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Design of a model pipeline for testing of piezoelectric micro power generator for the Trans-Alaska Pipeline System

机译:跨阿拉斯加管道系统压电微型发电机模型管道设计

摘要

In order to provide a reliable corrosion detection system for the Trans-Alaska Pipeline System (TAPS), a distributed wireless self-powered sensor array is needed to monitor the entire length of the pipeline at all times. Such a sensor faces two primary challenges: a method to provide power for the sensor, and a method to detect corrosion. This project has two goals: to build a model of the TAPS as a test bed for a piezoelectric micro power generator (PMPG), and to use the model to explore corrosion detection methods (perhaps by analyzing changes in the vibration spectrum), for use in the sensor array. To miniaturize the TAPS while maintaining its vibration spectrum, we will specify the dimensions of the model to have the same natural frequency, turbulent flow, and vortex induced vibrations as the actual pipeline. The model will serve as a test bed for various PMPG designs, and also serve as a starting point for exploring methods to detect corrosion in pipes. The primary vibration mode was found to be due to the natural frequency of the pipe, which was 20.2 Hz for the TAPS. Experimentally, we found the frequency to be in a range from 12-19 Hz. PMPG devices for use in the TAPS should be tuned to this frequency range.
机译:为了为跨阿拉斯加管道系统(TAPS)提供可靠的腐蚀检测系统,需要一个分布式无线自供电传感器阵列来始终监控管道的整个长度。这样的传感器面临两个主要挑战:为传感器供电的方法和检测腐蚀的方法。该项目有两个目标:建立TAPS模型作为压电微型发电机(PMPG)的测试平台,并使用该模型探索腐蚀检测方法(可能通过分析振动谱的变化)以供使用在传感器阵列中。为了在保持振动谱的同时最小化TAPS,我们将模型的尺寸指定为具有与实际管道相同的固有频率,湍流和涡流诱发的振动。该模型将用作各种PMPG设计的试验台,并且还将作为探索检测管道腐蚀的方法的起点。发现主要的振动模式归因于管道的固有频率,对于TAPS,固有频率为20.2 Hz。通过实验,我们发现该频率在12-19 Hz的范围内。用于TAPS的PMPG设备应调至该频率范围。

著录项

  • 作者

    Lah Mike M. (Mike Myoung);

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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