石柱加固软土上的堤坝行为

IF 0.6 Q4 ENGINEERING, CIVIL
T. A. Wassie, Gökhan Demir
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引用次数: 0

摘要

摘要 用排水性好、承载力强的材料加固软土是路堤建设中的常见做法。石柱是一种颗粒材料,由于其排水能力强,可加速固结沉降。本研究旨在探讨石柱加固软土路堤的行为。该路堤采用 Plaxis 二维有限元法进行分析。使用平面应变转换方法将石柱转换为等效墙体。该方法与之前研究的现场测量结果进行了验证,结果显示两者吻合良好。研究结果表明,石柱大大减少了变形,改善了固结。例如,在 10%和 20%的面积替代率下,极限沉降分别从 54.3 毫米降至 33.1 毫米。安全分析证实,基底土工合成材料对路堤的稳定性做出了重大贡献。此外,所有施工阶段的安全系数值都有所提高,施工结束时的总体安全系数也有所提高。石柱和基底土工格栅加固软土可以减少沉降,提高路堤的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior of an Embankment on Stone Column-Reinforced Soft Soil
Abstract Reinforcing soft soils with good drainage and load-bearing material is a common practice in the construction of embankments. Stone columns are among the granular materials that accelerate consolidation settlements due to their high drainage capacities. This study aims to investigate the behavior of an embankment on stone column-reinforced soft soil. The embankment was analyzed using the Plaxis 2D Finite Element Method. The columns were converted into equivalent walls using the plane strain conversion method. This method was validated with field measurement results from previous studies and showed good agreement. According to the research findings, stone columns significantly reduced deformations and improved consolidation. For instance, the ultimate settlement was decreased from 54.3 mm to 33.1 mm for 10% and 20% area replacement ratios, respectively. As the safety analysis verified, basal geosynthetics contributed substantially to the embankment’s stability. Furthermore, the safety factor values increased for all stages of the construction, and the global safety factor increased at the end of the construction. Stone columns and basal geogrid-reinforced soft soil can reduce settlement and increase the stability of an embankment.
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