首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Numerical simulation of radiation, reflection, and reception of elastic waves from a borehole dipole source
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Numerical simulation of radiation, reflection, and reception of elastic waves from a borehole dipole source

机译:钻孔偶极子源辐射,反射和接收弹性波的数值模拟

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A recent advance in single-well reflection imaging is the use of a dipole acoustic system in a borehole to radiate and receive elastic waves to and from a remote geologic reflector in formation. This dipole-acoustic imaging technology is evaluated by numerically simulating the radiation and reflection of the wavefield generated by the borehole dipole source and analyzing the receiving sensitivity of the dipole system to the incoming reflected waves. The analyses show that a borehole dipole source can radiate a compressional wave (P-wave) and two types of shear waves (i.e., SV- and SH-waves) into the formation. The SH-wave has wide radiation coverage and the best receiving sensitivity, and is most suitable for dipole-shear imaging. In an acoustically slow formation, the dipole-generated P-wave has strong receiving sensitivity and can also be used for reflection imaging. An important feature of dipole imaging is its sensitivity to reflector azimuth, which results from the directivity of the dipole source. By using a 4C data acquisition method to record the dipole-generated reflected signal, the reflector azimuth can be determined. The numerical simulation and theoretical analysis results are in good agreement, providing a solid foundation for the dipole acoustic imaging technology.
机译:单井反射成像的最新进展是在井眼中使用了偶极子声学系统,以向地层中的远程地质反射器辐射弹性波并从其接收弹性波。通过数值模拟钻孔偶极子源产生的波场的辐射和反射,并分析偶极子系统对入射反射波的接收灵敏度,可以评估这种偶极子声成像技术。分析表明,井孔偶极子源可以向地层辐射压缩波(P波)和两种类型的剪切波(即SV波和SH波)。 SH波具有广泛的辐射范围和最佳的接收灵敏度,最适合偶极剪切成像。在声波缓慢的地层中,偶极子产生的P波具有很强的接收灵敏度,也可以用于反射成像。偶极子成像的一个重要特征是其对反射器方位角的敏感性,这是由偶极子源的方向性引起的。通过使用4C数据采集方法来记录偶极子产生的反射信号,可以确定反射器的方位角。数值模拟与理论分析结果吻合良好,为偶极声成像技术奠定了坚实的基础。

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