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Evaluation of lateral behavior of pile-supported bridges under scour conditions.

机译:冲刷条件下桩基桥梁的横向性能评估。

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摘要

Scour is the removal of soils in the vicinity of bridge foundations, resulting in a reduced capacity of the foundations, which may lead to a bridge failure. Scour causes 60% of bridge failures in the United States. To minimize bridge failures, the Federal Highway Administration (FHWA) has established a requirement that all state highway agencies should evaluate whether bridges in their inventory are scour susceptible. Therefore, it is critical that state Departments of Transportation (DOTs) are able to determine quickly and effectively which bridges in their inventories are scour-critical, enabling responsible management of those bridges during and after scour events. It is of importance to identify and explore analytical methods for determining bridge system susceptibility to scour events. However, most research so far has mainly focused on the prediction of scour depth, and limited knowledge is available for the evaluation of bridge performance under scour conditions. In addition, scour by removing soils around bridge foundations changes the stress history of the remaining soils. The change of the stress history however is often ignored in the analysis or design. The objective of this study was to understand potential scour effects on the behavior of laterally loaded piles by considering the stress history of the remaining soils and the scour-hole dimensions. Furthermore, a comprehensive study was conducted to evaluate the lateral behavior of an entire bridge under a scour condition by considering soil, pile foundation, and superstructure interactions.;To consider the effects of the stress history change by scour on the behavior of laterally loaded piles, the conventional p-y curves for clays and sands were modified. To examine the effects of the scour-hole dimensions on the behavior of laterally loaded piles, 3D finite difference analysis run in FLAC3D was performed to evaluate the responses of laterally loaded piles under different scour-hole dimensions including scour depth, scour width, and scour-hole slope angle. And one-dimensional simplified methods were developed to address the effects of scour-hole dimensions of the behavior of laterally loaded piles in clays and sands by modifying the p-y curve method based on wedge failure. Finally, analysis of the bridge structures as a whole system was conducted using the integrated analysis program that was developed by integrating Soil Spring Module ( SSM) into the structure software, STAAD.Pro. With the integrated analysis program, the analysis of soil-pile foundation-structure interactions was accomplished and the lateral behavior of the bridge was evaluated at different scour depths by considering the change of the stress history of the remaining soils. The analytical results show that scour substantially affected the behavior of laterally loaded piles; however, the scour effects on the lateral behavior of the entire bridge were considerably reduced due to the interactive effects of bridge components within the bridge structure.
机译:冲刷是指去除桥梁基础附近的土壤,从而导致基础承载力下降,从而导致桥梁破坏。在美国,冲刷造成了60%的桥梁故障。为了最大程度地减少桥梁故障,美国联邦公路管理局(FHWA)制定了一项要求,即所有州高速公路机构都应评估其库存中的桥梁是否易于冲刷。因此,至关重要的是,州交通运输部(DOT)能够快速有效地确定其库存中哪些桥梁对冲刷至关重要,从而能够在冲刷事件发生期间和之后对这些桥梁进行负责任的管理。重要的是确定和探索确定桥梁系统对冲刷事件敏感性的分析方法。但是,迄今为止,大多数研究主要集中在冲刷深度的预测上,并且在冲刷条件下评估桥梁性能的知识有限。此外,通过清除桥梁基础周围的土壤进行冲刷可以改变剩余土壤的应力历史。然而,应力历史的变化在分析或设计中通常被忽略。这项研究的目的是通过考虑剩余土壤的应力历史和冲刷孔的尺寸,来了解冲刷对侧向荷载桩行为的潜在影响。此外,还进行了一项综合研究,通过考虑土,桩基础和上部结构的相互作用来评估冲刷条件下整座桥梁的侧向性能;;考虑冲刷的应力历史变化对侧向荷载桩的性能的影响,修改了传统的黏土和沙子的py曲线。为了检查冲孔尺寸对侧向荷载桩行为的影响,在FLAC3D中运行了3D有限差分分析,以评估侧向荷载桩在不同冲孔尺寸(包括冲刷深度,冲刷宽度和冲刷)下的响应。孔倾斜角。并通过修改基于楔形破坏的p-y曲线方法,开发了一种一维简化方法来解决侧向荷载桩在粘土和沙子中的冲刷孔尺寸的影响。最后,使用将土壤弹簧模块(SSM)集成到结构软件STAAD.Pro中开发的集成分析程序,对整个桥梁结构进行了分析。通过综合分析程序,完成了对桩基基础-结构相互作用的分析,并通过考虑剩余土的应力历史变化,在不同冲刷深度下评估了桥梁的侧向性能。分析结果表明,冲刷显着影响了侧向荷载桩的性能。然而,由于桥梁结构内桥梁构件的相互作用,冲刷对整个桥梁横向性能的影响大大降低。

著录项

  • 作者

    Lin, Cheng.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 260 p.
  • 总页数 260
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:46

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