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Study on acoustic source characteristics of distributed optical fiber acoustic wave monitoring buried natural gas pipeline leakage

机译:分布式光纤声波监测声学源特性研究埋藏天然气管道泄漏

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In order to study the leakage of buried natural gas pipeline caused serious environmental pollution and human casualties, the acoustic propagation characteristics of buried natural gas pipeline leakage monitored by distributed optical fiber were studied. At present, the research on the leakage of buried pipeline mainly focuses on the propagation of sound waves along the pipe wall, while the study on the propagation of sound waves in the soil is still lacking. The acoustic attenuation of acoustic wave propagation in soil by the size of leakage hole and leakage pressure is studied, and the evolution process of acoustic wave in soil is revealed. The conclusion is that the acoustic source of buried natural gas pipeline leakage belongs to broadband noise, and the acoustic energy of leakage is prominent in the low frequency band of 15kHz. The lower frequency, the higher sound pressure level. The oscillation of the sound pressure level attenuates with the increase of frequency. Fiber optic monitoring of buried natural gas pipeline leakage early warning provides theoretical support for the conclusion. The sound pressure level in low frequency band is of great significance for buried pipeline leakage monitoring.
机译:为了研究埋地天然气管道的泄漏引起严重的环境污染和人类伤亡,研究了分布式光纤监测的埋地天然气管道泄漏的声学传播特性。目前,对埋地管道泄漏的研究主要集中在管壁上的声波传播,而土壤中声波传播的研究仍然缺乏。研究了土壤中声波传播的声学衰减,研究了泄漏压力的尺寸,并揭示了土壤中声波的进化过程。结论是,埋地天然气管道泄漏的声学来源属于宽带噪声,并且在15kHz的低频带中泄漏的声能突出。较低的频率,声压级越高。声压水平的振荡随着频率的增加而衰减。埋地天然气管道泄漏的光纤监测预警为结论提供了理论支持。低频带中的声压水平对于埋地管道泄漏监测具有重要意义。

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