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Investigation of guided wave propagation in pipes fully- and partially-embedded in concrete

机译:全部和部分嵌入混凝土管道中导波传播的研究

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摘要

The application of long-range guided-wave testing to pipes embedded in concrete results in unpredictable test-ranges. The influence of the circumferential extent of the embedding-concrete around a steel pipe on the guided wave propagation is investigated. An analytical model is used to study the axisymmetric fully embedded pipe case, while explicit finite-element and semi-analytical finite-element simulations are utilised to investigate a partially embedded pipe. Model predictions and simulations are compared with full-scale guided-wave tests. The transmission-loss of the T(0,1)-mode in an 8 in. steel pipe fully embedded over an axial length of 0.4???m is found to be in the range of 32???36???dB while it reduces by a factor of 5 when only 50% of the circumference is embedded. The transmission-loss in a fully embedded pipe is mainly due to attenuation in the embedded section while in a partially embedded pipe it depend strongly on the extent of mode-conversion at entry to the embedded-section; low loss modes with energy concentrated in the region of the circumference not-covered with concrete have been identified. The results show that in a fully embedded pipe, inspection beyond a short distance will not be possible, whereas when the concrete is debonded over a fraction of the pipe circumference, inspection of substantially longer lengths may be possible.
机译:将远程导波测试应用于埋在混凝土中的管道会导致无法预测的测试范围。研究了钢管周围包埋混凝土周长对导波传播的影响。分析模型用于研究轴对称全埋管情况,而显式有限元和半解析有限元模拟则用于研究部分埋管。将模型预测和仿真与全尺寸导波测试进行比较。完全嵌入轴向长度为0.4?m的8英寸钢管中,T(0,1)模式的传输损耗在32?36?dB的范围内。而当仅嵌入50%的圆周时,它减小了5倍。全埋管中的传输损耗主要是由于埋管中的衰减,而在部分埋管中,传输损耗在很大程度上取决于进入埋管时的模式转换程度。已经确定了能量集中在混凝土未覆盖的圆周区域的低损耗模式。结果表明,在完全嵌入的管道中,不可能进行短距离的检查,而当混凝土在管道圆周的一部分上脱粘时,可以进行更长的检查。

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    Leinov E; Lowe MJS; Cawley P;

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  • 年度 2016
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