作为提高单跨桥梁耐久性解决方案的混合式桥面球形三通(HDBT)的数值评估

Pablo Agüero-Barrantes, Alexandra Hain
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摘要

为了解决传统预应力混凝土梁的缺点,我们提出了一种新的混合梁构件--混合桥面球形三通(HDBT)。HDBT 采用分阶段制造。首先,使用超高性能混凝土(UHPC)浇注下翼缘,并在使用高性能混凝土(HPC)浇注腹板和上翼缘之前进行预应力。本研究旨在分析评估 HDBT 梁在桥梁结构中的结构性能。按照有关 UHPC 桥梁设计的最新标准,设计了多座 HDBT 桥梁。性能评估采用以下标准:1) 活载和死载下的挠度;2) 损失前临时应力的设计检查;3) 损失后适用性极限状态下的应力;以及 4) 美国州公路和交通官员协会(AASHTO)强度 I 载荷组合下的需求容量比。为了获得更精细的适用性极限状态结果,使用商业有限元软件对桥梁进行了建模。该模型捕捉了随时间变化的材料特性,如强度增加、蠕变和收缩,以及制造阶段。分析表明,HDBT 的创新设计和制造工艺能够解决目前预应力混凝土构件的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical evaluation of Hybrid Deck Bulb Tee (HDBT) as a solution to improve durability of single-span bridges
To address the shortcomings of traditional prestressed concrete girders, a new hybrid beam element, the Hybrid Deck Bulb Tee (HDBT) is proposed. The HDBT utilizes staged fabrication. First, the bottom flange is cast with Ultra-high Performance Concrete (UHPC) and prestressed prior to casting the web and top flange with High-Performance Concrete (HPC). The purpose of this study is to analytically evaluate the structural performance of HDBT beams for bridge structures. Multiple HDBT bridges were designed following the state-of-the-art criteria in regard to UHPC bridge design. The performance was evaluated using the following criteria: 1) the deflections under live load and dead load, 2) design checks for temporary stresses before losses, 3) stresses at serviceability limit states after losses, and 4) demand-to-capacity ratios under the American Association of State Highway and Transportation Officials (AASHTO) Strength I load combination. To obtain more refined results for the serviceability limit state, the bridges were modeled using a commercial finite element software. The model captured the time dependent material properties such as strength gain, creep, and shrinkage, as well as the stages of fabrication. The analysis demonstrates that the innovative design and fabrication processes of HDBTs are capable of resolving the current limitations of prestressed concrete elements.
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