首页> 外文期刊>Geoenvironmental Disasters >The deformation of retaining piles and ground surface under various support systems during deep excavation
【24h】

The deformation of retaining piles and ground surface under various support systems during deep excavation

机译:深基坑开挖过程中各种支护体系下挡土桩和地表的变形

获取原文
       

摘要

Background Since the high-rise buildings and deep underground structures dramatically increases in urban area, the decent design and construction of deep excavations is essential before these structures are actually built up. The building area is very susceptible to the changes of their geo-environment, and even minor insecurity of a deep excavation may lead to a catastrophic failure of structures and deformation of the ground. Therefore, the adverse influence of deep excavation on the surrounding environment should be monitored and controlled stringently. Results Based on the real case of deep excavation in Xuzhou, China, a FDM numerical model, which was accomplished by FLAC-3D, was developed to evaluate the deformation of retaining piles and ground surface under various excavation support systems. The original pile-anchor support system was simulated as well as the proposed quincunx double-row piles support system. For the original support system, the deformations were discussed by comparing the numerical results with monitoring data. For the proposed support system, orthogonal tests were designed to evaluate the influence of multiple factors on the effectiveness of excavation support. The optimum solution for the proposed support system was obtained through orthogonal tests. Conclusion Results show that the pile space is the primary factor for the excavation-induced deformations, which can be reflected by the lateral displacement of retaining piles and the settlement around the excavation, while the row space has insignificant influence on the deformations. The conclusions of this paper can contribute to the design of similar projects and avoid excessive deformation of the ground during excavation in the future.
机译:背景技术由于高层建筑和地下深层结构在城市中的数量急剧增加,因此在实际建造这些结构之前,进行深挖的合理设计和施工至关重要。建筑区域非常容易受到其地质环境变化的影响,即使是很小的不安全的深基坑开挖,也可能导致结构的灾难性破坏和地面变形。因此,应严格监控深基坑对周围环境的不利影响。结果基于徐州深基坑工程的实际情况,建立了用FLAC-3D建立的FDM数值模型,以评估在各种基坑支护系统下挡土桩和地表的变形。模拟了原始的桩锚支撑系统以及拟议的梅花形双排桩支撑系统。对于原始支撑系统,通过将数值结果与监测数据进行比较来讨论变形。对于拟议的支撑系统,设计了正交试验来评估多个因素对基坑支撑有效性的影响。通过正交试验获得了所提出的支撑系统的最佳解决方案。结论结果表明,桩距是引起开挖变形的主要因素,这可以通过挡土桩的侧向位移和基坑周围的沉降来反映,而行距对变形的影响很小。本文的结论可为类似工程的设计做出贡献,并避免将来在开挖过程中地面过度变形。

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