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Parametric study of an integral abutment bridge supported by prestressed precast concrete piles

机译:预应力预制混凝土桩支撑整体式桥台的参数研究。

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Integral abutment bridges (IABs) have been designed and constructed since the 1930s around the world. In these bridges, the water leaking problems and maintenance issues of expansion joints are minimized. However, the behaviors of IABs under temperature effects have not been completely understood. In the state of Louisiana, the first full IAB, i.e., the Caminada Bay Bridge, was built on the soft soil conditions in 2011. This paper presents a numerical investigation on the thermal performance of this bridge using ANSYS software. Based on the analysis studies, the numerical modeling methodology for IABs, i.e., temperature loadings, backfill-abutment interactions, and soil-pile interactions, is validated by comparing the bridge response with the field measurements. In addition, a parametric study is performed and demonstrated that the behavior of IABs is affected by temperature loadings, boundary support types, backfills behind abutments, soils surrounding piles, and pile-bent connections. It needs to balance all these parameters in designs so that the thermal deformation of slabs is appropriately accommodated without compromising the integrity of the superstructure and substructure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:自1930年代以来,全球已经设计和建造了整体式桥台(IAB)。在这些桥梁中,伸缩缝的漏水问题和维护问题得以最小化。但是,尚未完全了解IAB在温度效应下的行为。在路易斯安那州,2011年在软土条件下建造了第一座完整的IAB,即Caminada海湾大桥。本文使用ANSYS软件对该桥的热性能进行了数值研究。在分析研究的基础上,通过将桥梁响应与现场测量结果进行比较,验证了IAB的数值建模方法,即温度载荷,回填与基台相互作用以及土桩相互作用。此外,进行了一项参数研究,并证明了IAB的行为受温度载荷,边界支撑类型,桥台后面的回填,桩周围的土壤以及桩弯连接的影响。它需要在设计中平衡所有这些参数,以便在不损害上部结构和下部结构的完整性的情况下,适当地承受板坯的热变形。 (C)2016 Elsevier Ltd.保留所有权利。

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