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Mitigating the bridge end bump problem: A case study of a new approach slab system with geosynthetic reinforced soil foundation

机译:缓解桥梁的端部颠簸问题:以土工合成加筋地基为基础的新方法平板系统的案例研究

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The Louisiana Department of Transportation and Development (LA DOTD) has initiated a major effort to minimize the bridge end bump problem associated with the differential settlement. As a result, a new design for the approach slab was proposed, which requires increasing the slab flexural rigidity (El), and using reinforced soil foundation (RSF) to support the slab and traffic loads at the roadway pavement/approach slab joint (R/S joint). The Bayou Courtableau Bridge was selected as a demonstration project to monitor, evaluate, validate, and verify the new bridge approach slab design method. The west approach slab was designed using the proposed design method with slab thickness of 406 mm, while the east approach slab was designed using the traditional design method with slab thickness of 305 mm. The pavement end side of the west approach slab was supported by a 1.2-m wide strip footing with the soil underneath it was reinforced by six layers of geogrid placed at a vertical spacing of 305 mm. Two static load tests were conducted on both the west and east approach slabs at two different times after construction. The test results indicated that the east approach slab (with traditional design) kept losing its contacts from the underneath embankment soil starting from the bridge side towards the pavement side after about a year and half. Meanwhile, the west approach slab (with new design) lost most of its supports from the underneath embankment soil, but with less observed faulting at the R/S joint and improved rideability [i.e., lower International Roughness Index (IRI) values]. The field monitoring program at Bayou Courtableau Bridge demonstrated much better performance of the new approach slab design system (west approach slab) compared to traditional design (east approach slab). (C) 2015 Elsevier Ltd. All rights reserved.
机译:路易斯安那州运输与发展部(LA DOTD)已开始了一项重大努力,以最大程度地减少与差异沉降有关的桥头颠簸问题。因此,提出了一种新的进场板设计,该设计需要增加板的抗弯刚度(El),并使用加筋土基础(RSF)来支撑板和道路路面/进近板接缝处的交通荷载(R / S联合)。 Bayou Courtableau桥梁被选为示范项目,以监控,评估,验证和验证新的桥梁方法平板设计方法。西引板采用建议的设计方法进行设计,板厚度为406 mm,而东引板采用传统的设计方法进行设计,板厚度为305 mm。西侧引路板的人行道端面由1.2米宽的条形基础支撑,其下方的土壤由六层土工格栅以305毫米的垂直间距加固。在施工后的两个不同时间,分别对东西进场平板进行了两次静载荷测试。测试结果表明,东进路平板(采用传统设计)经过大约一年半的时间后,一直从桥下到人行道侧一直从路堤下方的土壤中失去接触。同时,西进式平板(采用新设计)从路堤下方的土壤中失去了大部分支撑,但在R / S接头处观察到的断层较少,并且乘坐性得到改善[即,较低的国际粗糙度指数(IRI)值]。与传统设计(东进近平板)相比,Bayou Courtableau桥的现场监控程序证明了新进近平板设计系统(西进平板)的性能要好得多。 (C)2015 Elsevier Ltd.保留所有权利。

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