首页> 外文期刊>Geomechanics and engineering >Effects of pile geometry on bearing capacity of open-ended piles driven into sands
【24h】

Effects of pile geometry on bearing capacity of open-ended piles driven into sands

机译:桩的几何形状对开挖砂桩的承载力的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Bearing capacity of open-ended piles depends largely on inner frictional resistance, which is influenced by the degree of soil plugging. While a fully-plugged open-ended pile produces a bearing capacity similar to a closed-ended pile, fully coring (or unplugged) pile produces a much smaller bearing capacity. In general, open-ended piles are driven under partially-plugged mode. The formation of soil plug may depend on many factors, including wall thickness at the pile tip (or inner pile diameter), sleeve height of the thickened wall at the pile tip and relative density. In this paper, we studied the effects of wall thickness at the pile base and sleeve height of the thickened wall at the pile tip on bearing capacity using laboratory model tests. The tests were conducted on a medium dense sandy ground. The model piles with different tip thicknesses and sleeve heights of thickened wall at the pile tip were tested. The results were also discussed using the incremental filling ratio and plug length ratio, which are generally used to describe the degree of soil plugging. The results showed that the bearing capacity increases with tip thickness. The bearing capacity of piles of smaller sleeve length (e.g., <= 1D; D is pile outer diameter) was found to be dependent on the sleeve length, while it is independent on the sleeve length of greater than a 1D length. We also found that the soil plug height is dependent on wall thickness at the pile base. The results on the incremental filling ratio revealed that the thinner walled piles produce higher degree of soil plugging at greater penetration depths. The results also revealed that the soil plug height is dependent on sleeve length of up to 2D length and independent beyond a 2D length. The piles of a smaller sleeve length (e.g., <= 1D) produce higher degree of soil plugging at shallow penetration depths while the piles of a larger sleeve length (e.g., >= 2D) produce higher degree of soil plugging at greater penetration depths.
机译:开放式桩的承载能力在很大程度上取决于内部摩擦阻力,该阻力受土壤堵塞程度的影响。完全堵塞的开放式桩产生的承载力类似于封闭端的桩,而完全取芯(或未堵塞)的桩产生的承载力要小得多。通常,开口桩在部分插入模式下打桩。土塞的形成可能取决于许多因素,包括桩尖处的壁厚(或内桩直径),桩尖处的加厚壁的套筒高度和相对密度。在本文中,我们使用实验室模型测试研究了桩基处的壁厚和桩尖处加厚壁的套管高度对承载力的影响。测试在中等密度的沙质地面上进行。测试了具有不同尖端厚度和桩尖处加厚壁的套筒高度的模型桩。还使用增量填充率和塞子长度比(通常用于描述土壤堵塞程度)来讨论结果。结果表明,承载能力随尖端厚度的增加而增加。发现较小套筒长度的桩的承载力(例如,<= 1D; D为桩的外径)取决于套筒长度,而与大于1D长度的套筒长度无关。我们还发现,土塞高度取决于桩基的壁厚。增量填充率的结果表明,较薄的壁桩在更大的穿透深度下会产生更高程度的土壤堵塞。结果还表明,土壤塞子的高度取决于套筒长度,最长为2D,而超过2D则独立。套筒长度较小的桩(例如<= 1D)在较浅的穿透深度处产生较高的土壤堵塞程度,而套筒长度较大的桩(例如> = 2D)在较大的穿透深度处产生较高的土壤堵塞程度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号