基于荷载传递机制的软土复合地基底层沉降计算方法

IF 1.1 Q3 ENGINEERING, CIVIL Archives of Civil Engineering Pub Date : 2024-03-29 DOI:10.24425/ace.2024.148927
Yaoting Xiao, Jing Wang
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引用次数: 0

摘要

软土地区土的力学性能较差,复合地基中下层的沉降占总沉降量的很大比例。目前,大部分研究都集中在加固区的沉降,而下卧层的沉降研究对于软土复合地基的沉降具有重要意义。本文分析了土和桩在荷载传递模式上的差异,基于 Boussinesq 解法和 Mindlin 解法,提出了软硬桩复合地基中底层应力和沉降的计算方法。柔性桩复合地基中土与桩的相对位移较小,负摩擦力可以忽略,但应考虑有效桩长的影响。刚性桩复合地基中土与桩的相对位移较大,应考虑负摩擦力。土的部分顶应力通过负摩擦力传递给桩,然后桩的轴向力通过正摩擦力传递回土。在沉降计算中,除有效桩长外,还应考虑负摩擦力引起的应力传递路径的变化。
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Method of settlement calculation for underlying layer of soft soil composite foundation based on load transfer mechanism
The mechanical properties of soil in soft soil area are poor, and the settlement of the underlying layer in the composite foundation accounts for a large proportion of the total settlement. At present, most of the research focuses on the settlement of the reinforced area, and the research on the settlement of the underlying layer is of great significance for the settlement of soft soil composite foundation. The differences in load transfer modes of soil and pile are analyzed, and based on the Boussinesq solution and Mindlin solution, a calculation method for the stress and settlement of the underlying layer in flexible and rigid pile composite foundation is proposed. The relative displacement of soil and pile in flexible pile composite foundation is small, and the negative friction can be ignored, but the influence of effective pile length should be considered. The relative displacement of soil and pile in rigid pile composite foundation is large, so the negative friction should be considered. Part of soil top stress is transmitted to the pile via negative friction, and then the pile axial force is transmitted back to the soil via positive friction. In addition to effective pile length, the change of stress transfer path caused by negative friction should also be considered in settlement calculation.
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来源期刊
Archives of Civil Engineering
Archives of Civil Engineering ENGINEERING, CIVIL-
CiteScore
1.50
自引率
28.60%
发文量
0
审稿时长
24 weeks
期刊介绍: ARCHIVES OF CIVIL ENGINEERING publish original papers of the theoretical, experimental, numerical and practical nature in the fields of structural mechanics, soil mechanics and foundations engineering, concrete, metal, timber and composite polymer structures, hydrotechnical structures, roads, railways and bridges, building services, building physics, management in construction, production of construction materials, construction of civil engineering structures, education of civil engineers.
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