基于稳定桩布置的高速铁路车速与挡土墙侧移抑制效果的相关性分析

IF 0.4 Q4 ENGINEERING, GEOLOGICAL
S. Son, J. Im, Minsu Seo, Seok-woo Hong
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引用次数: 0

摘要

在城市地区,结构被安装在地下深处的结构下部,以利用空间。因此,在建造结构时使用挡土墙来防止来自地面的土压力。由于施工技术的发展,在施工或安装挡土墙时,为了防止临时设施发生落石、滑坡等危险,开挖工程中应用挡土墙。一般来说,在堤防施工期间,在临时设施上应用挡土墙是扩建现有道路或铁路的情况。因此,有必要对挡土墙在高速铁路双线场址等路堤施工中的应用进行研究。本研究对两种常见的单排h桩挡土墙和两种IER挡土墙进行了分析,对高速铁路双线施工中应用的挡土墙的稳定性进行了分析。挡土墙是将强制桩与挡土墙墙相结合的一种边坡稳定施工方法。分析结果表明,在动荷载作用下,IER挡土墙的最大侧向位移比仅在前部安装H-plie挡土墙的最大侧向位移为19.0%。此外,高速铁路的速度越慢,发生的位移越大,在设计低速路段的地面时需要更加谨慎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Correlation between the velocity speed of High-Speed Railways and the Suppressing Effect of lateral Displacement of retaining wall according to the Arrangement of Stabilizing Piles
In urban areas, structures are installed deep underground in the lower part of the structure to utilize space. Therefore, a retaining wall is used to prevent earth pressure from the ground when constructing a structure. Due to the development of construction technology, retaining wall applied to excavation work are used to prevent danger such as falling rocks and landslides in temporary facilities when construction or retaining walls are installed. In general, the application of a retaining wall to a temporary facility during the embankment construction is the case of expanding an existing roads or railways. Therefore, it is necessary to study the retaining wall applied to the embankment construction such as the double-track site of the high-speed railway. In this study, two types of common one row H-pile retaining wall and two types of IER retaining wall were analyzed, and the stability of the retaining wall applied to the construction of double-track of the high-speed railway was analyzed. The earth retaining wall is a construction method that combines forced pile applied to the stabilization of the slope with the wall of the earth retaining wall. As a result of the analysis, the IER retaining wall had maximum lateral displacement of 19.0% compared to the type with H-plie installed only in the front while dynamic load was applied. In addition, the slower the speed of high-speed railway, the more displacement occurred, and the results show that more caution is needed when designing the ground in low-speed sections.
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