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Modelling in-pipe acoustic signal propagation for condition assessment of multi-layer water pipelines

机译:建模管道内声信号传播,用于多层输水管道的状态评估

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A solution to the condition assessment of fluid-filled conduits based on the analysis of in-pipe acoustic signal propagation is presented in this paper. The sensor arrangement consists of an acoustic emitter from which a known sonic pulse is generated, and a collocated hydrophone receiver that records the arrival acoustic wave at a high sampling rate. The proposed method exploits the influence of the surrounding environment on the propagation of an acoustic wave to estimate the condition of the pipeline. Specifically, the propagation speed of an acoustic wave is influenced by the hoop stiffness of the surrounding materials, a fact that has been exploited in the analysis of boreholes in the literature. In this work, this finding is extended to validate the analytical expression derived to infer the condition of uniform, axis-symmetric lined waterworks, a first step to ultimately be able to predict the remaining active life (time-to-failure) of pipelines with arbitrary geometries through finite element analysis (FEA). An investigation of the various aspects of the proposed methodology with typical pipe material and structures is presented to appreciate the advantages of modelling acoustic waves behaviours in fluid-filled cylindrical cavities for condition assessment of water pipelines.
机译:提出了一种基于管道内声信号传播分析的充液管道状态评估解决方案。传感器装置由一个声发射器和一个并置的水听器接收器组成,该声发射器从中产生一个已知的声脉冲,该并置水听器接收器以高采样率记录到达的声波。所提出的方法利用周围环境对声波传播的影响来估计管道的状况。具体而言,声波的传播速度受周围材料的环向刚度影响,这一事实已在文献中的钻孔分析中得到了利用。在这项工作中,这一发现得到了扩展,以验证所得出的分析表达式以推断出均匀的,轴对称的衬砌水厂的状况,这是最终能够预测具有以下性能的管道的剩余使用寿命(失效时间)的第一步通过有限元分析(FEA)实现任意几何形状。提出了对采用典型管道材料和结构的拟议方法各方面的研究,以了解为流体管道状态评估对充液圆柱腔中的声波行为进行建模的优势。

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