This paper evaluates the validity of a simple one-dimensional dynamic analysis as well as a Finite-Element model to determine the sliding of a rubble-mound breakwater crown-wall. The evaluation is based on a case example with real wave load time-series and displacements measured from two-dimensional physical model tests. The outcome is a more reliable evaluation of the applicability of simple dynamic calculations for the estimation of displacement of rubble-mound superstructures. The case example clearly demonstrates that a simplified one-dimensional sliding model provides a safe estimate of the accumulated sliding distance of crown-wall superstructures, which is in contrast to findings from previous similar studies on caisson breakwaters. ...
Wave slamming on vertical breakwaters cause a sudden, impulsive load that may cause a caisson to sli...
This paper presents some of the results from a large parametric laboratory study including more than...
This paper evaluates the formulae by Nørgaard et al. (2013) for predicting wave loads on rubble moun...
This paper evaluates the validity of a simple onedimensional dynamic analysis as well as a FEM model...
In this study loading characteristics of rubble mound breakwater crown walls are investigated. This ...
The paper deals with the analysis of the overall stability of caisson breakwaters exposed to impulsi...
Sliding and rupture failure in the rubble mound are considered in this paper. In order to describe t...
This paper collects the results of several new 2D physical model tests on wave interaction with rubb...
In the present study the stability of crown wall elements on top of a rubble mound breakwaters is in...
Este artigo pertente ao número especial Interaction between Waves and Maritime Structures.[Abstract:...
This paper puts forward a new method to determine horizontal wave loads on rubble mound breakwater c...
This thesis investigates the stability of a crown wall situated above SWL (Still Water Level) on top...
This note presents wave flume experiments, carried out at Aalborg University, measuring the horizont...
Storm damage to rubble-mound structures can range from the piece-wise removal of individual armour s...
This note presents wave flume experiments, carried out at Aalborg University, measuring the horizont...
Wave slamming on vertical breakwaters cause a sudden, impulsive load that may cause a caisson to sli...
This paper presents some of the results from a large parametric laboratory study including more than...
This paper evaluates the formulae by Nørgaard et al. (2013) for predicting wave loads on rubble moun...
This paper evaluates the validity of a simple onedimensional dynamic analysis as well as a FEM model...
In this study loading characteristics of rubble mound breakwater crown walls are investigated. This ...
The paper deals with the analysis of the overall stability of caisson breakwaters exposed to impulsi...
Sliding and rupture failure in the rubble mound are considered in this paper. In order to describe t...
This paper collects the results of several new 2D physical model tests on wave interaction with rubb...
In the present study the stability of crown wall elements on top of a rubble mound breakwaters is in...
Este artigo pertente ao número especial Interaction between Waves and Maritime Structures.[Abstract:...
This paper puts forward a new method to determine horizontal wave loads on rubble mound breakwater c...
This thesis investigates the stability of a crown wall situated above SWL (Still Water Level) on top...
This note presents wave flume experiments, carried out at Aalborg University, measuring the horizont...
Storm damage to rubble-mound structures can range from the piece-wise removal of individual armour s...
This note presents wave flume experiments, carried out at Aalborg University, measuring the horizont...
Wave slamming on vertical breakwaters cause a sudden, impulsive load that may cause a caisson to sli...
This paper presents some of the results from a large parametric laboratory study including more than...
This paper evaluates the formulae by Nørgaard et al. (2013) for predicting wave loads on rubble moun...