Structural collapse of a wind turbine blade. Part A: Static test and equivalent single layered models

Author:

Overgaard L.C.T.,Lund E.,Thomsen O.T.

Publisher

Elsevier BV

Subject

Mechanics of Materials,Ceramics and Composites

Reference28 articles.

1. Berring P, Branner K, Berggreen C, Knudsen HW. Torsional performance of wind turbine blades – part I: experimental investigation. In: ICCM16 – 16th international congress on composite materials, Kyoto, Japan, CD-ROM; 8–13 July, 2007. 10 p.

2. Branner K, Berring P, Berggreen C, Knudsen HW. Torsional performance of wind turbine blades – part II: numerical validation. In: ICCM16 – 16th international congress on composite materials, Kyoto, Japan, CD-ROM; 8–13 July, 2007. 10 p.

3. Structural testing and numerical simulation of a 34m composite wind turbine blade;Jensen;Compos Struct,2006

4. Thomsen CL, Jørgensen ER, Borum KK, McGugan M, Debel CP, Sørensen B, Jensen FM. V52 statisk styrke. Internal test report: Risø-i-1908(da), RisøNational Laboratory, Roskilde, Danmark; April 2003. 65 p.

5. Jensen FM. Compression strength of a fibre composite main spar in a wind turbine blade. Risø-r-1393, RisøNational Laboratory, 2003, ISBN: 87-550-3184-6; ISBN: 87-550-3185-4(Internet); ISSN: 0105-2840.

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