基于激光的非接触式地下管道的测径方法
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TH74

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安徽省高校协同创新项目(GXXT2023008)资助


Non-contact laser-based method for measuring underground pipeline diameter
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    摘要:

    针对现有地下管径测量方法中存在的测量精度以及可靠性差等的问题,提出了一种激光测距结合几何关系的测量方 法。 在管道中放入激光设备,通过对激光位置的特殊摆放,在管道内部往管径内壁 3 个方向发射激光,进行测距,经过推导得出 管径的大小与激光测量距离的公式,实现城市地下管径的测量,并提出了一种通过对齐减少测量误差的方法,在这种情况下又 做了分区实验,加强了理论推导的正确性与可行性。 制作了样机,在实验室模拟环境下与实际管道进行了实验。 实验表明,在 实验室理想环境下,测量在最佳状态时,400、600、800 mm 管径的绝对误差在±10、±9、±6 mm 之内,相对误差在 2. 5% 、1. 5% 、 0. 75% 之内,在分区实验中,测量结果仍然准确。 在实际环境中,误差相较于实验室环境下偏高,但仍能满足测量需求。 该设备 能够实现地下管径快速准确的测量,且可靠性高测量结构简单,成果可望用于地下管径的测量。

    Abstract:

    To address the issues of poor accuracy and reliability in existing underground pipe diameter measurement methods, this paper proposes a new approach that combines laser ranging with geometric relationships. A laser device is positioned inside the pipeline, and by strategically placing the laser, it emits beams in three directions towards the inner wall of the pipe. The distances are measured, and a formula is derived to calculate the pipe diameter based on the laser measurements. This method enables accurate measurement of urban underground pipelines, and a technique for reducing measurement errors through alignment is introduced. Partition experiments were conducted to verify the correctness and feasibility of the theoretical derivation. Prototypes were developed, and experiments were performed using actual pipelines in a simulated laboratory environment. Results show that, in an ideal laboratory setting, the absolute errors for pipe diameters of 400, 600, and 800 mm are within 10, 9, and 6 mm, respectively, with relative errors of 2. 5% , 1. 5% , and 0. 75% . The measurement accuracy remained high even in partition experiments. Although the error in real-world environments is slightly higher than in the lab, it still meets practical measurement requirements. The system enables fast and accurate measurement of underground pipe diameters with high reliability and a simple measurement structure, making it suitable for field applications.

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鲍晓华,王明亮,周 虎,郭 帅.基于激光的非接触式地下管道的测径方法[J].仪器仪表学报,2024,45(10):200-208

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  • 在线发布日期: 2025-01-03
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