UPWARDS

The concept underpinning the UPWARDS project is to develop an integrated simulation framework of high fidelity simulation codes capable of performing high fidelity wind turbine and wind energy park simulations including wind flow, fully coupled fluid structure interaction, progressive damage and noise propagation.

Date

From 01/04/18 to 30/09/22

Type

Research project

Status

Finished

More information

Understanding of the Physics of Wind Turbine and Rotor Dynamics through an Integrated Simulation Framework

Wind energy is the largest of the new renewable energies and traditional wind turbine design has reached maturity, but still improvements can be done through better understanding of the physics for the entire wind turbine system. At the same time demand for more green energy, requires new turbine designs with improved environmental characteristics, adaptable to new locations, etc.

In the UPWARDS project the goal is by the help of high performance computing (HPC) to develop a simulation framework, which will incorporate a more complete description of the wind field, turbine, the support structure, etc. and their interaction in order to better understand the physics of the entire system. The complex wind field will be calculated adding interactions from nearby turbines, waves, terrain, etc.

The simulation framework will yield more accurate prediction of the forces acting in the system and thus the energy captured by the turbine. In addition, it will better predict acoustic phenomena, and materials issues related to the turbine blades, etc. The platform will be modular and new design will be relatively simple to introduce.

An important part of the project is to evaluate the socio-economic impact and to bring user communities into the project development.

Altogether this will improve the design development process and allow for faster implementation of new and more advanced designs with less environmental impact. It will also improve the accuracy in power production.

The methodologies and major results from the project will be published in open access journals or freely accessible reports. In addition an open database containing relevant results and raw data will be established. This will enable other researchers and turbine developers to utilise the results for further studies.

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Samtech (Siemens)

European leading provider of Computer Aided Engineering software.

Guido Gezellestraat 123, 1654 Beersel, Belgique

Last updated: 13/11/2024

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