基于材料点法模拟冲刷诱发的土岩混合滑坡的滑出特征

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Civil Engineering Pub Date : 2024-02-08 DOI:10.1155/2024/6255431
Yi Zhang, Fan Zhang, Qingbo Yi, Guanzhu Jiang, Juncheng Xie
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引用次数: 0

摘要

在斜坡上施加附加荷载是一种普遍的工程做法,它可能会引发滑坡,对建筑的完整性和安全性构成重大风险。本研究阐明了附加荷载对土石混合斜坡的影响,并将其响应与纯土斜坡在类似荷载条件下的响应进行了对比。本研究对破坏表现进行了调查,量化了塑性区的分布、斜坡在特征阶段的形态变化、监测点的滑移速度动态以及滑坡冲出的范围。由于材料点法在模拟大变形情况方面的熟练程度,本研究采用了材料点法。利用数字图像处理技术,精心制作了具有代表性的土石混合边坡和纯土边坡的二维模型。比较了混合土质边坡和纯土质边坡所表现出的不同破坏特征。对比评估阐明了不同斜坡的不同破坏模式,加深了对不同附加荷载强度下斜坡行为的理解,有助于斜坡稳定性评估方面的讨论。
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Material Point Method-Based Simulation of Run-Out Characteristics for a Soil–Rock Mixed Landslide Induced by Surcharge
Surcharge loading on slopes is a prevalent engineering practice that can precipitate landslides, posing significant risks to construction integrity and safety. This study elucidates the impact of surcharge loading on mixed soil–rock slopes and benchmarks their response against that of pure soil slopes under analogous loading conditions. Investigating damage manifestations, this research quantifies the distribution of plastic zones, the morphological alterations of slopes at characteristic stages, the dynamics of slip velocity at monitoring points, and the extent of landslide run-out. The material point method is adopted for its proficiency in simulating large deformation scenarios. Two-dimensional models of a representative soil–rock mixed slope and a pure soil slope are meticulously crafted using digital image processing techniques. The distinct damage profiles exhibited by the mixed and pure soil slopes are compared. The comparative assessment elucidates the distinct damage patterns of different slopes, enhancing the understanding of their behavior under variable surcharge intensities and contributing to the discourse on slope stability assessments.
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来源期刊
Advances in Civil Engineering
Advances in Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
4.00
自引率
5.60%
发文量
612
审稿时长
15 weeks
期刊介绍: Advances in Civil Engineering publishes papers in all areas of civil engineering. The journal welcomes submissions across a range of disciplines, and publishes both theoretical and practical studies. Contributions from academia and from industry are equally encouraged. Subject areas include (but are by no means limited to): -Structural mechanics and engineering- Structural design and construction management- Structural analysis and computational mechanics- Construction technology and implementation- Construction materials design and engineering- Highway and transport engineering- Bridge and tunnel engineering- Municipal and urban engineering- Coastal, harbour and offshore engineering-- Geotechnical and earthquake engineering Engineering for water, waste, energy, and environmental applications- Hydraulic engineering and fluid mechanics- Surveying, monitoring, and control systems in construction- Health and safety in a civil engineering setting. Advances in Civil Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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