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Latest Highway Bridge Spread Footing Research Findings in Ohio

机译:俄亥俄州最新的公路桥梁展布基础研究结果

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Shallow foundations are more economical than deep foundations and are utilized to support many different types of structures in our society. However, one type of structure to which shallow foundations have not seen widespread applications in Ohio and elsewhere is highway bridges. This may be because most bridge engineers question shallow foundation's ability to maintain adequate load-carrying capacity in all environments. The research team at Ohio University continued its study of shallow foundations at highway bridge construction sites in Ohio. At one of these sites, A-2-4 and A-3a soil types were encountered in a borehole. The central pier footing was instrumented with sensors and monitored during construction. The field instrumentations consisted of multiple sensors and stations for recording contact soil pressure under the footing, settlement of the footing, and tilting of pier columns tied to the footing. A USGS quality bench mark was incorporated to establish a solid permanent bench mark at the site. The field performance data collected in the study provided further insights into how contact soil pressure, footing settlement, and columns/wall tilting were correlated with each other throughout various construction stages. The study also produced outcome on general reliability of a settlement prediction methods outlined in the AASHTO LRFD Design Specifications.
机译:浅层基础比深层基础更经济,可用于支撑社会中许多不同类型的结构。然而,高速公路桥梁是浅基础在俄亥俄州和其他地方尚未得到广泛应用的一种结构。这可能是因为大多数桥梁工程师都对浅层基础在所有环境中保持足够的承载能力的能力提出了质疑。俄亥俄州大学的研究团队继续研究俄亥俄州高速公路桥梁施工现场的浅层基础。在这些地点之一,在钻孔中遇到了A-2-4和A-3a土壤类型。中心墩台脚装有传感器,并在施工过程中进行监控。现场仪器由多个传感器和站组成,用于记录基础下的接触土壤压力,基础的沉降以及与基础相连的墩柱的倾斜。合并了USGS质量基准,以在现场建立坚实的永久基准。在研究中收集的现场性能数据提供了进一步的见解,以了解在各个施工阶段接触土压力,立足沉降和立柱/墙体倾斜之间如何相互关联。该研究还得出了AASHTO LRFD设计规范中概述的沉降预测方法的一般可靠性的结果。

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