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Seismic imaging of gas hydrate reservoir heterogeneities.

机译:天然气水合物储层非均质性的地震成像。

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摘要

Natural gas hydrate, a type of inclusion compound or clathrate, are composed of gas molecules trapped within a cage of water molecules. The presence of gas hydrate has been confirmed by core samples recovered from boreholes. Interests in the distribution of natural gas hydrate stem from its potential as a future energy source, geohazard to drilling activities and their possible impact on climate change. However the current geophysical investigations of gas hydrate reservoirs are still too limited to fully resolve the location and the total amount of gas hydrate due to its complex nature of distribution. The goal of this thesis is twofold, i.e., to model (1) the heterogeneous gas hydrate reservoirs and (2) seismic wave propagation in the presence of heterogeneities in order to address the fundamental questions: where are the location and occurrence of gas hydrate and how much is stored in the sediments.;A new reservoir modeling technique based on random medium theory is developed to construct heterogeneous multi-variable models that mimic heterogeneities of hydrate-bearing sediments at the level of detail provided by borehole logging data. Using this new technique, I modeled the density, and P- and S-wave velocities in combination with a modified Biot-Gassmann theory and provided a first order estimate of the in situ volume of gas hydrate near the Mallik 5L-38 borehole. Our results suggest a range of 528 to 768x10 6 m3/km2 of natural gas trapped within hydrate, nearly an order of magnitude lower than earlier estimates which excluded effects of small-scale heterogeneities. Further, the petrophysical models are combined with a 3-D Finite Difference method to study seismic attenuation. Thus a framework is built to further tune the models of gas hydrate reservoirs with constraints from well logs other disciplinary data.;Seismic scattering studies predict that certain heterogeneity scales and velocity contrasts will generate strong scattering and wave mode conversion. Vertical Seismic Profile (VSP) techniques can be used to calibrate seismic characterization of gas hydrate expressions on surface seismograms. To further explore the potential of VSP in detecting the heterogeneities, a wave equation based approach for P- and S-wave separation is developed. Tests on synthetic data as well as applications to field data suggest alternative acquisition geometries for VSP to enable wave mode separation.
机译:天然气水合物是一种包合物或包合物,由截留在水分子笼中的气体分子组成。从钻孔中回收的岩心样品已经证实了天然气水合物的存在。对天然气水合物分布的兴趣源于其作为未来能源的潜力,对钻探活动的地质危害及其对气候变化的可能影响。然而,由于天然气水合物储集层的复杂分布,目前对天然气水合物储层的地球物理研究仍然太局限了,无法完全解析天然气水合物的位置和总量。本论文的目标是双重的,即要建模(1)非均质天然气水合物储层和(2)存在非均质性的地震波传播,以解决以下基本问题:天然气水合物的位置和发生在哪里?开发了一种基于随机介质理论的新储层建模技术,以构造非均质多变量模型,该模型在井眼测井数据提供的详细程度上模拟含水沉积物的非均质性。使用这项新技术,我结合修正的Biot-Gassmann理论对密度,P波和S波速度进行了建模,并提供了对Mallik 5L-38井眼附近天然气水合物原位体积的一阶估算。我们的结果表明,水合物中捕集的天然气范围为528至768x10 6 m3 / km2,比不包括小规模异质性影响的早期估算值低了近一个数量级。此外,将岩石物理模型与3-D有限差分法相结合以研究地震衰减。因此,建立了一个框架,以利用来自其他测井数据的测井数据的约束进一步调整天然气水合物储层的模型。地震散射研究预测,某些非均质尺度和速度对比将产生强散射和波模转换。垂直地震剖面(VSP)技术可用于校准表面地震图上天然气水合物表达的地震特征。为了进一步探索VSP在检测异质性方面的潜力,开发了一种基于波动方程的P波和S波分离方法。对合成数据的测试以及对现场数据的应用表明,VSP的可选采集几何形状可实现波模式分离。

著录项

  • 作者

    Huang, Jun-Wei.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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