首页> 外文会议>Association of State Dam Safety Officials Annual Conference >Design and Construction of the Upstream Geomembrane Facing System For the San Vicente RCC Dam Raise
【24h】

Design and Construction of the Upstream Geomembrane Facing System For the San Vicente RCC Dam Raise

机译:SAN VICENTE RCC坝升升近地磨机面向地坪系统的设计与施工

获取原文

摘要

The San Vicente Dam Raise (SVDR) Project for the San Diego County Water Authority (SDCWA) is the highest dam raise in the world using roller compacted concrete (RCC). The dam was originally built by the City of San Diego to a height of 220 feet (67m), between 1941 to 1943, as a key water supply reservoir. The 117 foot (36m) high RCC raise will make the new height of the dam 337 feet (103 m), resulting in a 152,000 AF (187,489,239 m~3) increase in reservoir storage capacity. The 117 foot (36m) raise was accomplished with a placement of more than 600,000 cubic yards (459,000 m~3) of RCC. The primary design objective is for the dam to survive a large seismic event, remaining fully operational to provide an emergency supply of water to the San Diego region. To meet this objective, designers selected a flexible exposed PVC geomembrane system for installation over the raised portion of the upstream face of the dam as one of its principal design features. The exposed geomembrane liner includes an integral drainage system between the exposed PVC membrane and the concrete face of the dam. The geomembrane liner and integral drainage layer act as a seepage barrier to the RCC at the upstream face, eliminating the need for internal formed drains and waterstops at contraction joints in the raised portion of the dam. The elimination of formed internal drains and contraction joint waterstops simplified construction and saved construction costs. The drainage system of the exposed geomembrane liner is connected to the original dam's drainage system, so that any seepage water would be collected in the drainage gallery for monitoring. With this system, any damage to the exposed liner system would be evident and can be repaired. The dam is designed to remain stable in case of any damage to the exposed geomembrane liner system. This paper discusses the selection, design, and construction of the upstream facing system for the SVDR. This represents the world's first geomembrane facing system ever installed on a RCC dam raise. The selection process included evaluating 7 different upstream facing systems that have been used worldwide for RCC dams. The exposed geomembrane system was determined to be the highest rated upstream facing system based on a number of criteria, including seismic survivability, seepage control, constructability, appearance, durability and cost. Of particular importance for the SDCWA was the excellent performance of the same PVC geomembrane system installed on SDCWA's Olivenhain Dam in 2003. The paper also includes a discussion of the performance of Olivenhain Dam's upstream geomembrane system and its precedence for again selecting the exposed PVC geomembrane system for the SVDR Project.
机译:San Diego County Water Datain(SDCWA)的San Vicente大坝提升(SVDR)项目是使用滚子压实混凝土(RCC)在世界上提升的最高水坝。该大坝最初由圣地亚哥市建造,高度为220英尺(67米),于1941年至1943年,作为一个关键的供水水库。 117英尺(36米)高RCC升高将使水坝的新高度为337英尺(103米),导致储层储存能力增加152,000 AF(187,489,239 m〜3)。通过放置超过60,000立方码(459,000m〜3)的RCC,完成117英尺(36米)的饲养。主要设计目标是为大坝生存在大型地震事件中,仍然完全运作,为圣地亚哥区域提供紧急供水。为了满足此目标,设计人员选择了一种灵活的暴露PVC地质晶体系统,用于安装在大坝上游面的凸起部分作为其主要设计特征之一。暴露的土工膜衬垫包括暴露的PVC膜和坝的混凝土面之间的整体排水系统。地膜衬垫和整体排水层充当上游面上RCC的渗流障碍,消除了坝中凸起部分中的收缩接头处的内部形成的排水管和Waterstops。消除形成的内部排水和收缩联合Waterstops简化了施工和节省的施工成本。暴露的土工膜衬里的排水系统连接到原始水坝的排水系统,从而将任何渗水水收集在排水库中进行监控。通过该系统,对暴露的衬里系统的任何损坏都很明显,可以修复。该坝设计用于对暴露的土工膜衬里系统造成任何损坏的情况下保持稳定。本文讨论了SVDR上游朝向系统的选择,设计和构造。这代表了世界上第一个在RCC坝升上安装的地形面朝设计系统。选择过程包括评估全球用于RCC水坝的7种不同的上游面向系统。将暴露的土工膜系统确定为基于许多标准的最高额定的上游面向系统,包括地震生存性,渗流控制,施加性,外观,耐用性和成本。 SDCWA特别重要是在2003年在SDCWA奥诺旺大坝上安装了同一PVC地理膜系统的优秀表现。本文还包括奥冬水坝的上游地产造型系统的性能及其优先选择暴露的PVC地质泛汉系统对于SVDR项目。

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