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Simulation of borehole electromagnetic measurements in dipping and anisotropic rock formations and inversion of array induction data.

机译:模拟倾角和各向异性岩层中的井眼电磁测量结果,以及阵列感应数据的反演。

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摘要

Borehole electromagnetic (EM) measurements play a crucial role in petroleum exploration. This dissertation develops advanced algorithms for the numerical simulation of borehole EM measurements acquired in dipping and anisotropic rock formations. The first technique is a full-wave modeling technique: the BiCGSTAB(L)-FFT (Bi-Conjugate Gradient STABilized(L)-Fast Fourier Transform). This technique is efficient both in terms of computational speed [∼O(N log2 N)] and computer memory storage [∼O(N)], where N is the number of spatial discretization cells. The second technique, referred to as a "Smooth Approximation (SA)," substantially increases the accuracy of the simulated EM fields in electrically anisotropic media compared to the Born approximation and the Extended Born Approximation (EBA). The third technique, referred to as a "High-order Generalized Extended Born Approximation (Ho-GEBA)," is developed for further improvement of the efficiency and accuracy of EM simulation in electrically anisotropic media. These techniques have been used to simulate tri-axial borehole induction measurements acquired in dipping and anisotropic rock formations.; Efficient algorithms are also developed for EM modeling in axisymmetric media. The three full-wave numerical simulation techniques investigated in this dissertation include the BiCGSTAB(L)-FFT algorithm, the BiCGSTAB(L)-FFHT (Fast Fourier Hankel Transform) technique, and the finite-difference method. In addition, two approximation techniques are developed to approach the same problem: a Preconditioned Extended Born Approximation (PEBA), and the Ho-GEBA, which includes the PEBA as its first-order term in a series expansion. These approximations are not only computationally efficient, but easily lend themselves to developing efficient inversion algorithms.; In addition to forward modeling, inversion algorithms are developed to estimate spatial distributions of electrical resistivity from array induction measurements. This dissertation develops two types of inversion algorithms: Resistivity Imaging (RIM) and Resistivity Inversion (RIN). An inner-loop and outer-loop optimization technique is developed and used in the RIM. In both strategies, the Jacobian (or sensitivity) matrix is computed via the PEBA, which simulates the measurements and computes the Jacobian matrix simultaneously with only one forward simulation. The RIM assumes a continuous conductivity distribution, while the RIN assumes a discrete (blocky) conductivity distribution. Inversion exercises indicate that the RIN is superior to the RIM for the quantitative evaluation of in-situ hydrocarbon saturation.
机译:钻孔电磁(EM)测量在石油勘探中起着至关重要的作用。本论文开发了用于在倾斜和各向异性岩层中获取的井眼电磁测量数值模拟的先进算法。第一项技术是全波建模技术:BiCGSTAB(L)-FFT(双共轭梯度稳定(L)-快速傅立叶变换)。该技术在计算速度[〜O(N log2 N)]和计算机内存存储[〜O(N)]方面都是有效的,其中N是空间离散化单元的数量。与Born逼近和扩展Born逼近(EBA)相比,第二种技术被称为“平滑逼近(SA)”,它大大提高了电各向异性介质中模拟EM场的精度。为了进一步提高电各向异性介质中电磁模拟的效率和精度,开发了第三种技术,称为“高阶广义扩展玻恩近似(Ho-GEBA)”。这些技术已被用来模拟在倾角和各向异性岩层中获得的三轴钻孔感应测量。还为轴对称介质中的EM建模开发了有效的算法。本文研究的三种全波数值模拟技术包括BiCGSTAB(L)-FFT算法,BiCGSTAB(L)-FFHT(快速傅立叶汉克尔变换)技术和有限差分法。此外,还开发了两种逼近技术来解决相同的问题:预条件扩展的Born逼近(PEBA)和Ho-GEBA,其中在系列扩展中将PEBA作为其一阶项。这些近似值不仅计算效率高,而且易于开发高效的反演算法。除正向建模外,还开发了反演算法,以根据阵列感应测量结果估算电阻率的空间分布。本文提出了两种反演算法:电阻率成像(RIM)和电阻率反演(RIN)。内环和外环优化技术已开发并在RIM中使用。在这两种策略中,雅可比矩阵(或灵敏度矩阵)都是通过PEBA计算的,而PEBA可以模拟测量结果,并且仅通过一次正向仿真即可同时计算雅可比矩阵。 RIM假定连续的电导率分布,而RIN假定离散的(块状)电导率分布。反演演算表明,在定量评价原位烃饱和度方面,RIN优于RIM。

著录项

  • 作者

    Gao, Guozhong.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 388 p.
  • 总页数 388
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

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