Haselbach, 2017 - Google Patents
An advanced structural trailing edge modelling method for wind turbine bladesHaselbach, 2017
View PDF- Document ID
- 3797195179206121620
- Author
- Haselbach P
- Publication year
- Publication venue
- Composite Structures
External Links
Snippet
This study demonstrates an advanced blade modelling approach based on a combination of shell and solid elements which can enhance the reliability of structural predictions for wind turbine blades. The advanced blade modelling approach is based on a shell element model …
- 239000007787 solid 0 abstract description 32
Classifications
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F17/00—Digital computing or data processing equipment or methods, specially adapted for specific functions
- G06F17/50—Computer-aided design
- G06F17/5009—Computer-aided design using simulation
- G06F17/5018—Computer-aided design using simulation using finite difference methods or finite element methods
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F17/00—Digital computing or data processing equipment or methods, specially adapted for specific functions
- G06F17/50—Computer-aided design
- G06F17/5086—Mechanical design, e.g. parametric or variational design
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Haselbach | An advanced structural trailing edge modelling method for wind turbine blades | |
Haselbach et al. | Initiation of trailing edge failure in full-scale wind turbine blade test | |
Bazilevs et al. | Isogeometric fatigue damage prediction in large-scale composite structures driven by dynamic sensor data | |
Egan et al. | Modelling a single-bolt countersunk composite joint using implicit and explicit finite element analysis | |
Aktay et al. | Numerical modelling of honeycomb core crush behaviour | |
Kim et al. | A modeling method for vibration analysis of cracked laminated composite beam of uniform rectangular cross-section with arbitrary boundary condition | |
Zarouchas et al. | Investigations on the mechanical behavior of a wind rotor blade subcomponent | |
Bauchau et al. | Three-dimensional beam theory for flexible multibody dynamics | |
Otero et al. | Structural analysis of wind-turbine blades by a generalized Timoshenko beam model | |
Cardenas et al. | Progressive failure analysis of thin-walled composite structures | |
Eder et al. | Effects of geometric non-linearity on energy release rates in a realistic wind turbine blade cross section | |
Valente et al. | Geometrical optimization of adhesive joints under tensile impact loads using cohesive zone modelling | |
Ullah et al. | Simulation of buckling-driven progressive damage in composite wind turbine blade under extreme wind loads | |
Yang et al. | Prediction of post-buckling and ultimate compressive strength of composite plates by semi-analytical methods | |
Kam et al. | Quasi-static buckling and first-ply failure loads of shear web reinforced glass-fabric composite wind blades | |
Kumar et al. | Finite element modeling for structural strength of quadcoptor type multi mode vehicle | |
Camarena et al. | Land-based wind turbines with flexible rail transportable blades–Part II: 3D FEM design optimization of the rotor blades | |
Amoushahi | Time depended deformation and buckling of viscoelastic thick plates by a fully discretized finite strip method using Third order shear deformation theory | |
Haselbach et al. | Place smart, load hard-structural reinforcement of the trailing edge regions of a wind turbine blade strengthening the buckling resistance | |
Salami et al. | An advanced high-order theory for bending analysis of moderately thick faced sandwich beams | |
Laustsen et al. | Development of a high‐fidelity experimental substructure test rig for grid‐scored Sandwich panels in wind turbine blades | |
Branner et al. | Anisotropic beam model for analysis and design of passive controlled wind turbine blades | |
Stacey et al. | Thermal prestress in composite compliant shell mechanisms | |
Kumar et al. | Studies on large deflection of geometrically nonlinear corrugated structures | |
Zhao et al. | Structural and aeroelastic design, analysis, and experiments of inflatable airborne wings |