Shape optimisation in the design of thin-walled shells as components of aerospace structures

Author:

Suarez Espinoza P. A.,Bletzinger K-U.,Hörnlein H. R. E. M.,Daoud F.,Schuhmacher G.,Klug M.

Abstract

Abstract One of the most resent efforts in aircraft design is the replacement of aluminium structures by carbon fibre reinforced polymer composites. Due to lower material and manufacturing costs, doubly curved shapes covering big areas are preferred over simpler surfaces which integrate stiffening profiles. In this context, CAD parameterisation of surfaces allows design solutions by means of classical shape optimisation. Related geometrical parameters are manipulated towards optimal design, generating innovative geometries and detailing. The presented structure is optimised by reducing the overall weight. The final optimum is guided using stability and strength restrictions in order to assure the safety of the component. Geometrical considerations are also included due to operational reasons. A hierarchical design procedure is developed which results in a work flow from preliminary ‘parameter-free’ form finding motivated by solving the minimal surface problem. The geometrical model for optimisation is recovered by generating B-Spline surface patches to preserve continuity requirements over large regions. The number of geometrical coefficients are defined by the accuracy in surface generation and the required freedom in surface control. The hierarchical approach reduces the possibilities of ending with an unsatisfactory optimum when several local minima characterise the non-linear problem, as it is usually the case in shape optimal design. A geometrical non-linear analysis is used to verify the performance of the optimum.

Publisher

Cambridge University Press (CUP)

Subject

Aerospace Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Full-Scale Isogeometric Topology Optimization of Porous Thin-Shell Structures;Computational and Experimental Simulations in Engineering;2023-12-05

2. A semi-analytical method for free vibration of semi-closed shells of revolution with variable curvature;Journal of Vibration and Control;2022-05-13

3. Comparison and combination of experience-based parametrization with Vertex Morphing in aerodynamic shape optimization of a forward-swept wing aircraft;17th AIAA/ISSMO Multidisciplinary Analysis and Optimization Conference;2016-06-10

4. Towards shape optimization of steady-state fluid-structure interaction problems using vertex morphing;16th AIAA/ISSMO Multidisciplinary Analysis and Optimization Conference;2015-06-18

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