Materials and Metallurgical Engineering | Article | Published 2020-11-09

Underground pipelines dynamics problem solution under longitudinal seismic loading

Authors:

Diyorbek Bekmirzaev

Elbek Qosimov

Collection: Materials Science and Engineering
Keywords: some problems of oscillations of underground pipelines under seismic loading.

Abstract

In this article are considered some problems of oscillations of underground pipelines under seismic loading. The resulting system of equations is solved by the finite-difference of the second order of accuracy. The program is based on a computer algorithm implementation on oriented language Borland Delphi 7. Conducted theoretical and computational-experimental studies solve the problem of assessing the stress-strain state of underground pipelines under seismic effect the axes of the pipeline. The Stress-strain state of the underground pipeline is studied at linear and non-linear interaction with the soil. Linear and non-linear solutions are compared. Dangerous points of maximum normal stress occurrence under seismic loading in the underground pipeline are determined to take into account elastic pipe-soil system interaction. The conducted computational and experimental studies allow solving the problems of assessing the stress-strain state of pipelines under seismic loading, which is important for practical calculations.

References

  1. Rashidov T R Yuldashev T Bekmirzaev D A 2018 Seismodynamics of Underground Pipelines
  2. with Arbitrary Direction of Seismic Loading. Soil Mech. Found. Eng. 55 pp 243–248
  3. https://doi.org/10.1007/s11204-018-9533-1
  4. Rashidov T R Bekmirzaev D A 2015 Seismodynamics of Pipelines Interacting with the Soil.
  5. Soil Mech. Found. Eng. 52 pp 149–154 https://doi.org/10.1007/s11204-015-9321-0
  6. Bekmirzaev D A Rashidov T R 2015 Mathematical Simulation and Solution of the Problem of
  7. Dynamics of Underground Pipelines J. Sib. Fed. Univ. Eng. Technol. 8 pp 1046–1055
  8. https://doi.org/10.17516/1999-494X-2015-8-8-1046-1055
  9. Bekmirzaev D A Kishanov R U 2020 Assessment of the Effect of Inertia Forces in Problems of
  10. Underground Pipeline Seismodynamics Int. J. Innov. Technol. Explor. Eng. 9 pp 500–503
  11. https://doi.org/10.35940/ijitee.C8526.019320
  12. Bekmirzaev D A Mirzaev I 2020 Dynamic Processes in Underground Pipelines of Complex
  13. Orthogonal Configuration at Different Incidence Angles of Seismic Effect Int. J. Sci. Technol.
  14. Res. 9 pp 2449–2453
  15. Rashidov T R Nishonov N A 2016 Seismic Behavior of Underground Polymer Piping with
  16. Variable Interaction Coefficients Soil Mech. Found. Eng. 53 pp 196–201
  17. https://doi.org/10.1007/s11204-016-9385-5
  18. Rashidov T R An E V Geometrically nonlinear buckling stability analysis of axially loaded
  19. underground pipelines Soil Mech. Found. Eng. 54 pp 76–80 https://doi.org/10.1007/s11204-
  20. 017-9437-5
  21. O’Rourke M Liu X 1999 Response of buried pipelines subject to earthquake effects MCEER,
  22. Univ. at Buffalo
  23. Corrado V D’Acunto B Fontana N Giugni M 2012 Inertial effects on finite length pipe seismic
  24. response 2012, 1–14 https://doi.org/10.1155/2012/824578
  25. Chian S C Madabhushi S P G 2012 Effect of buried depth and diameter on uplift of
  26. underground structures in liquefied soils. Soil Dyn. Earthq. Eng. 41 pp 181–190
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