Parametric Analysis of Buckling Stability of Extra-long Pile Based on Energy Method

YANG Song, ZHANG Li, LI Li-chen, ZHANG Jing-kun, LIANG Rong-zhu, WU Wen-bing

Journal of Changjiang River Scientific Research Institute ›› 2019, Vol. 36 ›› Issue (5) : 91-98.

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Journal of Changjiang River Scientific Research Institute ›› 2019, Vol. 36 ›› Issue (5) : 91-98. DOI: 10.11988/ckyyb.20171405
ROCK-SOIL ENGINEERING

Parametric Analysis of Buckling Stability of Extra-long Pile Based on Energy Method

  • YANG Song1,2, ZHANG Li1,2, LI Li-chen1,2, ZHANG Jing-kun1,2, LIANG Rong-zhu1,2, WU Wen-bing1,2,3,4,5
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Abstract

The buckling stability of extra-long pile which has been increasingly used in high-rise buildings has emerged as a crucial engineering issue. In this research, the formula of critical buckling load of extra-long pile is acquired via energy approach by establishing a model in which the soil resistance is calculated by combining the C method and the constant number method. The self-weight together with side frictional resistance of pile is taking into consideration. Furthermore, the impacts of influential factors on the buckling stability are examined. Results reveal that the influences of unit side friction and self-weight of extra-pile are negligible. The more the number of flexural function items and the smaller the soil resistance, the smaller the buckling critical load is; the larger the pile length and diameter, the larger the buckling critical load is; and the larger the ground soil proportion coefficient, the greater the critical buckling load is. Therefore, in terms of the buckling stability of extra-long pile, large-size extra-long piles have the greatest performance against buckling failure when applied to hard foundations.

Key words

extra-long pile / energy method / critical buckling load / side soil property / pile property

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YANG Song, ZHANG Li, LI Li-chen, ZHANG Jing-kun, LIANG Rong-zhu, WU Wen-bing. Parametric Analysis of Buckling Stability of Extra-long Pile Based on Energy Method[J]. Journal of Changjiang River Scientific Research Institute. 2019, 36(5): 91-98 https://doi.org/10.11988/ckyyb.20171405

References

[1] 柴红涛, 文松霖. 水平竖直组合荷载作用下桩基承载特性的离心模型试验研究. 长江科学院院报, 2013, 30(12):87-90.
[2] 张 骞, 李术才, 张乾青, 等. 软土地区超长单桩承载特性的现场试验研究. 岩土工程学报, 2013, 35(增2):1066-1070.
[3] 胡 念, 高 睿, 曾亚武. 超长嵌岩钻孔灌注群桩承载特征与受力机理研究. 长江科学院院报, 2008, 25(5):162-165.
[4] 王孝兵, 文松霖. 倾斜荷载下大直径长桩的承载特性研究. 长江科学院院报, 2012, 29(3):45-49.
[5] DAVISSON M T, ROBINSON K E. Bending and Buckling of Partially Embedded Piles∥Proceedings of the 6th International Conference on Soil Mechanics and Foundation Engineering. Montreal, September 8-15, 1965, 2: 343-346.
[6] REDDY A S, VALSANGKAR A J. Buckling of Fully and Partially Embedded Piles. Journal of Soil Mechanics and Foundation, Division ASCE, 1970, 96(6): 1951-1965.
[7] 胡人礼. 关于桥梁基桩采用m法计算土壤弹性抗力的几个问题. 铁路标准设计通讯, 1973,(1): 20-28.
[8] 沪煤工. 端部嵌固桩的计算长度. 铁路标准设计通讯, 1974, (5): 30-32,55.
[9] 沪煤工. 桩顶转角受约束的基桩的计算长度. 铁路标准设计通讯, 1977,(增1): 16-19.
[10] 赵明华,王季柏. 基桩计入摩阻力的屈曲分析. 岩土工程学报, 1996, 18(3): 87-90.
[11] 王 成,董 倩. 超长桩稳定承载力计算新方法. 岩土力学, 2005, 26(增1): 180-182.
[12] 姚文娟,仇元忠,程泽坤. 超长嵌岩桩初始后屈曲性状分析. 岩土工程学报, 2009, 31(5): 738-742.
[13] 姚文娟,傅祥卿,仇元忠.超长桩的屈曲荷载计算. 地下空间与工程学报, 2009, 5(3): 463-467,562.
[14] 周淑芬, 李晓红, 王 成. 考虑桩侧土抗力时超长桩的临界荷载计算. 地下空间与工程学报, 2005, 1(6):882-884.
[15] 刘礼标, 王 成. 考虑桩侧双线性土抗力时长桩临界荷载计算. 岩土力学, 2007,28(增刊1):927-930.
[16] 李传勋,刘晓钊,吴文兵. 考虑桩自重及侧摩阻力影响的超长桩屈曲分析.江苏大学学报(自然科学版),2016, 37(6):719-723,729.
[17] 李 威,张妮娜. 承台桩基屈曲荷载计算分析. 工程技术,2013,(1):53-54.
[18] 唐文栋,刘晓钊. 考虑桩身自重影响的超长桩屈曲分析. 安徽建筑大学学报,2016, 24(6): 39-42.
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