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Numerical simulation of an acoustic field generated by a phased arc array in a fluid-filled cased borehole

机译:装满流体的套管井中相控弧阵列产生的声场的数值模拟

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Transducers that are widely applied in cement bond evaluation tools, such as cement bond logs and variable density logs, cannot radiate acoustic energy directionally because of the characteristics of monopole sources. A phased arc array transmitter, which is a novel transducer that differs from monopole and dipole transducers, is presented in this study. To simulate the acoustic field generated by a phased arc array in a fluid-filled cased borehole with different channelings, a 3D finite-difference time-domain method is adopted. The acoustic field generated by a traditional monopole source is also simulated and compared with the field generated by the phased arc array transmitter. Numerical simulation results show that the phased arc array radiates energy directionally in a narrow angular range in the borehole, thereby compressing the acoustic energy into a narrow range in the casing pipe, the cement, and the formation. We present the analyses of first-arrival waveforms and the amplitudes of casing waves at different azimuthal angles for the two different sources. The results indicate that employing a directional source facilitates azimuthal identification and analysis of possible channeling behind the casing pipe.
机译:由于单极源的特性,在水泥粘结评估工具中广泛应用的换能器(例如水泥粘结测井和变密度测井)无法定向辐射声能。这项研究提出了一种相控弧阵列发射机,它是一种新颖的换能器,不同于单极和偶极换能器。为了模拟由相控弧阵列在不同通道的充液套管井中产生的声场,采用了3D时域有限差分法。还模拟了传统单极子源产生的声场,并将其与相控弧阵列发射机产生的场进行比较。数值模拟结果表明,相控弧阵列在井眼的狭窄角度范围内定向辐射能量,从而将声能压缩到套管,水泥和地层的狭窄范围内。我们介绍了两种不同源在不同方位角的套管波的初到波形和幅度分析。结果表明,使用定向源有助于方位识别和分析套管后面的可能通道。

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