Field measurements of cable self-burial in a sandy marine environment
Research output: Contribution to journal › Article › peer-review
Electronic versions
Documents
- Unsworth_et_al_2023_accepted
Accepted author manuscript, 4.35 MB, PDF document
- 1-s2.0-S0378383923000339-main
Final published version, 11.6 MB, PDF document
Licence: CC BY Show licence
DOI
The world’s shallow continental shelves are currently experiencing a rapid pace of development from the growth of offshore renewable energy. The emplacement of infrastructure on the seabed can change the morphology of the bed, the nature of the flow above it and transport of sediment and so complicate the assessment of seabed stability for planning and designing offshore renewable infrastructure. To ascertain how much of an impact these natural processes have on cable stability, we present field results from two deployments in the Eastern Irish Sea at a location of current and planned offshore windfarms. Profiles of flow, turbulence and suspended sediment concentration were measured over a section of typical high voltage electricity cable. Even during spring tides upon deployment our observations show that sediment was deposited around the cable and self-burial occurred. The rate of deposition varied between surveys dependent on forcing and local bed conditions. Turbulence generated from the cable itself reduced as the embedment depth increased, but the relationship between bed shear stress and suspended sediment concentration was not consistent between surveys. We discuss several processes potentially responsible for the prevalence of deposition around the cable, and the difference in seabed mobility between the surveys.
Original language | English |
---|---|
Article number | 104309 |
Number of pages | 22 |
Journal | Coastal Engineering |
Volume | 184 |
Early online date | 19 Apr 2023 |
DOIs | |
Publication status | Published - Sept 2023 |
Research outputs (2)
- Published
Flow changes in the wake of a large sediment wave: helping to understand geological and ecological impacts of seabed infrastructure.
Research output: Contribution to conference › Abstract
- Published
Using a natural laboratory to quantify sediment mobility in the turbulent wake of instrument frames and offshore infrastructure.
Research output: Contribution to conference › Abstract
Prof. activities and awards (1)
Projects (2)
Total downloads
No data available