This note describes the scour induced by tidal currents around piles under live-bed conditions, on the basis of physical model tests carried out at Aalborg University (DK). Fine sand was placed in a flume equipped with a reversible pump. Scour was leveled by an automatic laser profiler. Experimental time evolution of scour is satisfactorily given by a simple rule, function of the volume occupied by the pile, the test duration and the sediment mobility. Such rule allows for a quantitative description of erosion in equilibrium conditions, although with some uncertainty. The scour depth S is S/D≈1.3 (D is the pile diameter). For unidirectional currents, eroded volume V at the pile is V/D3≈13, the hole having an assymmetrical shape. For tidal currents, two cases are distinguished, when tidal period is much longer or much shorter than time scale of erosion: in the first case the hole is asymmetric and keeps “drifting with the tide” with volume V/D3≈16; in the second case the hole is symmetric and is stable, with volume V/D^3≈13.

Scour around monopile foundations for off-shore wind turbine in presence of steady and tidal currents

MARTINELLI, LUCA;
2007

Abstract

This note describes the scour induced by tidal currents around piles under live-bed conditions, on the basis of physical model tests carried out at Aalborg University (DK). Fine sand was placed in a flume equipped with a reversible pump. Scour was leveled by an automatic laser profiler. Experimental time evolution of scour is satisfactorily given by a simple rule, function of the volume occupied by the pile, the test duration and the sediment mobility. Such rule allows for a quantitative description of erosion in equilibrium conditions, although with some uncertainty. The scour depth S is S/D≈1.3 (D is the pile diameter). For unidirectional currents, eroded volume V at the pile is V/D3≈13, the hole having an assymmetrical shape. For tidal currents, two cases are distinguished, when tidal period is much longer or much shorter than time scale of erosion: in the first case the hole is asymmetric and keeps “drifting with the tide” with volume V/D3≈16; in the second case the hole is symmetric and is stable, with volume V/D^3≈13.
2007
STAMPA
Inglese
Proc. 30th Int. Conf. on Coastal Engineering, ICCE2006
3
2330
2342
13
World Scientific
Sì, ma tipo non specificato
30th Int. Conf. on Coastal Engineering, ICCE2006
3-8 Sep. 2006
San Diego CA, USA
contributo
Civil Engineering covers engineering-based resources in the subfields of structural engineering, geotechnics, earthquake engineering, ocean engineering, water resources and supply, naval engineering, marine engineering, transportation engineering, and municipal engineering. Topics covered include the planning, design, construction, and maintenance of fixed structures and ground facilities for industry, occupancy, transportation, use and control of water, and harbor facilities.
9789812706362
http://www.worldscientific.com/doi/abs/10.1142/9789812709554_0197
DANIMARCA
ITALIA
273
Margheritini, L.; Martinelli, Luca; A., Lamberti; P., Frigaard
4
none
info:eu-repo/semantics/conferenceObject
04 CONTRIBUTO IN ATTO DI CONVEGNO::04.01 - Contributo in atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/180946
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