Vibration safety evaluation model and sensor network-based monitoring system for coke drums in operation

被引:4
作者
Choi, Jewoo [1 ]
Kang, Deok Shin [2 ]
Lee, Min Gyu [1 ]
Bae, Sang Geun [1 ]
Hong, Taehoon [1 ]
Lee, Dong-Eun [3 ]
Park, Hyo Seon [1 ]
机构
[1] Yonsei Univ, Dept Architectural Engn, Seoul 03722, South Korea
[2] Technol Res Ctr, HYUNDAI Engn & Construct, Seoul, South Korea
[3] Kyungpook Natl Univ, Sch Architecture Civil Engn Environm & Energy, Daegu, South Korea
基金
新加坡国家研究基金会;
关键词
Monitoring system; coke drums; vibration measurement; coke drum mode; vibration; IDENTIFICATION; CONSTRUCTION; BRIDGE; WELD;
D O I
10.1080/13467581.2022.2085719
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Repetitive and severe thermal loads and load changes affect not only the physical properties of the coke drum but also its dynamic properties, possibly leading to structural failure. In particular, the operation weight of the drum, which increases up to 10 times or more, affects the dynamic properties of the structure and may threaten safety. Therefore, a vibration safety evaluation model for coke drums in operation is proposed to provide critical feedback on damage accumulation and to evaluate the vibration stability. A monitoring system was also developed to validate the model predictions by measuring the vibration patterns and corresponding modal parameters of the coke drums in operation. The proposed technique was applied to two coke drums in operation, and the vibration safety and factors causing vibration in the target structures were analyzed. The maximum vibration pattern was observed in the target structures at a feeding ratio of 71%. It exceeded the vibration criteria of the vibration safety evaluation model by up to 406%. Moreover, the analysis determined that the rapid increase in operating weight of the coke drums due to the influx of heavy crude oil, and the down-shift in their mode frequency induced superimposition and resonance with the structural mode, causing vibration.
引用
收藏
页码:1399 / 1412
页数:14
相关论文
共 34 条
  • [1] Ahmad Aasim B., 2020, ASIAN J CIVIL ENG, V21, P437, DOI [10.1007/s42107-019-00219-w, DOI 10.1007/S42107-019-00219-W]
  • [2] Amick H, 2000, CONSTRUCTION CONGRESS VI, PROCEEDING, P758
  • [3] Applications of structural health monitoring technology in Asia
    Annamdas, Venu Gopal Madhav
    Bhalla, Suresh
    Soh, Chee Kiong
    [J]. STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2017, 16 (03): : 324 - 346
  • [4] [Anonymous], 2012, CONCR STRUCT DES COD
  • [5] [Anonymous], 1999, Structural VibrationPart 3: Effects of Vibration on Structures
  • [6] Development of a wireless sensor network system for suspension bridge health monitoring
    Chae, M. J.
    Yoo, H. S.
    Kim, J. Y.
    Cho, M. Y.
    [J]. AUTOMATION IN CONSTRUCTION, 2012, 21 : 237 - 252
  • [7] Fatigue behaviour of coke drum materials under thermal-mechanical cyclic loading
    Chen, Jie
    Xia, Zihui
    [J]. THEORETICAL AND APPLIED MECHANICS LETTERS, 2014, 4 (04)
  • [8] A fatigue life prediction method for coke drum base, weld, and HAZ materials from tensile properties
    Chen, Jie
    Xia, Zihui
    [J]. MATERIALS & DESIGN, 2014, 63 : 575 - 583
  • [9] A Finite Element Analysis of the Cyclic Plasticity Behavior of Circumferential Weld of Coke Drum under Moving Axial Temperature Gradient
    Dong, J. H.
    Guo, L. L.
    Gao, B. J.
    [J]. PRESSURE VESSEL TECHNOLOGY: PREPARING FOR THE FUTURE, 2015, 130 : 307 - 321
  • [10] Engery Information Administration, 2021, US NUMB OP REF