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Numerical simulation of azimuthal acoustic logging in a borehole penetrating a rock formation boundary

机译:穿透岩层边界的井眼方位声波测井的数值模拟

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We have developed a new 3D acoustic logging tool (3DAC). To examine the azimuthal resolution of 3DAC, we have evaluated a 3D finite-difference time-domain model to simulate a case in which the borehole penetrated a rock formation boundary when the tool worked at the azimuthal-transmitting-azimuthal-receiving mode. The results indicated that there were two types of P-waves with different slowness in waveforms: the P-wave of the harder rock (P1) and the P-wave of the softer rock (P2). The P1-wave can be observed in each azimuthal receiver, but the P2-wave appears only in the azimuthal receivers toward the softer rock. When these two types of rock are both fast formations, two types of S-waves also exist, and they have better azimuthal sensitivity compared with P-waves. The S-wave of the harder rock (S1) appears only in receivers toward the harder rock, and the S-wave of the softer rock (S2) appears only in receivers toward the softer rock. A model was simulated in which the boundary between shale and sand penetrated the borehole but not the borehole axis. The P-wave of shale and the S-wave of sand are azimuthally sensitive to the azimuth angle variation of two formations. In addition, waveforms obtained from 3DAC working at the monopole-transmitting-azimuthal-receiving mode indicate that the corresponding P-waves and S-waves are azimuthally sensitive, too. Finally, we have developed a field example of 3DAC to support our simulation results: The azimuthal variation of the P-wave slowness was observed and can thus be used to reflect the azimuthal heterogeneity of formations.
机译:我们已经开发了一种新的3D声波测井工具(3DAC)。为了检查3DAC的方位角分辨率,我们评估了3D时域有限差分模型,以模拟当该工具在方位角传递方位角接收模式下工作时井眼穿透岩层边界的情况。结果表明,有两种类型的P波在波形上具有不同的慢度:较硬岩石的P波(P1)和较软岩石的P波(P2)。可以在每个方位角接收器中观察到P1波,但是P2波仅出现在朝向较软岩石的方位角接收器中。当这两种岩石都是快速地层时,也存在两种S波,并且与P波相比它们具有更好的方位敏感性。较硬岩石(S1)的S波仅出现在朝向较硬岩石的接收器中,较软岩石(S2)的S波仅出现在朝向较软岩石的接收器中。模拟了一个模型,其中页岩​​和沙子之间的边界穿透了钻孔,但没有穿透钻孔轴。页岩的P波和砂子的S波对两个地层的方位角变化都敏感。此外,从以单极传输方位角接收模式工作的3DAC获得的波形表明,相应的P波和S波也对方位角敏感。最后,我们开发了一个3DAC的现场实例来支持我们的模拟结果:观察到了P波慢度的方位角变化,因此可以用来反映地层的方位角非均质性。

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