Experimental research of buried pipelines

被引:7
|
作者
Magura, M. [1 ]
Brodniansky, J. [1 ]
机构
[1] Slovak Univ Technol Bratislava, Fac Civil Engn, Dept Met & Timber Struct, Bratislava 81368, Slovakia
关键词
Gas-pipeline; landslide; experimental verification; finite element method;
D O I
10.1016/j.proeng.2012.07.054
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In structural engineering, is very often needed to monitor the tension in the structures by various reconstructions. Measurement of strain is used by the analysis of additional load effects on structures that were not designed. Particularly challenging is the task in the field, where the measuring system is exposed to extreme conditions that are vastly different compared to the laboratory. To achieve relevant results the right choice of sensors should be done, but also of quality of the design applications. Transit gas pipe-lines (TP) pass through different topography, in many cases the areas are endangered by landslides. Most endangered sites in Slovakia are Slanec and Kamenne Kosihy in which the stress measurements have been realized for several years. Movement of the area is monitored by inclinometer. Expected increases of stress level in lines can also be obtained from the complex theoretical finite element model of slope landslides. These models have great software and hardware requirements, therefore, difficult to use in industrial practice. Parametric study was prepared, which makes it possible to easily determine values of additional stress in different lengths and values of landslides from the graphs. Functionality of models and results of Graph methods have been validated by experimental tests in scale of 1:1. (c) 2012 Published by Elsevier Ltd. Selection and review under responsibility of University of Zilina, FCE, Slovakia.
引用
收藏
页码:50 / 55
页数:6
相关论文
共 50 条
  • [21] AC corrosion of buried pipelines
    不详
    [J]. MATERIALS PERFORMANCE, 2007, 46 (02) : 29 - 29
  • [22] MAINTAINING INTEGRITY ON BURIED PIPELINES
    HARVEY, DW
    [J]. MATERIALS PERFORMANCE, 1994, 33 (08) : 22 - 27
  • [23] VIBRATION FREQUENCIES OF BURIED PIPELINES
    Wang, Leon Ru-Liand
    [J]. 1600, (104):
  • [24] PROTECTIVE COATINGS FOR BURIED PIPELINES
    SPENCER, KA
    FOOTNER, HB
    [J]. CHEMISTRY & INDUSTRY, 1953, (19) : 448 - 455
  • [25] DYNAMICS OF BURIED PIPELINES.
    O'Leary, P.M.
    Datta, S.K.
    [J]. International journal of soil dynamics and earthquake engineering, 1985, 4 (03): : 151 - 159
  • [26] The Effect of Backfilling Stiffness on the Lateral Response of Deeply Buried Pipelines: an Experimental Study
    Kianian, Morteza
    Esmaeilzadeh, M.
    Shiri, Hodjat
    [J]. JOURNAL OF MARINE SCIENCE AND APPLICATION, 2021, 20 (01) : 21 - 33
  • [27] Experimental study on the leakage temperature field of buried CO2 pipelines
    Liu, Zhenyi
    Xiu, Zihao
    Zhao, Yao
    Li, Mingzhi
    Li, Pengliang
    Cai, Peng
    Liang, Yizhen
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2023, 30 (27) : 70288 - 70302
  • [28] The Effect of Backfilling Stiffness on the Lateral Response of Deeply Buried Pipelines: an Experimental Study
    Morteza Kianian
    M. Esmaeilzadeh
    Hodjat Shiri
    [J]. Journal of Marine Science and Application, 2021, 20 : 21 - 33
  • [29] Experimental study on the mechanical response of buried pipelines under different subsidence patterns
    Zhang, Yu
    Liang, Hao
    Lin, Liang
    Zhou, You
    Zhao, Qing-song
    [J]. ROCK AND SOIL MECHANICS, 2023, 44 (06) : 1645 - 1656
  • [30] Assessment of the Behavior of Buried Concrete Pipelines Subjected to Ground Rupture: Experimental Study
    Kim, J.
    Nadukuru, S. S.
    Pour-Ghaz, M.
    Lynch, J. P.
    Michalowski, R. L.
    Bradshaw, A. S.
    Green, R. A.
    Weiss, W. J.
    [J]. JOURNAL OF PIPELINE SYSTEMS ENGINEERING AND PRACTICE, 2012, 3 (01) : 8 - 16