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  4. Side structure filled with multicellular glass hollow spheres in a quasi-static collision test
 
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Side structure filled with multicellular glass hollow spheres in a quasi-static collision test

Publikationstyp
Conference Paper
Date Issued
2013
Sprache
English
Author(s)
Schöttelndreyer, Martin  
Martens, Ingo  
Fricke, Wolfgang 
Lehmann, Eike  
Institut
Konstruktion und Festigkeit von Schiffen M-10  
TORE-URI
http://hdl.handle.net/11420/6706
Start Page
101
End Page
108
Citation
Collision and grounding of ships and offshore structures : proceedings of the 6th International Conference on Collision and Grounding of Ships and Offshore Structures, ICCGS, Trondheim, Norway, 17 - 19 June 2013 / eds. Jørgen Amdahl, Sören Ehlers & Bernt J. Leira. - Boca Raton, Fla. [u.a.] : CRC Press/Balkema, 2013. - Seite 101-108
Contribution to Conference
6th International Conference on Collision and Grounding of Ships and Offshore Structures, ICCGS 2013  
Publisher
CRC Press/Balkema
The evolution of ship constructions has been developed for hundreds of years and still exists in form of a conventional architecture consisting of frames, longitudinal and transverse girders, stiffeners, stringers and plates. The present numerical methods offer engineers the possibility of weight optimisation as well as the development of highly complex structures. But even with the use of the Finite Element Method itwas not possible to achieve a novel ship structure worldwide which is significantly different from conventional architectures. In the context of two collaborative research projects, the authors are carrying out several quasi-static collision experiments with different kinds of bulbous bow and double hull side structures on the test facility of the Institute for Ship Structural Design and Analysis ofTUHH. Following up the publication at ICCGS 2010, the current state of research will be presented. This paper focuses on ship side structures which are investigated by simulations and validated by experiments. Based on a conventional ship side structure and a rigid bulbous bow, enhanced side structures regarding the collision safety will be presented and afterwards compared with a conventional side structure. The aim of this work is to improve the passive collision safety without breaching present regulations of the classification societies. Therefore one conventional side structure is filled with granulate material and it is investigated by experiments and simulations. © 2013 Taylor & Francis Group.
DDC Class
620: Ingenieurwissenschaften
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