In this paper and its companion, the identification of mathematical models describing the behaviour of wave energy devices (WECs) in the ocean is investigated through the use of numerical wave tank (NWT) experiments. This paper deals with the identification tests used to produce the data for the model identification. NWTs, implemented using computational fluid dynamics (CFD), are shown as an effective platform to perform the identification tests. The design of the NWT experiments, to ensure the production of information-rich data for the model identification, is discussed. A case study is presented to illustrate the design and implementation of NWT experiments for the identification of WEC models
Wave tank model testing is a commonly used method to assess the performance of Wave Energy Converter...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
While linear and nonlinear system identification is a well established field in the control system ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
The modelling approach presented in this chapter is that of system identification, where models are ...
A numerical wave tank (NWT) based on Computational Fluid Dynamics (CFD) provides a useful tool for ...
Ocean waves represent an important resource of renewable energy, which can provide a significant su...
Mathematical modelling of wave energy devices has many uses, including power production assessment, ...
Hydrodynamic models are important for the design, simulation and control of wave energy converters ...
Empirically based modeling is an essential aspect of design for a wave energy converter. Empirically...
For the research and development (R&D) of wave energy converters (WECs), numerical wave tanks (NWTs)...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
Wave tank model testing is a commonly used method to assess the performance of Wave Energy Converter...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
While linear and nonlinear system identification is a well established field in the control system ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
The modelling approach presented in this chapter is that of system identification, where models are ...
A numerical wave tank (NWT) based on Computational Fluid Dynamics (CFD) provides a useful tool for ...
Ocean waves represent an important resource of renewable energy, which can provide a significant su...
Mathematical modelling of wave energy devices has many uses, including power production assessment, ...
Hydrodynamic models are important for the design, simulation and control of wave energy converters ...
Empirically based modeling is an essential aspect of design for a wave energy converter. Empirically...
For the research and development (R&D) of wave energy converters (WECs), numerical wave tanks (NWTs)...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
Wave tank model testing is a commonly used method to assess the performance of Wave Energy Converter...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...