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Structural optimization of elastic circular arches and design criteria

机译:弹性圆拱的结构优化和设计标准

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Even if arches represent an old structural system adopted in construction practice since two thousand years ago, they are still adopted just if large spans have to be covered. The structural efficiency of arches principally depends on optimal material exploitation, due to the minimization of the thrust curve eccentricity, which reduces structural material volume and weight. Although the millenarian use and a very abundant literature dealing with arches, there is still scope for design optimization, so this study is framed within this context, investigating plane circular arches under uniformly distributed vertical load and self-weight. The arches are simply supported with bending springs at end sections. In a first step an analytical solution of the arch static is derived in dimensionless form. Next, the volume of the arch is minimized. Finally, the results are charted to allow their use in a design process.
机译:即使拱门代表自两千年前以来建筑实践采用的旧结构系统,如果必须覆盖大跨度,它们仍然采用。由于最小化推力曲线偏心的偏心,拱门的结构效率主要取决于最佳材料开发,这减少了结构材料体积和重量。虽然千年使用和处理拱门的非常丰富的文学,但设计优化仍有范围,因此该研究在这方面进行了框架,在均匀分布的垂直载荷和自我重量下调查平面圆形拱。拱门简单地支撑在端部的弯曲弹簧。在第一步中,拱形静态的分析解是以无量纲形式导出的。接下来,弓的体积被最小化。最后,绘制了结果以允许其在设计过程中使用。

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