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首页> 外文期刊>Bulletin of earthquake engineering >Parametric study on the effect of structural and geotechnical properties on the seismic performance of integral bridges
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Parametric study on the effect of structural and geotechnical properties on the seismic performance of integral bridges

机译:参数研究结构和岩土性能对整体桥梁抗震性能的影响

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摘要

In this paper practical techniques are introduced for detailed modeling of soil-pile and soil-abutment interaction effects for integral bridges (IBs). Furthermore, a parametric study is conducted to determine appropriate structural configurations and geotechnical properties to enhance the seismic performance of IBs. For this purpose, numerous nonlinear structural models of a two-span IB including dynamic soil-bridge interaction effects are built. Nonlinear time history analyses (NTHA) of the IB models are then conducted using a set of ground motions with various intensities. In the analyses, the effect of various structural and geotechnical properties such as foundation soil stiffness, backfill compaction level, pile size and orientation, abutment height and thickness are considered. The results of NTHA are then used to assess the effects of these properties on the seismic performance of IBs in terms of member forces and deformations. It is found that while the proposed modeling techniques for IBs are easy to implement in commercially available structural analysis programs, they are also computationally efficient. However, the proposed structural model may not be used to study the soil deformations along the length of the embankment. For the IB and modeling approach under consideration, the bridge seismic response is found to be insensitive to the length of the embankment and damping of the embankment soil. Furthermore, IBs built with shorter and thinner abutments as well as large steel H-piles oriented to bend about their strong axis exhibit better seismic performance.
机译:本文介绍了用于整体桥梁(IBS)的土桩和土壤基台相互作用效应的详细建模。此外,进行参数研究以确定适当的结构配置和岩土性质,以增强IBS的地震性能。为此目的,建立了两跨度IB的许多非线性结构模型,包括动态土壤 - 桥接互动效应。然后使用具有各种强度的一组地运动来进行IB模型的非线性时间历史分析(NTHA)。在分析中,考虑了各种结构和岩土性特性的影响,例如基础土壤刚度,回填压实水平,桩尺寸和取向,邻接高度和厚度。然后,NTHA的结果用于评估这些性质对成员力和变形方面IBS的地震性能的影响。结果发现,虽然在市售的结构分析程序中易于实施的IBS建模技术,但它们也是计算效率的。然而,所提出的结构模型可能不用于研究沿堤防的长度的土壤变形。对于所考虑的IB和建模方法,发现桥接地震响应对堤防土壤的堤防长度不敏感。此外,由于缩短和更薄的基台以及以弯曲围绕其强轴线的大型钢H桩构建的IBS表现出更好的地震性能。

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