open access publication

Article, 2022

Place smart, load hard - structural reinforcement of the trailing edge regions of a wind turbine blade strengthening the buckling resistance

Composite Structures, ISSN 0263-8223, 1879-1085, Volume 300, Page 116068, 10.1016/j.compstruct.2022.116068

Contributors

Haselbach, Philipp Ulrich 0000-0002-9970-3384 [1] Chen, Xiao 0000-0001-6726-4068 (Corresponding author) [1] Berring, Peter 0000-0002-0713-0460 [1]

Affiliations

  1. [1] Technical University of Denmark
  2. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Local buckling is one of the key driving forces of trailing edge failure in composite wind turbine blades. This study demonstrated a significant stiffness increase by adding a minor amount of foam material to the trailing edge region of a wind turbine blade. The proposed ‘place smart, load hard’ concept is based on the understanding of the local buckling in the critical trailing edge regions and to place additional foam there, where the blade is prone to buckle. The effective placing of foam inserts is numerically demonstrated for different load scenarios and its superiority compared to an experimentally validated blade model without foam inserts. The proposed strengthening method can be used for both building new blades and retrofitting old blades with local buckling issues in the trailing edge regions.

Keywords

amount, blade, blade model, buckling, buckling issues, buckling resistance, composite wind turbine blade, concept, edge failure, edge region, effective place, failure, foam, foam insert, foam materials, force, hard concepts, increase, insertion, issues, load, loading scenarios, local buckling, materials, method, model, older blades, place, region, reinforcement, resistance, scenarios, stiffness, stiffness increase, strengthening, strengthening method, structural reinforcement, study, superiority, trailing edge region, trails, turbine blades, wind, wind turbine blades

Funders

  • Danish Energy Agency
  • Innovation Fund Denmark

Data Provider: Digital Science