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中文核心期刊

葛亮, 何建, 高艳, 肖小汀, 吴佳晔, 王甜. 利用时域叠加的声学成像法定位埋地PE管道[J]. 声学学报, 2024, 49(3): 569-576. DOI: 10.12395/0371-0025.2023128
引用本文: 葛亮, 何建, 高艳, 肖小汀, 吴佳晔, 王甜. 利用时域叠加的声学成像法定位埋地PE管道[J]. 声学学报, 2024, 49(3): 569-576. DOI: 10.12395/0371-0025.2023128
GE Liang, HE Jian, GAO Yan, XIAO Xiaoting, WU Jiaye, WANG Tian. Acoustic imaging detection using time domain stacking for buried polyethylene pipelines[J]. ACTA ACUSTICA, 2024, 49(3): 569-576. DOI: 10.12395/0371-0025.2023128
Citation: GE Liang, HE Jian, GAO Yan, XIAO Xiaoting, WU Jiaye, WANG Tian. Acoustic imaging detection using time domain stacking for buried polyethylene pipelines[J]. ACTA ACUSTICA, 2024, 49(3): 569-576. DOI: 10.12395/0371-0025.2023128

利用时域叠加的声学成像法定位埋地PE管道

Acoustic imaging detection using time domain stacking for buried polyethylene pipelines

  • 摘要: 针对现有埋地管道探测技术难以确定聚乙烯(PE)管道埋深且通常对管线走向的探测误差较大的问题, 提出了优化的时域叠加声学成像法。利用该方法对仿真信号进行直达波与表面波消除、反射波提取和成像定位处理, 验证了方法的可行性。最后, 对埋深0.4 m和1.0 m的PE管进行定位测试实验, 最大管线平面定位误差分别为0.179 m和0.240 m, 说明该方法基本满足较好埋地条件PE管道探测的需求。

     

    Abstract: The existing technologies for buried pipeline localization are difficult to determine the depth of polyethylene pipelines, and the detection error for pipeline direction is often significant. To solve this problem, an acoustic imaging method based on optimized time domain stacking is proposed. The method is used to eliminate direct wave and surface wave, extract reflected wave and perform imaging positioning processing on simulation signals, which verifies the feasibility of the method. Finally, the pipeline localization experiments are carried out on the polyethylene pipes with buried depths of 0.4 m and 1.0 m respectively. The experimental results show that the maximum pipeline positioning errors are 0.179 m and 0.240 m, respectively. This indicates that the proposed method may meet the requirements of PE pipeline detection under better buried conditions.

     

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