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Innovative precast concrete component concept with optimized joint design for especially tall wind turbines

BFT International. Bd. Vol. 83. H. 07-2018. Bauverlag 2018 S. 40 - 51

Erscheinungsjahr: 2018

ISBN/ISSN: 0373-4331

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

Inhaltszusammenfassung


Many development steps are necessary for the new development of a wind turbine tower construction concept. As part of a ZIM cooperation project funded by the Federal Ministry of Economics and Technology (BMWi), Tubularis GmbH, in cooperation with Mainz University of Applied Science and the Hachmeister Andernach GmbH concrete plant, has been able to demonstrate that their PCC Tower system is not only accompanied by practical construction advantages, but also meets the high design requiremen...Many development steps are necessary for the new development of a wind turbine tower construction concept. As part of a ZIM cooperation project funded by the Federal Ministry of Economics and Technology (BMWi), Tubularis GmbH, in cooperation with Mainz University of Applied Science and the Hachmeister Andernach GmbH concrete plant, has been able to demonstrate that their PCC Tower system is not only accompanied by practical construction advantages, but also meets the high design requirements of a wind turbine. Diverse test series by the Mainz University of Applied Science showed promising results and the detailed planning of joint design was also tested in a 1:1 model and further optimized. Tubularis GmbH and the Mainz University of Applied Science are now beginning a joint promotion project supported by the European fund for regional development (EFRE Rheinland-Pfalz) under the working title of “Optimized Modular Construction Method for Wind Turbine Systems with Precast Concrete Components.” The support program called InnoProm (Innovation und Promotion) is all about knowledge and technology transfer from universities to companies in the Rhineland-Palatinate.» weiterlesen» einklappen

  • hybrid wind towers, precast concrete elements, joints

Autoren


Loh, Lutz (Autor)
Schäfer, Philipp (Autor)
Füllmann, Robert (Autor)
Schemmann, Thilo (Autor)

Klassifikation


DFG Fachgebiet:
Bauwesen und Architektur

DDC Sachgruppe:
Ingenieurwissenschaften

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