土工合成材料加固土桥系统在静载荷下的变形响应以及基于改进灰色关系法的影响因素敏感性分析

Tiekun Peng, Yunsheng Zhu, Kaifeng Wang, Hongchao Huang
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摘要

通过数值参数研究,评估了各种参数对土工合成材料加固的土桥系统(GRS-IBS)在静荷载作用下的变形响应的影响。研究参数包括桥墩高度、钢筋间距、钢筋长度、钢筋刚度、桥梁荷载和回填土内摩擦角。改进的灰色关系法用于研究影响因素对 GRS-IBS 变形响应的敏感性。模拟结果表明,桥墩高度、钢筋间距和桥梁荷载对 GRS-IBS 的横向位移和沉降性能有显著影响,而钢筋长度、钢筋刚度和回填土内摩擦角对桥墩变形行为的影响可以忽略不计。在所有条件下,大梁和引桥之间的沉降差都很小。GRS-IBS 的潜在破坏包络线呈 "L "形结构,潜在破坏面从条形基脚内缘下方开始,垂直向下延伸至墙高的一半,并进一步向条形基脚和墙趾方向分叉。改进的灰色关系分析结果表明,钢筋间距对 GRS-IBS 的横向位移最为敏感。与其他影响因素相比,桥墩高度和桥梁荷载对桥墩变形更为敏感。这三个参数对变形行为至关重要,在设计 GRS-IBS 时应优先考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deformation Responses of a Geosynthetic Reinforced Soil-Integrated Bridge System Under Static Loading and Sensitivity Analysis of Influential Factors Based on the Improved Grey Relational Method
A numerical parametric study is conducted to evaluate the effects of various parameters on the deformation responses of a geosynthetic reinforced soil-integrated bridge system (GRS-IBS) under static load. The investigated parameters include the abutment height, reinforcement spacing, reinforcement length, reinforcement stiffness, bridge load, and backfill internal friction angle. The improved grey relational method is used to investigate the sensitivity of influential factors on the deformation responses of the GRS-IBS. The simulation results indicate that the abutment height, reinforcement spacing, and bridge load have a significant impact on the performance of the GRS-IBS with respect to lateral displacement and settlement, while the effects of reinforcement length, reinforcement stiffness, and backfill internal friction angle on the deformation behavior of the abutment are negligible. Differential settlements between the girder and approach are minimal under all conditions. The potential failure envelope of the GRS-IBS exhibits a “L” shaped configuration where the potential failure surface starts beneath the inner edge of the strip footing, extending vertically downward to half of the wall height and further bifurcating toward the strip footing and the toe of the wall. The results of the improved grey relational analysis show that reinforcement spacing is the most sensitive to the lateral displacement of the GRS-IBS. The abutment height and bridge load are more sensitive to abutment deformation than other influential factors. These three parameters are crucial to the deformation behavior and should be given primary consideration when designing a GRS-IBS.
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