首页> 外文期刊>Computers and Geotechnics >Stress transfer mechanisms and settlement of a floating pile due to adjacent multi-propped deep excavation in dry sand
【24h】

Stress transfer mechanisms and settlement of a floating pile due to adjacent multi-propped deep excavation in dry sand

机译:干燥砂土中相邻多支撑深基坑开挖引起的浮桩应力传递机理与沉降

获取原文
获取原文并翻译 | 示例

摘要

Three-dimensional numerical parametric study is conducted to investigate stress transfer mechanisms and settlement of a floating pile due to multi-propped basement excavation by using hypoplastic sand model. Centrifuge test results are adopted to validate the soil model and model parameters. Effects of excavation depth, pile location with respect to basement, working load, sand density and support system stiffness are examined. Downward and upward load transfer mechanisms are observed at different excavation stages, depending on the ratio of excavation depth (H-e) to pile length (L-u). If excavation-induced reduction of shaft and base resistances are ignored, the pile settlement is underestimated by up to 39%. Negligible pile head settlements are observed when the pile is located at a distance exceeding 2.5 H-e (excavation depth) from the retaining wall. Basement excavation-induced pile settlement is doubled when the designed factor of safety of pile before excavation reduces from 3.0 to 1.5. By increasing the relative sand density 30-90%, the pile settlement decreases by up to 66%. Excavation-induced pile head settlement is almost insensitive to support system stiffness for shallow excavation (H-e/L-P < 0.4).
机译:利用增塑砂模型进行了三维数值参数研究,研究了多支撑地下室开挖引起的浮桩的应力传递机理和沉降。采用离心机测试结果验证土壤模型和模型参数。研究了开挖深度,相对于地下室的桩位置,工作载荷,砂密度和支撑系统刚度的影响。根据开挖深度(H-e)与桩长(L-u)之比,在不同的开挖阶段观察到了向下和向上的荷载传递机制。如果忽略了开挖引起的竖井和基础阻力的减小,则桩沉降被低估了39%。当桩距挡土墙的距离超过2.5 H-e(开挖深度)时,观察到的桩头沉降可忽略不计。当开挖前桩的设计安全系数从3.0降低到1.5时,地下室开挖引起的桩沉降增加了一倍。通过将相对沙子密度增加30-90%,桩沉降将减少多达66%。开挖引起的桩头沉降几乎对浅埋支护的支撑系统刚度不敏感(H-e / L-P <0.4)。

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