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Modelling and optimization of sails

机译:帆的建模和优化

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摘要

The aim of this paper is to improve the quality and the performances of sails by using non-linear modelling, numerical experimentation and optimization methods. The sail is represented by a triangular structure made of composite materials (unidirectional or woven composite) well modelled by an orthotropic membrane behaviour. Under the wind pressure, the sail is submitted to large displacements and small strains. Initial pre-tension load which ensures that the surface is reasonably free of wrinkles is required. The numerical solution is carried out by means of a modified Newton-Raphson method. The mathematical problem of optimization relates to the displacement in the transverse direction of the sail. The parameter of design is the fiber orientation. The optimization method uses the Nelder-Mead algorithm, efficient to solve non-linear problems. The numerical data provided by the sail makers will ensure a comparison between the obtained results and the empirical techniques used by the sail designers.
机译:本文的目的是通过使用非线性建模,数值实验和优化方法来提高帆的质量和性能。帆由复合材料(单向或机织复合材料)制成的三角形结构代表,该结构很好地通过正交异性膜行为建模。在风压下,风帆承受大位移和小应变。需要初始的预张力载荷,以确保表面合理地没有皱纹。数值解是通过改进的牛顿-拉夫森方法进行的。优化的数学问题涉及帆横向方向上的位移。设计的参数是纤维取向。优化方法使用Nelder-Mead算法,可以有效地解决非线性问题。帆制造商提供的数值数据将确保所获得的结果与帆设计者使用的经验技术之间的比较。

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