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首页> 外文期刊>International journal of geotechnical engineering >Reduced lateral resistance of abutment piles near MSE walls based on full-scale tests
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Reduced lateral resistance of abutment piles near MSE walls based on full-scale tests

机译:根据全面测试,减小了MSE壁附近的基台桩的侧向阻力

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Pile foundations for bridges must often resist lateral loads produced by earthquakes and thermal expansion or contraction. In addition, space constraints are also leading to vertical mechanically stabilized earth (MSE) walls at abutment faces. Available test results indicate that lateral pile resistance can decrease significantly as piles are placed closer to MSE walls. However, no design procedure is available for assessing the decrease in resistance or the effect of the reinforcement on lateral resistance. In this study, full-scale tests were conducted on three 400 mm pipe piles spaced at 1.6, 2.9 and 5.2 pile diameters behind a 10.5-m high MSE wall. The piles were double wrapped with a 0.25 mm thick sheet of low-density polyethylene (LDPE) to reduce down drag. The measured lateral resistance decreased as the spacing behind the wall decreased. The lateral resistance of the pile at 1.6 diameters from the wall was less than one-half of that for the pile at 5.2 pile diameters. Measured tensile forces were higher in the reinforcements adjacent to the pile closest to the wall indicating that the reinforcing grid was supplying additional resistance to pile movement. Back-analyses using a p-y curve approach found the friction angle and k value to be 28° and 41 MN/m3, respectively for the pile located 5.2 diameters away from the wall. These values are significantly lower than other lateral load tests in similar gravels on piles without LDPE sheets. P-multipliers to account for the reduced capacity were developed and provided reasonable agreement with measured response.
机译:桥梁的桩基必须经常抵抗地震和热膨胀或收缩产生的侧向载荷。此外,空间限制还导致在邻接面处形成垂直的机械稳定土(MSE)墙。可用的测试结果表明,当桩靠近MSE墙放置时,桩的横向阻力会显着降低。但是,没有设计程序可用于评估阻力的减小或增强对横向阻力的影响。在这项研究中,对3个400毫米的管桩进行了全面测试,这些管桩在10.5 m高的MSE墙后间隔为1.6、2.9和5.2桩直径。将桩用0.25毫米厚的低密度聚乙烯(LDPE)板双层包裹以减少向下阻力。随着墙后间距的减小,测得的侧向阻力减小。距墙1.6直径处的桩的侧向阻力小于5.2桩直径处的桩的侧向阻力的一半。在最靠近墙的桩附近,钢筋中测得的拉力较高,这表明钢筋网为桩的移动提供了额外的阻力。使用p-y曲线方法进行的反分析发现,对于距墙5.2直径的桩,摩擦角和k值分别为28°和41 MN / m3。这些值明显低于没有LDPE板桩的类似砾石中的其他横向载荷测试。已开发出用于解决容量减少问题的P乘数,并与测得的响应提供了合理的一致性。

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