院报 ›› 2016, Vol. 33 ›› Issue (10): 106-110.DOI: 10.11988/ckyyb.20150669

• 岩土工程 • 上一篇    下一篇

悬臂桩嵌固深度和桩前基岩阻滑宽度研究

赵庆远   

  1. 辽宁省交通规划设计院有限责任公司, 沈阳 110166
  • 收稿日期:2015-08-10 出版日期:2016-10-20 发布日期:2016-10-17
  • 作者简介:赵庆远(1986-),男,河南周口人,工程师,硕士,主要从事岩土体的稳定性评价与防治设计,(电话)024-83738622(电子信箱)zhaoqy6891@126.com。

Embedded Depth of Cantilever Pile and Width of Anti-slide Rock Mass in Front of Cantilever Pile

ZHAO Qing-yuan   

  1. Liaoning Provincial Communication Planning &
    Design Institute, Shenyang 110166, China
  • Received:2015-08-10 Online:2016-10-20 Published:2016-10-17

摘要: 限于场地原因,需对悬臂桩桩前基岩超深开挖,且仅留有一定宽度的阻滑岩体,导致了阻滑岩体能否保证悬臂桩安全有效的问题。以岳阳滑坡悬臂桩桩前嵌固段岩体为研究对象,建立了桩前基岩的计算模型,探讨了不同嵌固深度下的安全阻滑宽度,并结合数据拟合方法建立了两者之间的函数关系。结果表明嵌固深度越大,安全阻滑宽度越小,两者之间呈幂函数关系,其关系式为hr=16.905 1B-0.754 0,并提出了岳阳滑坡最优的设计参数为嵌固深度6.24 m、阻滑宽度3.75 m。研究结果可为此类工程设计提供一定的理论指导和借鉴意义。

关键词: 悬臂桩, 桩前开挖, 嵌固岩体, 嵌固深度, 桩前基岩阻滑宽度

Abstract: Due to spatial limitations, deep excavation of bedrock in front of cantilever pile is needed; besides, a limited width of anti-slide rock is available, which leads to the problem whether the anti-slide rock could guarantee the safety of the cantilever pile. The safe width of anti-slide rock to ensure stability under different embedded depths are discussed through building a computational model of bedrock in front of the pile, and the functional relationship between the width of anti-slide rock and the embedded depth is established with data fitting method. The embedded rock in front of the cantilever pile of a landslide in Yueyang is taken as a case study. Results show that the greater the embedded depth, the smaller the needed width of anti-slide rock to ensure the stability, and they are in a power function relationship hr=16.905 1B-0.754 0. Furthermore, the optimal design parameters of Yueyang landslide is: embedded depth 6.24 m, and width of anti-slide 3.75 m. The results could provide a theoretical guidance and reference for such projects.

Key words: cantilever pile, excavation in front of pile, embedded rock mass, embedded depth, width of anti-slide rock mass in front of cantilever pile

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