首页> 外文会议>Deep Foundations Institute annual conference on Deep Foundations >CONSTRUCTION OF A VERY FLEXIBLE, IMPERMEABLE, BITUMINOUS MEMBRANE SEEPAGE BARRIER, TO CONNECT AN EXISTING CONCRETE DAM STRUCTURE TO A NEWLY CONSTRUCTED ABUTMENT CUT-OFF WALL
【24h】

CONSTRUCTION OF A VERY FLEXIBLE, IMPERMEABLE, BITUMINOUS MEMBRANE SEEPAGE BARRIER, TO CONNECT AN EXISTING CONCRETE DAM STRUCTURE TO A NEWLY CONSTRUCTED ABUTMENT CUT-OFF WALL

机译:构造一种非常灵活,不可渗透的,有毒的膜渗透屏障,以将现有的混凝土坝结构连接到新构造的止流墙上

获取原文

摘要

Ruskin Dam, located near Mission, British Columbia, was constructed in 1929 and 1930 and comprises of a concrete gravity dam structure founded on bedrock. At the right abutment, which consists mostly of dense to very dense sands and silt, the dam abuts against overburden soils, and connects to a cutoff wall system consisting of sloping concrete slabs. Significant seepage and piping issues were encountered during first filling of the reservoir in 1930. In 2012, BC Hydro, the owner of the dam, awarded a contract for the construction of seepage control measures at the right abutment, including construction of a plastic concrete cut-off wall extending upstream of the dam, a plastic concrete seepage training wall extending downstream of the dam, tie-in of the new cutoff wall to the dam, consisting of jet grouting of the soils adjacent to the dam to allow for the construction of the special cutoff connecting the cutoff wall to the dam, and construction of additional jet-grouting ground improvement downstream of the dam. Integral to the upgrade was the requirement for the special tie-in cutoff wall, consisting of a highly flexible, impermeable membrane to connect the concrete dam to the new, 1 m thick plastic concrete cutoff wall. The tie-in extends vertically into bedrock through the dam and jet grout columns constructed adjacent and beneath the overhanging portion of the dam at the right abutment. The membrane is required to survive the anticipated earthquake induced deformation between the dam and the abutment soils. This paper describes the processes used to develop a material suitable to meet the specified flexibility and permeability criteria, as well as the innovative construction techniques utilized to construct the slot and place the bituminous material within it. The final dimensions of the slot were in the order of 7 m long by 25 m deep by 0.17 m wide. The bituminous material was placed under a head of water which was required to maintain stability of the slot, and was placed at temperatures in excess of 120 degrees Celsius.
机译:拉斯金水坝位于不列颠哥伦比亚省米申附近,建于1929年和1930年,由位于基岩上的混凝土重力坝构成。在主要由密集到非常稠密的沙子和淤泥组成的右桥台上,大坝紧靠覆盖土,并连接到由倾斜混凝土板组成的防渗墙系统。在1930年首次充水水库时遇到了严重的渗漏和管道问题。2012年,大坝的所有者BC Hydro赢得了在右岸建造防渗措施的合同,其中包括塑料混凝土切面的建造。在大坝上游延伸的防渗墙,在大坝下游延伸的塑性混凝土防渗训练墙,新的防渗墙与大坝的连接,包括对大坝附近土壤的射流灌浆,以便建造将截流墙连接到大坝的特殊截流孔,以及在大坝下游建造额外的喷射灌浆地面的改进措施。对升级的整体要求是需要特殊的连接式防渗墙,该墙由高柔韧性,不可渗透的膜组成,用于将混凝土大坝连接到新的1 m厚的塑料混凝土防渗墙。搭接件通过坝和在右侧桥台的坝的悬垂部分附近和下方构造的射流灌浆柱垂直延伸到基岩中。需要膜来抵抗预期的地震引起的大坝和基台土壤之间的变形。本文介绍了用于开发适合于指定柔韧性和渗透性标准的材料的过程,以及用于构造缝隙并将沥青材料放置在缝隙中的创新构造技术。缝隙的最终尺寸约为7m长,25m深,0.17m宽。将沥青材料放在保持槽口稳定性所需的水头下方,并置于超过120摄氏度的温度下。

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