Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Developing a blockchain-based prototype for wind turbine fasteners
The wind energy sector is undergoing digitalization processes that span multi-tier supply chains of turbine components and wind farm maintenance, amongst others. In an industrial use case that includes Siemens Gamesa Renewable Energy, Vestas and APQP4Wind, the processes of producing, fastening, and servicing bolts in turbines are mapped to a digital model. The model follows the lifetime of turbine bolts from the manufacturing phase, to fastening in turbines and maintenance, until their replacement and recycling. The development of the digital model is iteratively addressed in a design science research approach, as the authors actively contribute to the project. Distributed ledgers (DLs) support the notary documentation of the bolts and turbines, from their registration phase to the assembly-, technical service verification- and recycling phases. The immutable and decentralized nature of DLs secures the data against tampering and prevents any changes taken unilaterally by engaging the service stakeholders and component providers in a blockchain consortium.
Developing a blockchain-based prototype for wind turbine fasteners
The wind energy sector is undergoing digitalization processes that span multi-tier supply chains of turbine components and wind farm maintenance, amongst others. In an industrial use case that includes Siemens Gamesa Renewable Energy, Vestas and APQP4Wind, the processes of producing, fastening, and servicing bolts in turbines are mapped to a digital model. The model follows the lifetime of turbine bolts from the manufacturing phase, to fastening in turbines and maintenance, until their replacement and recycling. The development of the digital model is iteratively addressed in a design science research approach, as the authors actively contribute to the project. Distributed ledgers (DLs) support the notary documentation of the bolts and turbines, from their registration phase to the assembly-, technical service verification- and recycling phases. The immutable and decentralized nature of DLs secures the data against tampering and prevents any changes taken unilaterally by engaging the service stakeholders and component providers in a blockchain consortium.
Developing a blockchain-based prototype for wind turbine fasteners
Ionita, Andrei (Autor:in) / Goduscheit, René Chester (Autor:in) / Hessellund Lauritsen, Per (Autor:in) / Prinz, Wolfgang (Autor:in) / Nedergaard Jacobsen, Kim (Autor:in) / Isbak Thomsen, Kristoffer (Autor:in) / Fraunhofer FIT Sankt Augustin
01.01.2021
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
DDC:
690
Scour around gravity-based wind turbine foundations - prototype measurements
British Library Conference Proceedings | 2010
|Developing a BIM Single Source of Truth Prototype Using Blockchain Technology
DOAJ | 2022
|Gamesa halts US offshore wind turbine prototype installation
British Library Online Contents | 2012