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Those design variables define stacking sequences of structures have discrete fiber orientations 0°, ±45°, 90° and a finite number of key points that are required in the evaluation of the curve Γ characterizing an external boundary of the structure or a structural shape understood in the sense of a structural geometry representing a shell/plate mid-surface or thickness distribution of structures.
For linear elasticity problems, it needs only a mesh on the boundary of the structure.
In practice, a continuum structure is usually designed to carry the traction applied to the boundary of the structure subject to prescribed displacements imposed on its boundary.
The boundary element method needs much fewer data related only to the considered boundary of the structure, so it is very suitable for shape optimization in comparison with the finite element method.
In a number of computational fluid dynamics based wind engineering applications the possibility to move the boundary of the structure without having to re-mesh the computational domain represents a significant computational advantage.
In this technique, potential solutions which satisfy the appropriate boundary conditions are matched across the boundary of the structure.
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A rapid change of temperature, represented by a time-periodic series of high-gradient temperature pulses, is applied at the boundary of the structured solid.
The results are then used in the linear aeroelastic stability equations and analyzed with the Galerkin's procedure to determine the supersonic flutter boundaries of the structure.
In a supersonic airflow, a smart skin antenna model is analyzed to investigate the thermo-mechanical characteristics and stability boundaries of the structure.
As a result, design-dependent loads associated with the material layout of a structure are made change indirectly by the boundary variation of the structure.
Thanks to this energy flow approach, the system is also independent from the boundary conditions of the structure.
More suggestions(19)
scope of the structure
distinction of the structure
line of the structure
limit of the structure
perimeter of the structure
limits of the structure
limitations of the structure
borders of the structure
boundary of the structured
boundary of the day
boundary of the cross
boundary of the mind
boundary of the session
boundary of the state
boundary of the heliosphere
boundary of the system
boundary of the county
boundary of the morning
boundary of the electrojet
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com