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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A system for magnetostrictive transduction of guided waves in fluid-filled pipes of small diameter
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A system for magnetostrictive transduction of guided waves in fluid-filled pipes of small diameter

机译:小直径流体填充管道中的导波磁致伸缩转换系统

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This paper is concerned with the design of magnetostrictive transducers for the excitation and detection of guided waves in metal pipes of small diameter (mm) and their application to the study of wave propagation in pipes filled with water or supercritical CO2. Optimized system design is based on a simulation of the overall signal pathway which includes the electric circuit conditions at the transducers, mode excitability, and the wavenumber filtering effect of the spatial distribution of the exciting alternating magnetic field. A prototype system was built, and experimental observations on small diameter pipes indicated good agreement with expected results from simulations. The reassigned spectrogram has been used to compare expectation on the basis of guided wave dispersion curves for fluid-filled pipes with experimental data.
机译:本文涉及用于激励和检测小直径(mm)金属管道中导波的磁致伸缩换能器的设计及其在研究充满水或超临界CO2的管道中的波传播中的应用。优化的系统设计基于对整个信号路径的仿真,其中包括换能器上的电路状况,模式激励性以及励磁交变磁场的空间分布的波数滤波效果。建立了原型系统,对小直径管道的实验观察表明与模拟的预期结果吻合良好。重新分配的频谱图已用于根据流体填充管道的导波色散曲线将期望值与实验数据进行比较。

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