Estimation of reservoir fracturing from marine VSP using local shear-wave conversion

被引:1
|
作者
MacBeth, C
Boyd, M
Rizer, W
Queen, J
机构
[1] British Geol Survey, Edinburgh Anisotropy Project, Edinburgh EH9 3LA, Midlothian, Scotland
[2] Conco UK, Aberdeen, Scotland
[3] Conoco Inc, Ponca City, OK 74601 USA
关键词
D O I
10.1046/j.1365-2478.1998.770313.x
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A marine VSP is designed to estimate the orientation and density of fracturing within a gas-producing dolomite layer in the southern North Sea. The overburden anisotropy is firstly estimated by analysing shear waves converted at or just below the sea-bed, from airgun sources at four fixed offset azimuths. Full-wave modelling helps confirm that the background has no more than 3% vertical birefringence, originating from TM anisotropy with a symmetry axis orientated perpendicular to the maximum horizontal compressive stress of NW-SE. This finding concurs with current hypotheses regarding the background rock matrix in the upper crust. More detailed anisotropy estimates reveal two thin zones with possible polarization reversals and a stronger anisotropy. The seismic anisotropy of the dolomite is then determined from the behaviour of locally converted shear waves, providing a direct link with the physical properties of its fractures. It is possible to utilize this phenomenon due to the large seismic velocity contrast between the dolomite and the surrounding evaporites. Two walkaway VSPs at different azimuths, recorded on three-component receivers placed inside the target zone, provide the appropriate acquisition design to monitor this behaviour. Anisotropy in the dolomite generates a transverse component energy which scales in proportion to the degree of anisotropy. The relative amplitudes, for this component, between the different walkaway azimuths relate principally to the orientation of the anisotropy. Full-wave modelling confirms that a 50% vertical birefringence from TM anisotropy with a similar orientation to the overburden is required to simulate the field observations. This amount of anisotropy is not entirely unexpected for a fine-grained brittle dolomite with a potentially high fracture intensity, particularly if the fractures contain fluid which renders them compliant to the shear-wave motion.
引用
收藏
页码:29 / 50
页数:22
相关论文
共 50 条
  • [21] COMPRESSIONAL TO SHEAR-WAVE CONVERSION IN OCEANIC-CRUST
    WHITE, RS
    STEPHEN, RA
    GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1980, 63 (02): : 547 - 565
  • [22] DIRECT ESTIMATION OF SHEAR-WAVE INTERVAL VELOCITIES FROM SEISMIC DATA
    CARRION, PM
    HASSANZADEH, S
    GEOPHYSICS, 1985, 50 (04) : 530 - 538
  • [23] The shear-wave splitting study of Sichuan Zipingpu reservoir region
    Zhang Yong-Jiu
    Gao Yuan
    Shi Yu-Tao
    Tai Ling-Xue
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2010, 53 (09): : 2091 - 2101
  • [24] SHEAR-WAVE PROCESSING OF SONIC LOG WAVEFORMS IN A LIMESTONE RESERVOIR
    GOLDBERG, D
    GANT, WT
    GEOPHYSICS, 1988, 53 (05) : 668 - 676
  • [25] INTERPRETING DATA MATRIX ASYMMETRY IN NEAR-OFFSET, SHEAR-WAVE VSP DATA
    MACBETH, C
    ZENG, XW
    YARDLEY, GS
    CRAMPIN, S
    GEOPHYSICS, 1994, 59 (02) : 176 - 191
  • [26] Estimation of the Depth of Anisotropy Using Spatial Coherency of Shear-Wave Splitting Parameters
    Liu, Kelly H.
    Gao, Stephen S.
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2011, 101 (05) : 2153 - 2161
  • [27] Improved Estimation of Shear-Wave Velocity by Ordered Weighted Averaging of Rock Physics Models in a Carbonate Reservoir
    Seifi, Hamid
    Tokhmechi, Behzad
    Moradzadeh, Ali
    NATURAL RESOURCES RESEARCH, 2020, 29 (04) : 2599 - 2617
  • [28] Improved Estimation of Shear-Wave Velocity by Ordered Weighted Averaging of Rock Physics Models in a Carbonate Reservoir
    Hamid Seifi
    Behzad Tokhmechi
    Ali Moradzadeh
    Natural Resources Research, 2020, 29 : 2599 - 2617
  • [29] The Geysers geothermal field: results from shear-wave splitting analysis in a fractured reservoir
    Elkibbi, M
    Rial, JA
    GEOPHYSICAL JOURNAL INTERNATIONAL, 2005, 162 (03) : 1024 - 1035
  • [30] Shear-wave velocity estimation based on rock physics modelling of a limestone gas reservoir in the Pannonian Basin
    Vukadin, Domagoj
    PETROLEUM GEOSCIENCE, 2023, 29 (02)