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Development of alternative concrete bridge superstructure systems for short and medium span bridges

机译:中短跨度桥梁混凝土上部结构替代系统的开发

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Two new concrete bridge superstructure systems for short and medium span bridges are presented. The investigated systems consist of adjacent hollow precast concrete beams with and without concrete topping. The proposed configurations are compared with traditional adjacent box beam and decked bulb tee systems for spans that range from 24.4 m to 45.7 m. It is demonstrated that the proposed system that features concrete topping (PS2) is lighter than the adjacent box beam system, requires fewer strands, provides shallower superstructure depths, and exhibits lower cambers for spans equal to 24.4 m and 30.5 m. PS2 addresses the reflective cracking problems manifested in adjacent box beam systems by shifting the location of the longitudinal connections to the bottom flange and away from traffic loads. The system that features no topping (PS4) is slightly heavier than the decked bulb tee system, but features shallower superstructure depths, requires fewer strands, and exhibits lower live load deflections and camber. Transverse bending moments demand in PS4 are reduced compared to the decked bulb tee system due to the smaller span provided by the two web supports. Live load distribution factors (LLDF) for PS2 and PS4 can be conservatively estimated using AASHTO provisions for adjacent box and decked bulb tee systems, respectively. (C) 2017 Elsevier Ltd. All rights reserved.
机译:介绍了两种新的用于中短跨度桥梁的混凝土桥梁上部结构系统。所研究的系统由相邻的空心预制混凝土梁(带有或不带有混凝土顶部)组成。将拟议的配置与传统的相邻箱形梁和甲板球泡三通系统进行比较,其跨度为24.4 m至45.7 m。结果表明,所提出的具有混凝土顶层(PS2)的系统比相邻的箱形梁系统更轻,所需的股数更少,上部结构深度更浅,并且在等于24.4 m和30.5 m的跨度下具有较低的外倾角。 PS2通过将纵向连接的位置移到底部法兰上并远离交通负荷来解决相邻箱形梁系统中出现的反射性开裂问题。不带顶板(PS4)的系统比带顶板的T形三通系统要重一些,但上部结构的深度要浅一些,所需的钢绞线更少,活载荷挠度和外倾角也较小。由于两个腹板支架的跨度较小,因此与平板式T形三通相比,PS4中的横向弯矩要求有所降低。 PS2和PS4的活载分配因子(LLDF)可以分别使用AASHTO规定对相邻的箱式和甲板式T恤系统进行保守估计。 (C)2017 Elsevier Ltd.保留所有权利。

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