| 注册
首页|期刊导航|电子器件|基于立体视觉测量系统的锅炉管道剩余寿命预测

基于立体视觉测量系统的锅炉管道剩余寿命预测

袁电洪 房新 渠立秋 简彦辰 高犇 戴明露

电子器件2024,Vol.47Issue(4):1121-1127,7.
电子器件2024,Vol.47Issue(4):1121-1127,7.DOI:10.3969/j.issn.1005-9490.2024.04.038

基于立体视觉测量系统的锅炉管道剩余寿命预测

Remaining Life Prediction of Boiler Pipes Based on Stereoscopic Vision Measurement System

袁电洪 1房新 1渠立秋 1简彦辰 2高犇 2戴明露2

作者信息

  • 1. 国家能源集团宿迁发电有限公司,江苏 宿迁 223803
  • 2. 东南大学能源与环境学院,江苏 南京 210096
  • 折叠

摘要

Abstract

Boiler pipes operate under high temperature and pressure for extended periods.Due to the effects of creep,they can fail even when stresses are below the yield limit.Under deep load cycling,the creep effects in power plant main steam and reheat pipes are more pronounced.However,due to the complexity of the piping system and harsh working conditions,effective monitoring is challenging.Lar-son-Miller parameter method is utilized to research the creep life of main steam and cold reheat pipes in power plants.By using CAE-SAR Ⅱ,the displacement and stress states of the piping system under different conditions are analyzed.A real-time displacement and stress online model for the entire piping system is established by using CNN-LSTM and validated with a stereoscopic vision measurement system.The results show that the proposed CNN-LSTM network can accurately reconstruct the displacement and stress values of the pip-ing system,with reconstruction errors controlled within±3% .Based on the creep distribution results,it's observed that the bent parts of the pipes are prone to stress concentration,and the main steam pipes exhibit more stress concentration than the cold reheat pipes.Pre-dictions on creep life reveal that some nodes in the piping system have a faster decline in creep life than others.These particular nodes should be a focus for monitoring during maintenance.

关键词

锅炉管道/立体视觉/蠕变寿命/CNN-LSTM/CAESAR Ⅱ

Key words

boiler piping/stereo vision/creep life/CNN-LSTM/CAESAR Ⅱ

分类

能源科技

引用本文复制引用

袁电洪,房新,渠立秋,简彦辰,高犇,戴明露..基于立体视觉测量系统的锅炉管道剩余寿命预测[J].电子器件,2024,47(4):1121-1127,7.

电子器件

OACSTPCD

1005-9490

访问量0
|
下载量0
段落导航相关论文