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首页> 外文期刊>Advances in civil engineering >Protective and Blast Resistive Design of Posttensioned Box Girders Using Computational Geometry
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Protective and Blast Resistive Design of Posttensioned Box Girders Using Computational Geometry

机译:基于计算几何的后张式箱梁的防护和爆破设计

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摘要

The optimal tendon profile and its associated duct geometry for posttensioned box girders are investigated. A computational algorithm has been developed to determine an ideal shape for the tendon and duct. The algorithm is based on a diagonal cross point in the Magnel quadrilateral and uses computational geometry instead of graphical drawing. Thereafter, an ideal parabolic and linear tendon profiles can be calculated from which the covering duct could be shaped. To check the optimality of the results, an automatic examination of Magnel diagrams in various cross sections is incorporated in the algorithm. This enables a unique prestress level to be selected that suits all sections. Then, the mideccentricity of the two crossing points with a common prestress line is chosen as a design eccentricity in each cross section. The optimal duct shape is determined based on such automatic inspections. In a numerical example, the linear, parabolic, and optimal duct geometries are compared and drawn. It is concluded that both linear and parabolic duct shapes can be very close to an optimal shape. In a numerical example, an optimal, box girder with linear open access-type tendons is designed that can withstand extra blast load when explosion occurs.
机译:研究了后张式箱梁的最佳腱剖面及其相关的管道几何形状。已经开发出一种计算算法来确定肌腱和导管的理想形状。该算法基于Magnel四边形中的对角交叉点,并使用计算几何图形代替图形绘制。此后,可以计算出理想的抛物线形和线性肌腱轮廓,据此可以形成覆盖管。为了检查结果的最佳性,该算法中包含了各种横截面的Magnel图的自动检查功能。这样可以选择适合所有截面的独特预应力水平。然后,选择具有共同预应力线的两个交叉点的中偏心作为每个横截面中的设计偏心。基于这种自动检查来确定最佳管道形状。在数值示例中,比较并绘制了线性,抛物线形和最佳风管几何形状。结论是线性和抛物线形的导管形状都可以非常接近最佳形状。在一个数值示例中,设计了一种具有线性开放式牛筋的最佳箱形梁,当爆炸发生时,它可以承受额外的爆炸载荷。

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