For the purpose of determining the optimal position in Nissum Bredning for placement of wave dragon, the wave energy flux in Nissum Bredning has been calculated. It has not been posible to retrieve satisfactory measured wavedata for Nissum Bredning, therefor the calculations are based on the SPM-method1. By this method the significant wave height, Hs, and the peak period, Tp, are calculated from the fetch, F, and wind stress factor, Ua
Wave loads may be defined as time varying forces on a body resulting from the wave induced flow fiel...
The Wave Dragon is a 4 to 11 MW offshore wave energy converter of the overtopping type. It basically...
This paper presents developments of the Wave Dragon, a large offshore wave energy converter. A proto...
The intention of this manual is to provide some formulas and techniques which can be used for genera...
The paper is the results found by Aalborg University in the calculations of the incident wave height...
The paper describes the methods used to estimate (calculated from some indirect measurements) the ov...
The Transformation of waves propagating over a steep bottom slope is of great importance regarding t...
This paper represents a comparative analyses of the occurrence of wave grouping in field storm waves...
M. Sc. graduate report in Civil EngineeringM. Sc. Graduate Report in Civil Engineerin
This report presents the model on wave run-up and run-down on the Zeebrugge breakwater under short-c...
Attention has been addressed to the effects of wave obliquity and multidirectionality on the wave lo...
The first Wave Dragon prototype power production testing started May 2003 and ended temporarily prim...
Sea waves are the most important phenomenon to be considered in the design of coastal and offshore s...
This paper represents a contribution to the standing discussion on whether model tests in waves shou...
Wave run-up is one of the main physical processes which is taken into account in the design of the c...
Wave loads may be defined as time varying forces on a body resulting from the wave induced flow fiel...
The Wave Dragon is a 4 to 11 MW offshore wave energy converter of the overtopping type. It basically...
This paper presents developments of the Wave Dragon, a large offshore wave energy converter. A proto...
The intention of this manual is to provide some formulas and techniques which can be used for genera...
The paper is the results found by Aalborg University in the calculations of the incident wave height...
The paper describes the methods used to estimate (calculated from some indirect measurements) the ov...
The Transformation of waves propagating over a steep bottom slope is of great importance regarding t...
This paper represents a comparative analyses of the occurrence of wave grouping in field storm waves...
M. Sc. graduate report in Civil EngineeringM. Sc. Graduate Report in Civil Engineerin
This report presents the model on wave run-up and run-down on the Zeebrugge breakwater under short-c...
Attention has been addressed to the effects of wave obliquity and multidirectionality on the wave lo...
The first Wave Dragon prototype power production testing started May 2003 and ended temporarily prim...
Sea waves are the most important phenomenon to be considered in the design of coastal and offshore s...
This paper represents a contribution to the standing discussion on whether model tests in waves shou...
Wave run-up is one of the main physical processes which is taken into account in the design of the c...
Wave loads may be defined as time varying forces on a body resulting from the wave induced flow fiel...
The Wave Dragon is a 4 to 11 MW offshore wave energy converter of the overtopping type. It basically...
This paper presents developments of the Wave Dragon, a large offshore wave energy converter. A proto...