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首页> 外文期刊>International journal of geomechanics >Undrained Bearing Capacity Factor N_c for Ring Foundations in Cohesive Soil
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Undrained Bearing Capacity Factor N_c for Ring Foundations in Cohesive Soil

机译:粘性土壤中环基基础的未润湿的承载力因子N_C

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摘要

A ring foundation is a cost-effective circular beam foundation that is used to support tall and heavy circular onshore industrial structures, such as chimneys, cooling towers, storage tanks, and silos as well as offshore structures, such as wind turbines, and annular platforms. Compared with circular footings, ring foundations are more suitable and economical because they use less construction material. This study focuses on obtaining an undrained capacity for a ring foundation. A parametric finite element (FE) analysis will be carried out for circular and ring footings to evaluate the bearing capacity factors (N-c), which could be used by practicing engineers when designing foundations for onshore and offshore circular structures in cohesive soil. Variations in the geometry of ring foundation such that the ratio of inner to outer radius (R-i/R-o) was 0.2, 0.4, 0.6, and 0.8, the footing side roughness factors (alpha) of 0.2, 0.5, and 1, the foundation embedment depths (D/B) of 0, 0.25, 0.5, and 1 and the linearly increasing soil heterogeneity (kB/S-u) of 0, 2, 5, 10, and 30 will be considered in this study. The results show variations of N-c with the varying R-i/R-o, roughness coefficient, embedment depth, and increasing shear strength of the soil. Based on the results of the analyses, a simplified equation is proposed using dimensional analysis to evaluate the undrained bearing capacity of a ring foundation. From the sensitivity analysis, the undrained shear strength of the soil was the most significant parameter followed by footing side roughness factor and R-i/R-o ratio in the evaluation of undrained bearing capacity.
机译:环基是一种经济高效的圆形梁基础,用于支持高大和重型圆形的陆上工业结构,如烟囱,冷却塔,储罐以及孤岛以及风力涡轮机和环形平台等近海结构。与圆形脚踏相比,环基础更适合和经济,因为它们使用较少的建筑材料。本研究重点是获得戒指基础的不推断的能力。将对圆形和环形基础进行参数化有限元(FE)分析,以评估轴承容量因子(N-C),这些因素(N-C)可以通过练习工程师在设计陆上和海上循环结构的基础时使用。环形基础几何形状的变化,使得内半径(Ri / Ro)的比例为0.2,0.4,0.6和0.8,脚踏侧粗糙度因子(α)为0.2,0.5和1,基础嵌入在本研究中,将考虑0,0.25,0.5和1的深度(D / B)和线性增加的土壤异质性(Kb / su),在该研究中将被考虑为0,2,5,10和30。结果显示了N-C的变化,具有不同的R-I / R-O,粗糙系数,嵌入深度和土壤剪切强度的变化。基于分析结果,使用尺寸分析提出了一种简化的等式,以评估环基的不介的承载力。从敏感性分析中,土壤的不介绍剪切强度是最重要的参数,然后是侧侧粗糙度因子和R-I / R-O比率在评估不受约束的承载力。

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