Hybrid Sliding-Rocking Bridges for Resilient Accelerated Bridge Construction
Hybrid Sliding-Rocking Bridges for Resilient Accelerated Bridge Construction
批准号:
1538585
负责人:
Petros Sideris
金额:
$39.45万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-01 至 2017-10-31
中文摘要
位于美国地震区的大量桥梁需要立即改造或更换。为了更快地完成这些翻新/更换,人们研究了加速桥梁建设(ABC)技术,即在几天内完成,而不是在几周或几个月内完成,以便将桥梁运营中断造成的社会经济影响降至最低。ABC技术的其他优势包括通过减少建筑排放来减少对环境的影响,提高出行公众的安全性和减少交通延误,以及提高产品质量/耐用性。尽管有这些优点,但由于ABC技术在地震性能上的不确定性,它们主要应用于地震活动较少的地区。这项研究将研究一种名为混合滑移摇摆(HSR)桥的新系统的性能,该系统已显示出将施工速度与弹性(低损害)抗震性能相结合的潜力。这项研究将提高对高铁桥梁系统动力响应特性的了解,并解决高铁桥梁缺乏设计程序和缺乏方法和数据来量化此类系统在其寿命周期内的成本和收益的问题。高铁桥梁结合了摇摆系统的特点和滑动隔震的特性,为ABC提供了一种多功能的弹性抗震系统。这项研究将形成一个整体框架,其中包括基于力学的滑动/摇摆系统建模、主要设计变量的计算敏感性研究、实验验证和性能评估研究、基于性能的抗震设计(PBSD)方法的发展以及生命周期效益-成本评估。该框架将应用于高铁桥梁的概念,以研究高铁桥梁的基本动力响应特性,量化各种设计变量对高铁桥梁抗震性能的影响,开发高铁桥梁的PBSD和生命周期评估方法,并量化高铁桥梁在整个使用寿命期间相对于传统桥梁的性能优势。这项研究将通过实验和计算相结合的方法,促进对滑动-摇摆系统的基本力学/动力学和地震响应的理解。这项研究还将通过制定适用于建筑和桥梁建设中的新系统的PBSD和生命周期评估的新的整体框架,促进新地震系统的设计和评估的科学。
英文摘要
A large number of bridges located in seismic regions in the United States are in need of immediate retrofit or replacement. Accelerated Bridge Construction (ABC) techniques have been investigated to accomplish these retrofits/replacements more rapidly, that is, in days, rather than weeks or months, in order to minimize socio-economic impacts due to disruptions in bridge operation. Further advantages of ABC techniques include reduced environmental impact through reduction in construction emissions, improved safety and reduced traffic delays for the traveling public, and improved product quality/durability. Despite these advantages, ABC techniques have been mostly implemented in low seismicity areas because of uncertainties in their seismic performance. This research will study the performance of a new system, termed the hybrid sliding-rocking (HSR) bridge, which has shown the potential to combine construction rapidity with resilient (low damage) seismic performance. This research will improve understanding of the dynamic response properties of HSR bridge systems, and address the lack of design procedures for HSR bridges and the lack of methods and data to quantity the costs and benefits of such a system over its life span. HSR bridges combine the features of rocking systems with the attributes of sliding seismic isolation, providing a versatile resilient seismic system for ABC. This research will formulate a holistic framework that integrates mechanics-based modeling of sliding/rocking systems, computational sensitivity studies for major design variables, experimental validation and performance assessment studies, development of performance-based seismic design (PBSD) methodologies, and life-cycle benefit-cost evaluations. This framework will be applied to the HSR bridge concept to investigate the fundamental dynamic response properties of HSR bridges, quantify the effects of various design variables on the seismic performance of HSR bridges, develop a PBSD and life-cycle assessment methodology for HSR bridges, and quantify the performance benefits of HSR bridges over conventional bridges over their entire service life. This research will advance understanding of the fundamental mechanics/dynamics and seismic response of sliding-rocking systems through an integrated experimental and computational approach. This research will also advance the science of the design and evaluation of new seismic systems by formulating a new holistic framework for PBSD and life-cycle assessment that will be applicable to new systems in both building and bridge construction.
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会议论文
Three-Dimensional Dynamic Nonlocal Beam Formulation for Simulation of Damage and Failure in Reinforced Concrete Structural Elements
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批准号:2032352
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项目类别:Standard Grant
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资助金额:$25.94万
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财政年份:2020
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负责人:Petros Sideris
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依托单位:
Hybrid Sliding-Rocking Bridges for Resilient Accelerated Bridge Construction
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批准号:1748031
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项目类别:Standard Grant
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资助金额:$23.71万
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财政年份:2017
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负责人:Petros Sideris
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依托单位:
海外基金