Redirigiendo al acceso original de articulo en 22 segundos...
ARTÍCULO
TITULO

Physical Modelling of Offshore Wind Turbine Foundations for TRL (Technology Readiness Level) Studies

Subhamoy Bhattacharya    
Domenico Lombardi    
Sadra Amani    
Muhammad Aleem    
Ganga Prakhya    
Sondipon Adhikari    
Abdullahi Aliyu    
Nicholas Alexander    
Ying Wang    
Liang Cui    
Saleh Jalbi    
Vikram Pakrashi    
Wei Li    
Jorge Mendoza and Nathan Vimalan    

Resumen

Offshore wind turbines are a complex, dynamically sensitive structure due to their irregular mass and stiffness distribution, and complexity of the loading conditions they need to withstand. There are other challenges in particular locations such as typhoons, hurricanes, earthquakes, sea-bed currents, and tsunami. Because offshore wind turbines have stringent Serviceability Limit State (SLS) requirements and need to be installed in variable and often complex ground conditions, their foundation design is challenging. Foundation design must be robust due to the enormous cost of retrofitting in a challenging environment should any problem occur during the design lifetime. Traditionally, engineers use conventional types of foundation systems, such as shallow gravity-based foundations (GBF), suction caissons, or slender piles or monopiles, based on prior experience with designing such foundations for the oil and gas industry. For offshore wind turbines, however, new types of foundations are being considered for which neither prior experience nor guidelines exist. One of the major challenges is to develop a method to de-risk the life cycle of offshore wind turbines in diverse metocean and geological conditions. The paper, therefore, has the following aims: (a) provide an overview of the complexities and the common SLS performance requirements for offshore wind turbine; (b) discuss the use of physical modelling for verification and validation of innovative design concepts, taking into account all possible angles to de-risk the project; and (c) provide examples of applications in scaled model tests.

 Artículos similares

       
 
Alireza Kakoee, Jacek Hunicz and Maciej Mikulski    
This paper presents a comprehensive investigation into the design of a methane oxidation catalyst aftertreatment system specifically tailored for the Wärtsilä W31DF natural gas engine which has been converted to a reactivity-controlled compression igniti... ver más

 
Cagri Alperen Inan, Ammar Maoui, Yann Lucas and Joëlle Duplay    
Water resource management scenarios have become more crucial for arid to semi-arid regions. Their application prerequisites rigorous hydrological modelling approaches since data are usually exposed to uncertainties and inaccuracies. In this work, Soil Wa... ver más
Revista: Water

 
Nils Reeh, Gerd Manthei and Peter J. Klar    
To depict the pump power characteristics of radial centrifugal pumps, a physical model was developed. The model relies on established empirical equations. To parameterize the model for specific pumps, physically interpretable tuning factors were integrat... ver más

 
Carlos Pérez-Collazo, Deborah M. Greaves and Gregorio Iglesias    
During the last decade jacket-frames have emerged as the main kind of substructure for bottom-mounted offshore wind farms in intermediate water depths. With the offshore wind industry moving towards deeper waters, the predominance of jacket-frames is exp... ver más

 
Chrisoula Alexandraki, Michael Starakis, Panagiotis Zervas and Rolf Bader    
Percussionists use a multitude of objects and materials, mounted on their instruments, to achieve a satisfying sound texture. This is a tedious process as there are no guidelines suggesting how to manipulate a percussion instrument to adjust its perceptu... ver más
Revista: Acoustics