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Ultrasonic leaky flexural waves in multilayered media: Cement bond detection for cased wellbores

机译:多层介质中的超声波泄漏弯曲波:套管井筒的水泥粘结检测

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Good cement bond quality is significant for an oil well to prevent hydraulic communication between zones and to ensure layered exploitation. Conventional sonic logging techniques are limited to the detection region immediately behind the casing, so they can hardly be used to interpret the bonding quality between cement and rock formations. To develop a cementing evaluation method for the whole annulus, ultrasonic leaky flexural modes in radially multilayered media were investigated through finite-difference modeling. The guided waves were excited and received by pitch-catch transducers arranged in the borehole. According to the numerical results, two kinds of flexural modes were sensitive to cement debonding at different interfaces, respectively. For the primary flexural waves that arrived early and propagated all along the casing, the attenuation levels decreased due to the appearance of a fluid-filled channel between the casing and the cement sheath. The acoustic signals arriving later were the secondary flexural modes contributed by reflection echoes from the formation. They will be greatly strengthened once a debonding defect appears at the cement-formation boundary, and the arrival time of secondary flexural waves can also be applied to predict the thickness of the cement sheath. Consequently, it is possible to propose an integrated evaluation for both interfaces of the cement annulus by extracting properties of the primary and secondary flexural waves.
机译:良好的水泥粘结质量对于油井而言至关重要,可防止区域之间的水力连通并确保分层开采。常规的声波测井技术仅限于套管后方的检测区域,因此很难用于解释水泥与岩层之间的粘结质量。为了建立整个环空的固井评价方法,通过有限差分建模研究了径向多层介质中的超声渗漏弯曲模式。引导波被布置在井眼中的俯仰捕捉传感器激发并接收。根据数值结果,两种弯曲模式分别对水泥在不同界面处的剥离敏感。对于较早到达并沿套管传播的一次弯曲波,由于在套管和水泥护套之间出现了充满流体的通道,衰减水平降低了。后来到达的声信号是由地层反射回波贡献的次要弯曲模式。一旦在水泥形成边界出现脱胶缺陷,它们将得到极大的增强,并且次级弯曲波的到达时间也可以用于预测水泥护套的厚度。因此,有可能通过提取一次弯曲波和二次弯曲波的特性,对水泥环的两个界面提出综合评估。

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