首页> 外文OA文献 >Imagerie sismique des milieux visco-acoustiques et visco-élastiques à deux dimensions par stéréotomographie et inversion des formes d'ondes: applications au champ pétrolier de Valhall
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Imagerie sismique des milieux visco-acoustiques et visco-élastiques à deux dimensions par stéréotomographie et inversion des formes d'ondes: applications au champ pétrolier de Valhall

机译:二维声波和粘弹性介质的立体成像和波形反演地震成像:在瓦尔霍尔油田的应用

摘要

Geophysics is a very insightful field to gain inferences on the internal structure of the Earth at different scales, and on the past events related to its slow evolution. It also constitutes a major issue in our society, as the resources are becoming increasingly rare, and because it is of great consideration for town and country planning. Full waveform inversion is an optimization process differs from other seismic imaging approaches by its ability to extract the full information content of the seismic data to construct a high-resolution quantitative imaging of one or more physical parameters. I discuss in my thesis several issues related to this method and I illustrate them with applications to multi-component Ocean Bottom Cable (OBC) data recorded at the Valhall oilfield in North Sea. I first discuss the footprint of anisotropy in vertical transverse isotropic media on the seismic Valhall dataset by comparing the subsurface models built by full waveform inversion when anisotropy is taken into account or not in the seismic modeling. I show some biases in the velocity reconstruction when the imaging is performed in the isotropic approximation, these biases leading to mispositioning of the reflectors at depth. %The meaning of the velocities is different in subsurface and in depth, where they are representative of horizontal and NMO velocities respectively. I then address the problem of constructing an initial velocity model for full waveform inversion from wide-aperture data. The selected approach is an extension of stereotomography, a slope tomographic method, where the traveltimes and the slopes of the reflected and refracted arrivals are sequentially introduced in the inversion process through a multiscale approach. The potential of the method is discussed based on the synthetic Valhall case study before the application to the real Valhall data-set. The final chapters are devoted to the reconstruction of several classes of parameters within the visco-acoustic and visco-elastic approximations. In order to reduce the nonlinearity of the inverse problem, I propose a methodology based on the hierarchical reconstruction of the parameter classes, and on the progressive introduction of the different data components in the inversion process. I first test different inversion strategies on the synthetic Valhall case to build the compressive velocity, the density and the attenuation parameters, before their application to the real data within the visco-acoustic approximation. I reconstruct in a second step the shear velocity from the three components of the sensor (one hydrophone and a vertical and horizontal geophones). Quality of the results is assessed with various tools, and a geological interpretation of the results is proposed.
机译:地球物理学是一个很有见地的领域,可以推断出不同尺度的地球内部结构以及与地球缓慢演化有关的过去事件。随着资源变得越来越稀缺,并且由于它是城乡规划的重要考虑因素,它也构成了我们社会的一个主要问题。全波形反演是一种优化过程,与其他地震成像方法不同,它具有提取地震数据的全部信息内容以构建一个或多个物理参数的高分辨率定量成像的能力。我在论文中讨论了与该方法有关的几个问题,并通过对北海Valhall油田记录的多分量海底电缆(OBC)数据的应用进行了说明。首先,通过比较地震建模中是否考虑各向异性的情况下通过全波形反演建立的地下模型,讨论了地震Valhall数据集上垂直横向各向同性介质中的各向异性足迹。当以各向同性近似进行成像时,我在速度重建中显示了一些偏差,这些偏差会导致反射器在深度上的位置不正确。 %速度的含义在地下和深度上是不同的,它们分别代表水平和NMO速度。然后,我要解决的问题是为从宽孔径数据进行全波形反演而构建初始速度模型。所选方法是立体断层扫描法(坡度层析成像法)的扩展,其中通过多尺度方法在反演过程中依次引入了到达时间和反射和折射到达的斜率。在将其应用于实际Valhall数据集之前,基于综合Valhall案例研究,讨论了该方法的潜力。最后几章专门介绍了粘声近似和粘弹性近似中几类参数的重构。为了减少反问题的非线性,我提出了一种基于参数类的层次重构以及在反演过程中逐步引入不同数据成分的方法。我首先在合成Valhall情况下测试不同的反演策略,以建立压缩速度,密度和衰减参数,然后再将它们应用于粘声近似中的实际数据。我在第二步中从传感器的三个分量(一个水听器以及一个垂直和水平地震检波器)重建了剪切速度。使用各种工具评估结果的质量,并提出对结果的地质解释。

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    Prieux Vincent;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 fr
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