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Flexible bridge decks suspended by cable nets. A constrained form finding approach

机译:柔性桥面板由电缆网悬挂。约束形式查找方法

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摘要

The initial geometry of structures made of cables is steered by the cable tensioning forces. In a cable net the geometrical shape and the internal force distribution cannot be dealt as separate issues: the set of geometries defines also the feasible sets of the internal forces. During the last decades, many different approaches have been proposed to deal with the form finding of cable structures. The most efficient one is the so called Force Density Method (FDM), proposed by Schek, which allows to conforming cable nets for structural applications without requiring any further assumption, neither on the geometry, nor on the material properties. An Extension of the Force Density Method, the EFDM, makes it possible to set conditions in terms of fixed nodal reactions or, in other words, to fix the position of a certain number of nodes and, at the same time, to impose the intensity of the reaction forces. Through such an extension the EFDM enables us to deal with form finding problems of cable nets subjected to given constraints and in particular to treat mixed structures, made of cables and struts. In this paper we consider cable nets interacting with members having flexural behaviour. For a given cable assembly and for a given loading condition, aim of this work is to find that particular pretensioning system which replaces both the static and the kinematic functions of the inner reactions of a flexural elastic continuous beam. It is, for instance, the case of the bridge decks suspended by cables, shaped in various forms. The specialization of the EFDM to this type of problem is presented and a progressive set of examples shows the efficiency and the versatility of this approach in contributing to the design of new creative forms.
机译:由电缆制成的结构的初始几何形状由电缆张紧力控制。在电缆网中,不能将几何形状和内力分布作为单独的问题处理:几何形状集还定义了可行的内力集。在过去的几十年中,已经提出了许多不同的方法来处理电缆结构的形状寻找。最有效的方法是Schek提出的所谓的“力密度法”(FDM),它可以使电缆网适合结构应用,而无需在几何形状或材料特性上进行任何进一步假设。力密度方法的扩展,即EFDM,可以根据固定的节点反应设置条件,换句话说,可以固定一定数量节点的位置,并同时施加强度反作用力。通过这种扩展,EFDM使我们能够处理在给定约束下的电缆网的找形问题,尤其是处理由电缆和支柱制成的混合结构。在本文中,我们考虑电缆网与具有弯曲行为的构件相互作用。对于给定的电缆组件和给定的负载条件,这项工作的目的是找到一种特定的预张紧系统,该系统可以替代挠性弹性连续梁内部反作用力的静态和运动学功能。例如,桥面被各种形状的电缆悬挂的情况。 EFDM专门针对此类问题进行了介绍,并通​​过一系列逐步的示例说明了这种方法在设计新的创意形式方面的效率和多功能性。

著录项

  • 作者

    M. QUAGLIAROLI; P.G. MALERBA;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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