首页> 外文会议>International congress and exhibition on sustainable civil infrastructures >A Full Scale Field Study: Evaluation of the Magnitude and Time Extent of Excess Pore Water Pressure During the Installation of Auger Pressure Grouted Displacement Piles in Downtown Orlando
【24h】

A Full Scale Field Study: Evaluation of the Magnitude and Time Extent of Excess Pore Water Pressure During the Installation of Auger Pressure Grouted Displacement Piles in Downtown Orlando

机译:全规模田间研究:评估在奥兰多市中心安装螺旋钻压力灌浆位移桩时过量孔隙水压的幅度和时间范围

获取原文

摘要

Central Florida's economy is growing strong and diverse, with that, comes taller structures, hotels, resorts, amusement structures, and public venues. Augered-Pressure-Grouted-Displacement (APGD) piles increasingly became the deep foundation of choice for heavily loaded structures in Downtown Orlando. The combination of favorable subsoil conditions, quick installation, superior skin friction, and minimal drilling spoil made APGD piles very attractive option especially where contaminated soils are encountered. The installation of the APGD piles causes instant increase in pore water pressure at the annulus of the drilled hole during drilling and grouting stages. The subsoil conditions in Downtown Orlando include a unique layer of silty to clayey sands and sandy clays, which exhibits high excess pore pressure during the installation of APGD piles. Piles installed in close proximity to a freshly grouted pile might cause squeezing and occasional grout outflow triggering potential necking. During the installation of 18-inch diameter 80-feet APGD piles for a 23-story mixed-use building in Downtown Orlando, grout outflow was observed when piles were installed closer than 15 ft of a freshly grouted pile. A field study was conducted to evaluate the magnitude and extent of excess pore water pressure during both drilling and grouting stages of APGD piles. Five piezometers were installed between two 60 ft apart piles to depths of 50 to 60 ft with screened section within the clayey soil. Water pressure probes were installed and data was continuously collected. The study showed sharp increase in pore water pressure during drilling and grouting stages. However, the increase in pore pressure was significantly lower than the estimated critical pore pressure needed to cause pile necking. A typical distance of 20 times the pile diameter should be considered for the next pile in the vicinity of a freshly installed pile to completely avoid the potential for pile communication problems in Downtown Orlando.
机译:中央佛罗里达州的经济正在增长强大,不同,具有更高的结构,酒店,度假村,娱乐结构和公共场所。突出压力 - 灌浆 - 位移(APGD)桩越来越多地成为奥兰多市中心大量装载结构的深层选择。有利的底土条件的组合,快速安装,卓越的皮肤摩擦和最小的钻井弃土制成的APGD桩特别有吸引力的选择,特别是在遇到受污染的土壤。在钻孔和灌浆阶段期间,APGD桩的安装在钻孔环的环形空间中导致孔隙水压力增加。奥兰多市中心的底土条件包括克莱伊砂和砂质粘土的独特粉质层,在安装APGD桩时表现出高度过剩的孔隙压力。安装在靠近一个新灌浆桩的桩可能导致挤压和偶尔的灌浆流出触发潜在颈缩。在奥兰多市中心的23层混合用途建筑物的安装18英寸直径80英尺APGD桩中,当桩安装比新灌浆桩的15英尺高的堆积时,观察到泥浆流出。进行了一个田间研究以评估APGD桩的钻孔和灌浆阶段的过度孔隙水压力的幅度和程度。在粘土土壤中的筛分部分,五个压力仪安装在两个60ft分开的桩中,以50至60英尺的深度为50至60英尺。安装了水压探针,持续收集数据。该研究表明钻井和灌浆阶段的孔隙水压力急剧增加。然而,孔隙压力的增加显着低于引起桩颈部所需的估计临界孔隙压力。对于新安装的堆附近的下一个桩应考虑桩直径的典型距离,以完全避免奥兰多市中心的桩通信问题潜力。

著录项

相似文献

  • 外文文献
  • 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