Deformation Stability Analysis of Foundation of Taijiao High-speed Railway above the Mined-out Area Affected by Rainfall

IF 2.2 4区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Acta Montanistica Slovaca Pub Date : 2022-07-28 DOI:10.46544/ams.v27i2.20
Shuren Wang, Kunpeng Shi, Wenxue Chen, Yubo Chen, M. Rabe
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Abstract

Aiming to the requirements of potential safety risk control along the high-speed railway, taking the foundation of Taijiao high-speed railway above the mined-out area of Dianshang, China as the engineering background, a mechanical model of composite rock strata of the foundation was established based on the theory of thin plate. Combined with the catastrophe theory, the evaluation system of the foundation stability was constructed. Using the self-developed similar model test and rainfall device, the deformation stability of the foundation under the condition of heavy rainfall and dynamic loading of the high-speed railway was analyzed. Results show that the maximum influence depth of the dynamic loading and heavy rainfall on the foundation is about 20 m, and the further compaction of the foundation cracks is the main factor leading to the subsidence of the foundation above the mined-out area. In addition, the increase of the number of longitudinal tensile cracks in the foundation, which gradually plays a dominant role in the new cracks, shows an exponential growth trend. Being affected by the continuous heavy rainfall, the deformation evolution of the foundation displays four stages: the initial stabilization, the slow deformation, the first sudden-jump, and the secondary sudden-jump stages. Among them, the surface's maximum deformation occurs in the secondary sudden jump stage. The conclusions obtained in this study provide a theoretical basis for the stability evaluation and treatment of the foundation of the high-speed railway above the mined-out area.
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太焦高速铁路采空区地基受降雨影响的变形稳定性分析
针对高铁沿线安全隐患治理的要求,以滇上采空区上方的太焦高铁地基为工程背景,基于薄板理论,建立了地基复合岩层力学模型。结合突变理论,构建了地基稳定性评价体系。利用自行研制的相似模型试验和降雨装置,对高速铁路在强降雨和动荷载作用下的地基变形稳定性进行了分析。结果表明,动力荷载和强降雨对地基的最大影响深度约为20m,地基裂缝的进一步压实是导致采空区以上地基沉降的主要因素。此外,地基中纵向拉伸裂缝数量的增加,逐渐在新裂缝中起主导作用,呈现指数增长趋势。受连续强降雨影响,地基变形演化表现为四个阶段:初始稳定阶段、缓慢变形阶段、第一次突变阶段和第二次突变阶段。其中,地表最大变形发生在二次突变阶段。研究结论为采空区上方高速铁路地基的稳定性评价和处理提供了理论依据。
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来源期刊
Acta Montanistica Slovaca
Acta Montanistica Slovaca 地学-地球科学综合
CiteScore
3.60
自引率
12.50%
发文量
60
审稿时长
30 weeks
期刊介绍: Acta Montanistica Slovaca publishes high quality articles on basic and applied research in the following fields: geology and geological survey; mining; Earth resources; underground engineering and geotechnics; mining mechanization, mining transport, deep hole drilling; ecotechnology and mineralurgy; process control, automation and applied informatics in raw materials extraction, utilization and processing; other similar fields. Acta Montanistica Slovaca is the only scientific journal of this kind in Central, Eastern and South Eastern Europe. The submitted manuscripts should contribute significantly to the international literature, even if the focus can be regional. Manuscripts should cite the extant and relevant international literature, should clearly state what the wider contribution is (e.g. a novel discovery, application of a new technique or methodology, application of an existing methodology to a new problem), and should discuss the importance of the work in the international context.
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