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GRS bridge abutments―an effective means to alleviate bridge approach settlement

机译:GRS桥台-减轻桥台沉降的有效手段

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Field tests of segmental block-faced geosynthetic-reinforced soil (GRS) bridge abutments and piers have demonstrated excellent performance characteristics and very high load carrying capacity. One important feature of GRS abutment is that it can potentially eliminate the use of piling when situated over a weak foundation. This will not only reduce the costs but also reduce "bridge bumps" often experienced at the ends of a bridge resting on a pile-supported abutment. This study was undertaken to investigate the potential of GRS bridge abutments to alleviate bridge approach settlements. The study was conducted by the finite element method of analysis using the computer program DACSAR. The program was first calibrated by comparing its results with the measured data of the Founders/Meadows bridge abutment recently constructed by the Colorado Department of Transportation. A parametric study was then conducted to examine the effects of different foundation soils, ranging from loose sand to stiff clay, on the performance of a GRS abutment. Special attention was placed on the maximum vertical and horizontal movements of the abutment as well as the approach settlement characteristics. The study indicated that the finite element computer code DACSAR is a reliable analytical tool for analyzing the performance of GRS bridge abutments and that the GRS abutment is an effective means to reduce different al settlements between the abutment and the approach embankment.
机译:分段块面土工合成材料加筋(GRS)桥台和墩的现场测试显示出出色的性能特征和极高的承载能力。 GRS基台的一个重要特征是,当位于软弱的地基上方时,它可以潜在地消除桩的使用。这不仅可以降低成本,而且可以减少经常在靠桩支撑的桥台上的桥的端部经历的“桥颠簸”。进行这项研究是为了研究GRS桥基台减轻桥梁进近沉降的潜力。该研究是使用计算机程序DACSAR通过有限元分析法进行的。该程序首先通过将其结果与科罗拉多运输部最近建造的Founders / Meadows桥台的测量数据进行比较来进行校准。然后进行了参数研究,研究了从松散的沙子到坚硬的粘土等不同基础土壤对GRS基台性能的影响。特别注意的是,基台最大的垂直和水平运动以及进近沉降特性。研究表明,有限元计算机代码DACSAR是分析GRS桥基台性能的可靠分析工具,而GRS基台是减少基台和引路堤之间不同高度沉降的有效手段。

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