Analysis of the impact of correct cementing strategies on the service life of subsea wellheads

Authors

  • U.V. Abdurahimov Azerbaijan State Oil and Industry University (Baku, Azerbaijan)
  • G.A. Rzayev SOCAR, Complex Drilling Works Trust (Baku, Azerbaijan)

DOI:

https://doi.org/10.52171/herald.452

Keywords:

subsea wellhead, cementing, fatigue damage, blow-out preventer (BOP), drilling riser, structural integrity

Abstract

The article analyzes the main causes of fatigue damage in subsea wellhead equipment systems during offshore drilling operations. The effects of lateral loads generated by the drilling riser, ocean waves, and vortex-induced vibrations (VIV) on the reliability of the wellhead system are investigated. It is shown that the increased size and weight of new-generation blowout preventer (BOP) assemblies significantly increase fatigue loading. The structural characteristics of rigid and non-rigid wellhead locking mechanisms are compared, and the influence of conductor and surface casing cementing strategies on fatigue life is evaluated. To reduce fatigue-related risks, optimization of cement level, application of rigid locking mechanisms, improvement of welded joint quality, and implementation of progressive fatigue analysis are proposed. The obtained results demonstrate that proper cement placement together with the use of rigid locking mechanisms significantly improves the fatigue resistance of the high-pressure wellhead housing and conductor components, thereby enhancing the safety, reliability, and service life of subsea wellhead equipment.

References

1. Lim, T. K., Tellier, E., Howells, H., - "Wellhead, Conductor and Casing Fatigue - Causes and Mitigation", Deep Offshore Technology (DOT), November 2012.

2. Gudz G.S. Temperature conditions of friction units of motor vehicles / G.S. Gudz // Kharkov, RIO, KhGADTU, 1998. – 139 p.

3. Hopper C. T. Vortex-Induced Oscillations of Long Marine Drilling Riser / C. T. Hopper // Deep Offshore Technology (DOT), Valleta, Malta, 17-19 October 1983.

4. American Petroleum Institute. Design of Risers for Floating Production Systems (FPSs) and Telsion-Leg Platforms (TLPs) / American Petroleum Institute // API Recommended Practice 2 RD, First Edition, June 1998, Reaffirmed May 2006.

5. Det Norske Veritas. Fatigue Design of Offshore Steel Structures / Det Norske Veritas // DNV Recommended Practice DNV-RP-C203, April 2010.

6. Det Norske Veritas. Well Fatigue Analysis Method, Report for JIP Structural Well Integrity / Det Norske Veritas // Report No. 2011-0063, Revision 01, 19 January 2011.

7. Tognarelli M., Yin F., Campbell M., Achanta V. Benchmarking of Shear7V4.5: Comparisons to Full-Scale Drilling Riser VIV Data and Legacy Analyses / M. Tognarelli, F. Yin, M. Campbell, V. Achanta // Offshore Mechanics and Arctic Engineering (OMAE), Paper No. OMAE2009-79442, Honolulu, Hawaii, United States, 31 May-5 June 2009

8. https://journal.ama.com.az/index.php/pub/issue/archive

Published

2026-07-02

How to Cite

Abdurahimov, U., & Rzayev, G. (2026). Analysis of the impact of correct cementing strategies on the service life of subsea wellheads. Herald of Azerbaijan Engineering Academy, 18(2), 1–7. https://doi.org/10.52171/herald.452

Similar Articles

<< < 1 2 3 4 5 6 > >> 

You may also start an advanced similarity search for this article.