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Structural Optimization of Joined-Wing Beam Model With Bend-Twist Coupling Using Equivalent Static Loads

Structural Optimization of Joined-Wing Beam Model With Bend-Twist Coupling Using Equivalent Static Loads

Paperback (19 Nov 2012)

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Publisher's Synopsis

This study is based on the merger of two separate theories to further the efficiency with which joined-wing structural models are designed. The first theory is Geometrically Exact Beam Theory (GEBT). GEBT is a small strain beam theory which is capable of accurately capturing the geometric bend-twist coupling in beam elements that are experiencing large global deformations. This is crucial to the joined-wing problem as it is geometrically nonlinear. The second theory concerns Equivalent Static Loads (ESL). These ESL consist of a load vector that produces the same nodal displacements and rotations as those computed from a pure nonlinear analysis. The ESL displacements and rotations are then used to calculate ESL stresses. By merging these two theories into a single structural optimization effort, computational cost is reduced by orders of magnitude when compared to purely nonlinear response optimization efforts. It is shown that the final design obtained by the optimization is the same for both types of analysis.

Book information

ISBN: 9781288311743
Publisher: Creative Media Partners, LLC
Imprint: Biblioscholar
Pub date:
Language: English
Number of pages: 84
Weight: 168g
Height: 246mm
Width: 189mm
Spine width: 4mm