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Sensitivity analysis of circumferential transducer array with T(0,1) mode of pipes

机译:管道T(0,1)模式的周向换能器阵列的灵敏度分析

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Guided wave testing is a reliable and safe method for pipeline inspection. In general, guided wave testing employs a circumferential array of piezoelectric transducers to clamp on the pipe circumference. The sensitivity of the operation depends on many factors, including transducer distribution across the circumferential array. This paper presents the sensitivity analysis of transducer array for the circumferential characteristics of guided waves in a pipe using finite element modelling and experimental studies. Various cases are investigated for the outputs of guided waves in the numerical simulations, including the number of transducers per array, transducer excitation variability and variations in transducer spacing. The effect of the dimensions of simulated notches in the pipe is also investigated for different arrangements of the transducer array. The results from the finite element numerical simulations are then compared with the related experimental results. Results show that the numerical outputs agree well with the experimental data, and the guided wave mode T(0,1) presents high sensitivity to the notch size in the circumferential direction, but low sensitivity to the notch size in the axial direction. Keywords: guided wave; piezoelectric transducer array; finite element modelling; wave propagation; pipeline; structural
机译:导波测试是一种可靠且安全的管道检查方法。通常,导波测试采用压电换能器的圆周阵列来夹在管道圆周上。操作的灵敏度取决于许多因素,包括换能器在圆周阵列上的分布。本文利用有限元建模和实验研究的方法,对换能器阵列对管道中导波圆周特性的敏感性进行了分析。在数值模拟中研究了导波输出的各种情况,包括每个阵列的换能器数量,换能器激励可变性和换能器间距的变化。还针对换能器阵列的不同布置,研究了管道中模拟槽口尺寸的影响。然后将有限元数值模拟的结果与相关的实验结果进行比较。结果表明,数值输出与实验数据吻合良好,导波模式T(0,1)对周向的缺口尺寸具有较高的灵敏度,而对轴向的缺口尺寸具有较低的灵敏度。关键词:导波;压电换能器阵列有限元建模波传播管道;结构的

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