油气管道柔性测径传感器设计及其结构优化
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TH7 TE973

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国家自然科学基金(52275141)、中国石油天然气集团有限公司-中国石油大学(北京)战略合作科技专项(ZLZX2020-05)资助


Design and structural optimization of the flexible sizing sensors for oil and gas pipelines
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    摘要:

    油气管道测径技术是检测管内通径变化、保障管道安全的重要手段。 针对传统薄铝盘测径板无法检测多处缺陷且不可 重复使用等问题,本文设计了一种柔性测径传感器,其通过置于聚氨酯柔性测径盘中的电阻应变片测量遇阻时的应变变化,实 现管内缺陷量化检测。 结合 ABAQUS 软件建立应变片和聚氨酯密封盘的耦合模型,分析产生拉压变形时的应变输出特性,并 基于敏感栅应变趋势,寻找应变片最优放置位置。 通过柔性测径传感器性能检测实验台,对柔性测径传感器的功能进行测试。 最后结合 BP 神经网络与遗传算法得出使传感器检测性能最佳的结构参数。 研究结果表明,对于 DN200 的管道,当测径盘外径 为 97. 5% 的管道内径,测径盘厚度 19 mm,测径盘瓣间距 8 mm 时,柔性测径传感器能较好表征凹陷的几何尺寸,对于油气管道 变形检测作业具有一定的工程应用价值。

    Abstract:

    The oil and gas pipeline sizing technology is an important tool for detecting changes in the pipe diameter and ensuring pipeline safety. To address the problems that the traditional thin aluminum discs cannot detect multiple defects and cannot be reused, this article designs a flexible sizing sensor, which measures the strain change when the resistance is encountered through the resistive strain gauges placed in the flexible polyurethane sizing discs to achieve quantitative detection of defects in the pipe. The coupling model between the strain gauges and the polyurethane sealing disk is formulated with ABAQUS software, and the strain output characteristics are analyzed when tensile and compressive deformations are generated. The function of the flexible sizing sensor is tested by a flexible sizing sensor performance testing experiment bench. Finally, the BP neural network and the genetic algorithm are combined to derive the structural parameters that make the sensor detection performance optimal. For the DN200 pipeline, research results show that when the outside diameter of the sizing disc is 97. 5% of the inner diameter of the pipe, the thickness of the sizing disc is 19 mm, and the sizing disc flap spacing is 8 mm. The flexible sizing sensor can better characterize the size of the depression, which has certain engineering application value for oil and gas pipeline deformation detection operations.

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张 行,唐步云,刘 彤,董绍华.油气管道柔性测径传感器设计及其结构优化[J].仪器仪表学报,2022,43(12):15-25

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  • 在线发布日期: 2023-07-04
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