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Experimental study of a geosynthetic-reinforced soil bridge abutment

机译:土工合成加筋土桥桥面的实验研究

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The article presents an experimental study of a geosynthetic-reinforced soil (GRS) bridge abutment (BA). The BAs are seated on a saturated soft foundation layer and support a 16 m long concrete bridge. Laboratory tests were conducted on the foundation soil, geogrid, and fill material. The BA is constructed from 14 geogrids and has a total height of 4.2 m. The strain values in the geogrids were measured and recorded during the construction of the abutments and after installation of the bridge structure. The test results show that more than 50% of the total strain in the geogrids was developed during the construction of the BAs, mostly embedded in the ground. The remainder of the measured strain was a consequence of installing the prefabricated bridge girders, back fill placement, concreting the top slab, and placing the asphalt concrete. The strain distribution along the geogrids shows that the maximum strain was recorded below the sill, and was 50% higher than at the center of the BA. Based on an analysis of the construction costs, it can be concluded that conventional reinforced concrete abutments could cost up to five times the amount of optimally designed GRS-BAs.
机译:本文介绍了地质合成加强土(GRS)桥桥(BA)的实验研究。该BAS坐在饱和的软基层上,并支撑16米长的混凝土桥。实验室测试是在基础土壤,地质格栅和填充材料上进行的。 BA由14种土工格栅构成,总高度为4.2米。在基台和安装桥结构之后测量地质格栅中的应变值和记录。测试结果表明,在浅滩的构建过程中,在地质格栅中产生了超过50%的土工格栅中的总菌株,主要嵌入在地面。所测量的菌株的其余部分是安装预制桥梁梁,背部填充放置,混凝土板,以及放置沥青混凝土的后果。沿着地质格栅的应变分布表明,最大应变被记录在窗台以下,比BA中心高50%。基于对施工成本的分析,可以得出结论,传统的钢筋混凝土基台可花费最佳设计的GRS-BAS的5倍。

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