Effect of the azimuthal fluid channel in a cased borehole on multipole dispersions

K. Kayama, H. Mikada, J. Takekawa, S. Xu
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Abstract

Summary Fluid channels generated in the annulus of incompletely cemented cased holes are problematic in developing oil, gas, or geothermal resources. The dispersion curves of borehole modes in sonic logging bring additional information on the cement bonding conditions to cement bond logs. Our research investigated the effects of the different central arc angles of a fluid channel in the annulus of a cased borehole on the dispersion curves using numerical experiments. Synthetic 3D numerical models are used to simulate wave propagation. We used a modified matrix pencil algorithm to estimate the dispersion curves both in fast and slow formations. Our results indicated that S-wave velocity measurement by flexural dispersion is stable in all cases in fast formation while only possible in the widest arc angle case in slow formation. The monopole can be utilized to detect large fluid channels. Symmetric flexural in monopole response are useful regardless of the source orientation using monopole source. We notice that the slowness of symmetric flexural is sensitive to the small angle of the fluid channel but not for the large angle case. Moreover, symmetric flexural gives a valuable response to determine fluid layer thickness that is not depending on the fluid position.
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套管井中方位流体通道对多极色散的影响
在未完全胶结的套管井环空中产生的流体通道在开发石油、天然气或地热资源时是个问题。声波测井中井眼模式的频散曲线为水泥胶结测井提供了有关水泥胶结条件的附加信息。本文通过数值实验研究了套管井环空流体通道不同圆心角对频散曲线的影响。采用合成三维数值模型模拟波的传播。我们使用改进的矩阵铅笔算法来估计快速和慢速地层的色散曲线。结果表明,在快速地层中,弯曲色散法测量横波速度是稳定的,而在缓慢地层中,只有在最宽弧角的情况下才可行。单极子可以用来探测大的流体通道。单极子源的对称弯曲响应与源的方向无关。我们注意到对称弯曲的慢度对流体通道的小角度敏感,而对大角度情况不敏感。此外,对称弯曲为确定不依赖于流体位置的流体层厚度提供了有价值的响应。
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