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Investigation of borehole cross-dipole flexural dispersion crossover through numerical modeling

机译:钻孔交叉偶极弯曲扩散的数值模拟研究

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摘要

Crossover of the dispersion of flexural waves recorded in borehole cross-dipole measurements is interpreted as an indicator of stress-induced anisotropy around a circular borehole in formations that are isotropic in the absence of stresses. We have investigated different factors that influence flexural wave dispersion. Through numerical modeling, we determined that for a circular borehole surrounded by an isotropic formation that is subjected to an anisotropic stress field, the dipole flexural dispersion crossover is detectable only when the formation is very compliant. This might happen only in the shallow subsurface or in zones having high pore pressure. However, we found that dipole dispersion crossover can also result from the combined effect of formation intrinsic anisotropy and borehole elongation. We found that a small elongation on the wellbore and very weak intrinsic anisotropy can result in a resolvable crossover in flexural dispersion that might be erroneously interpreted as borehole stress-induced anisotropy. A thorough and correct interpretation of flexural dispersion crossover thus has to take into account the effects of stress-induced and intrinsic anisotropy and borehole cross-sectional geometry.
机译:井眼跨偶极子测量中记录的弯曲波频散的交叉被认为是在没有应力的情况下各向同性的地层中圆形井眼周围应力引起的各向异性的指示。我们研究了影响弯曲波弥散的不同因素。通过数值模拟,我们确定,对于一个被各向异性应力场影响的各向同性地层包围的圆形井眼,只有当该地层非常柔顺时,才可以检测到偶极挠曲弥散交叉。这可能仅在浅地下或具有高孔隙压力的区域中发生。然而,我们发现偶极子色散交叉也可能是由于地层固有各向异性和井眼伸长的综合作用所致。我们发现,井眼上的小伸长率和非常弱的固有各向异性会导致弯曲分散中可解决的交叉现象,这可能被错误地解释为井眼应力引起的各向异性。因此,对弯曲弥散交叉的彻底和正确解释必须考虑到应力引起的固有各向异性和井眼横截面几何形状的影响。

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