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NEW CSXT BRIDGE - DEEP FOUNDATION INSTALLATION IN KARST BEDROCK

机译:新的CSXT桥-岩溶床深层基础安装

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Geotechnical investigations and engineering programs are the cornerstone of structural bridge design, and it is paramount to gather reliable information during field investigations. However, geotechnical engineering and the geologic sciences are characterized by uncertainty and railroads often encounter variable geologic conditions during foundation installation. This was the case with a CSX Transportation (CSXT) bridge crossing over Buck Creek between the cities of Helena and Pelham, Alabama. The project is located in an area that is underlain by karst bedrock consisting of limestone and dolomite. Both types of bedrock present are subject to dissolution from mildly acidic groundwater penetrating the bedrock through joints or discontinuities. The dissolution process produces an irregular bedrock surface that may contain clay-filled, open discontinuities in the bedrock. The differential weathering process isolates remnant rock units, leaving weathered-in-place boulders within a soil matrix. The constructed Helena CSXT Bridge is nearly 600 feet in total length and consists of five (5) evenly spaced spans supported by a combination of driven HP14x89 steel piles and micropiles installed within competent bedrock. This paper will provide background to the geotechnical design and challenges faced during installation of foundation elements within karst bedrock. The design team, including geotechnical and structural engineers, worked together to find successful solutions to minimize the impacts of the variable bedrock line while maintaining the construction progress. Continuous engagement by the geotechnical design engineers throughout the foundation construction phase was key to a successful project completion.
机译:岩土工程勘测和工程计划是结构桥梁设计的基石,在野外勘测中收集可靠的信息至关重要。但是,岩土工程和地质科学的特点是不确定性,铁路在基础安装过程中经常遇到变化的地质条件。 CSX运输(CSXT)桥越过巴克溪的情况就是这样,阿拉巴马州的海伦娜(Helena)和佩勒姆(Pelham)市之间。该项目位于一个由石灰岩和白云岩组成的喀斯特岩溶床之下的区域。存在的两种类型的基岩都可能受到通过节理或不连续面渗透到基岩中的弱酸性地下水的溶解。溶解过程会产生不规则的基岩表面,该基岩表面可能在基岩中包含粘土填充的开放不连续点。差异化风化过程隔离了残余的岩石单元,将风化的原石留在土壤基质中。建造的Helena CSXT桥总长度近600英尺,由五(5)个均匀间隔的跨度组成,并由驱动的HP14x89钢桩和安装在合适基岩中的微型桩共同支撑。本文将提供岩土工程设计的背景以及在岩溶基岩内安装地基元素时面临的挑战。包括岩土和结构工程师在内的设计团队共同努力,找到了成功的解决方案,以在保持施工进度的同时将可变基岩线的影响降至最低。在整个基础建设阶段中,岩土工程设计工程师的持续参与是成功完成项目的关键。

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