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Series solution of beams with variable cross-section

机译:具有可变横截面的梁系列解决方案

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In structural engineering beams with non-constant cross-section or beams with variable cross-section represent a class of slender bodies, aim of practitioners' interest due to the possibility of optimizing their geometry with respect to specific needs. Despite the advantages that engineers can obtain from their applications, non-trivial difficulties occurring in the non-prismatic beam modeling often lead to inaccurate predictions that vanish the gain of the optimization process. As a consequence, an effective non-prismatic beam modeling still represents a branch of the structural engineering of interest for the community, especially for advanced design applications in large spans elements. A straight beam of length l with variable inertia J(z) is provided in figure, subject to a generic live load condition q(z). The vertical displacement y(z) can be obtained from the solution of the differential equation of the elastic line, i.e., taking into consideration the inertia variability and neglecting, as first approximation, any shear contribution. Even if this solution is an approximate one, it is able to deal with the problem in its basic formulation. In this paper a solution for the problem stated is formulated using a series expansion of solutions, in a general load and cross section variability condition. Solution is thus obtained for a generic rectangular cross section beam with a variable height. Analytical solution is presented and evaluated using numerical evaluation of some cases of practical interest.
机译:在具有可变横截面的非恒定横截面或梁的结构工程梁中,代表一类细长的体,从业者的兴趣的目的,因为可能是在特定需求上优化它们的几何形状的可能性。尽管工程师可以从其应用中获得的优势,但非棱镜梁建模中发生的非琐碎困难通常导致不准确的预测,这些预测消失了优化过程的增益。因此,有效的非棱镜光束建模仍然代表社区感兴趣的结构工程的分支,特别是对于大型跨度元素的高级设计应用。图中提供了一种具有可变惯性j(z)的长度L长度L,但经过通用的现场负载条件Q(z)。垂直位移y(z)可以从弹性线的微分方程的溶液中获得,即,考虑到惯性变异性和忽略,作为第一近似,任何剪切贡献。即使这个解决方案是一个近似的,它也能够在其基本配方中处理问题。在本文中,在一般载荷和横截面可变性条件下,使用溶液的系列膨胀来配制解决问题的解决方案。因此,为具有可变高度的通用矩形横截面梁获得了解决方案。呈现和评估分析解决方案,使用一些实际兴趣的数值评估来评估。

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