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Transverse Analysis of a Prestressed Concrete Wide Box Girder with Stiffened Ribs

机译:加筋肋预应力混凝土宽箱梁的横向分析

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For concrete box girders with wide flanges, a ribbed slab can increase the cantilever length and transverse stiffness while reducing the dead weight of the deck. For single box girder bridges with a large width-to-span ratio, the traditional cross section of a single-cell box girder (the two-web box section) can lose efficiency because of the effect of shear lag, cross-section distortion, and transverse bending moments. A literature search revealed that the prestressed concrete box girder with transverse ribs is already used in certain countries to meet the requirements of wide bridge decks of single-cell concrete box girders. However, little research has been conducted on the mechanical properties of this spine-like box girder, although it has been used in many applications. In this paper, the structural forms and dimensions of a concrete box girder with wide flanges and a ribbed slab are introduced on the basis of design experience. A significant difference in the mechanical performance of ribbed box girders and conventional box girders was observed in the influence of the stiffened ribs. Therefore, on the basis of engineering practices, three representative three-dimensional (3D) finite-element models (i.e., ribbed box girder, equivalent box girder, and ordinary box girder) were established to quantitatively investigate the influence of stiffened ribs on transverse stress under the action of gravity and vehicle loads. The results of this investigation can be used as a reference for designing and constructing similar projects. (C) 2017 American Society of Civil Engineers.
机译:对于具有宽凸缘的混凝土箱形梁,肋板可以增加悬臂的长度和横向刚度,同时减少桥面的自重。对于宽跨度较大的单箱梁桥,传统的单室箱梁截面(两腹板箱形截面)会因剪切滞后,截面变形,和横向弯矩。文献检索显示,在某些国家/地区,已经使用带有横肋的预应力混凝土箱梁来满足单室混凝土箱梁宽桥面板的要求。但是,尽管这种脊柱状箱形梁已经被用于许多应用中,但对其力学性能的研究很少。本文根据设计经验,介绍了宽翼缘和肋板混凝土箱梁的结构形式和尺寸。在加劲肋的影响下,观察到肋式箱形梁与常规箱形梁的机械性能存在显着差异。因此,根据工程实践,建立了三个具有代表性的三维(3D)有限元模型(即肋形箱梁,等效箱形梁和普通箱形梁),以定量研究加筋肋骨对横向应力的影响。在重力和车辆载荷的作用下。研究的结果可作为设计和建造类似项目的参考。 (C)2017年美国土木工程师学会。

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