between the potential faults and non-faulting features in the geometric attributes. Finally, the seeded fault picking is implemented for interpreting the target faults and fractures guided by the knowledge of interpreters to avoid misinterpretation and artefacts in the presence of faulting complexities as well as coherent seismic noises. Applications to two 3D seismic volumes from the Netherlands North Sea and the offshore New Zealand demonstrate the added values of the proposed method in imaging and picking the subtle faults and fractures that are often overlooked in the conventional seismic discontinuity analysis and the following fault-interpretation procedures.  相似文献   

3.
特征值相干属性是一种高效、成熟的裂缝预测技术。但即使在连续、稳定的目的层段,部分裂缝隐没于相近高灰度值区域而难以识别;在破碎带发育区域,由于成像能量难以完美聚焦,中、小尺度的裂缝区域呈现相近低灰度值的云雾状模糊而无法区分。本文提出一种以直方图均衡化处理为核心技术的新型裂缝增强方法。该方法能够强化相干图像中不连续性信息与背景的差异性,突出裂缝的线性结构:采用相干图像阈值逐级调节的方式,实现对不同尺度裂缝的预测。该方法同时提升了显性、隐性裂缝识别能力和精度。  相似文献   

4.
断层识别技术及其在MB油气田的应用   总被引:1,自引:2,他引:1       下载免费PDF全文
结合MB凸起油气勘查项目,总结断层解释方法:既要依据地震时间剖面特征来分析判断,更要了解盆地范围内应力场、变形机理以及工区范围内的构造样式.针对微小断层识别困难这一问题,采取多种技术手段,包括:(1)叠后目标处理提高地震资料对小断层的分辨能力;(2)正演模型分析指导小断层的解释;(3)相干数据体水平切片和近反射道几何特征分析识别微小断层;(4)三维数据体任意线剖面检验微小断层,识别了常规地震剖面难以确定的小断层,达到了断层精细解释的目的.  相似文献   

5.
Three-dimensional coherent cube is an extremely effective new technique for interpreting seismic data. It has obvious advantages in many aspects compared with the conventional 3D data volume, such as recognizing faults and fractures, interpreting ancient channels, and edge detection of oil-gas reservoir. Coherent cube is to condense and extract information around a certain point in 3D data volume, and then highlight the original characteristics of the geologic body at this point. Therefore, in terms of its essence, coherent cube is a special seismic attribute cube and those points having rather small coherent value are related to the discontinuity of geologic body. In practical production, people often interpret horizontal slices or layer slices of coherent cube, and this provides advantageous foundations for resolving special problems in oil-gas exploration.  相似文献   

6.
于靖波  李忠 《地球物理学报》2015,58(12):4628-4635
利用界面的形状或者其不连续性是基于叠后地震数据刻画断裂的两种主要方法,根据实际地震资料的特点,两种方法各有其优劣性.对于同界面形状相关的断裂刻画方法,较常用的为地震曲率属性.受实际断裂模型的制约,在曲率属性的基础上,曲率变化率表现出对断裂更强的相关性及敏感性.本文发展了以反正切函数为准线的柱面拟合法来刻画断裂,主要包括两个步骤,分别为:一、柱面直母线的拟合;二、柱面准线拟合及曲率变化率的求取.实际地震资料计算结果表明,该方法对断裂刻画的精度高于传统方法,能够揭示更多的断裂细节,特别是对于地震剖面上不易识别的小断距断裂,亦能够清晰的刻画,同时具有较高的信噪比.  相似文献   

7.
Using seismic attributes such as coherence and curvature to characterise faults not only can improve the efficiency of seismic interpretation but also can expand the capability to detect faults. The coherence and curvature have been widely applied to characterising faults for years. These two methods detect faults based on the similarity of seismic waveforms and shapes of the reflectors, respectively, and they are complementary to each other and both have advantages and disadvantages in fault characterisation. A recent development in fault characterisation based on reflector shapes has been the use of the rate of change of curvature. Through an application to the seismic data from Western Tazhong of the Tarim Basin, China, it was demonstrated that the rate of change of curvature is more capable of detecting subtle faults having quite small throws and heaves. However, there often exist multiple extreme values indicating the same fault when applying the rate of change of curvature, which significantly degrades the signal‐to‐noise ratio of the computation result for multiple extrema interfering with each other. To resolve this problem, we propose the use of a linear combination of arctangent and proportional functions as the directrix of a cylindrical surface to fit the fault model and calculate its third derivative, which can then be used to characterise the fault. Through an application to the 3D seismic data from Western Tazhong of the Tarim Basin, the results show that the proposed method not only retains the same capability to detect subtle faults having small throws as the curvature change rate but also greatly improves the signal‐to‐noise ratio of the calculated result.  相似文献   

8.
Common prestack fracture prediction methods cannot clearly distinguish multiplescale fractures. In this study, we propose a prediction method for macro- and mesoscale fractures based on fracture density distribution in reservoirs. First, we detect the macroscale fractures (larger than 1/4 wavelength) using the multidirectional coherence technique that is based on the curvelet transform and the mesoscale fractures (1/4–1/100 wavelength) using the seismic azimuthal anisotropy technique and prestack attenuation attributes, e.g., frequency attenuation gradient. Then, we combine the obtained fracture density distributions into a map and evaluate the variably scaled fractures. Application of the method to a seismic physical model of a fractured reservoir shows that the method overcomes the problem of discontinuous fracture density distribution generated by the prestack seismic azimuthal anisotropy method, distinguishes the fracture scales, and identifies the fractured zones accurately.  相似文献   

9.
高分辨率相干体分析技术及其应用   总被引:13,自引:8,他引:5       下载免费PDF全文
应用相干分析技术可研究复杂地质构造、断裂发育区、预测裂缝发育带,但传统的相干分析技术有许多局限性.本文给出了一种基于本征值结构的高分辨率相干体分析技术基本原理和关键参数选择方法,通过基于本征值结构的高分辨率相干体属性计算,可获得许多有关断层、微裂缝、岩性扣岩相变化等储层重要特征参数,能够更加清晰地描述地质体产状的细微变化,从而为地质学家研究构造的变形及岩性变化等提供强有力的技术手段.传统的相干分析技术与高分辨率相干体分析技术在准噶尔盆地西北缘车排子地区实际地震资料的处理结果对比表明,高分辨率相干体分析技术用于检测断层、裂缝等,效果显著.  相似文献   

10.
塔里木盆地SHB地区的深部碳酸盐岩缝洞型储层主要发育于断裂破碎带,大多表现为断裂破碎形成的裂缝和后期溶蚀形成相互连通的断溶体.因此,断层的识别与精细评价成为该区缝洞型储层识别评价的基础.考虑到研究区处于沙漠腹部,深部地层的地震反射能量相对较弱,用单一地震属性难以实现断裂带的识别.本文针对研究区地震资料的地质-地球物理特...  相似文献   

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