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GROUTED COFFERDAM FOR AN INTAKE STRUCTURE IN MIXED ROCK AND GRAVEL ENVIRONMENT

机译:岩石和砾石混合环境下入口结构的灌浆Cofferdam

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The Ilijan Power Plant is located in the island of Luzon in Philippines. Washington Group is the Engineering, Procure, and Construct (EPC) Contractor with Daelim as the Civil Sub-contractor. The cofferdam for the intake structure had dimensions of 36m x 30m and extended 9.0m below the ground water level. The subsurface conditions at the site are very complex and highly variable. Three alternating layers of dense cemented conglomerate and highly permeable open structured gravel/cobbles were encountered at the intake structure location. An order of magnitude permeability of 1 x10~(-10) cm/sec was estimated by simple pump tests from a large test pit at the site. The intake structure is about fifty meters (50m) from the Pacific Ocean thus excluding de-watering as a solution for construction. The paper describes details of subsurface conditions, the intake structure and various alternates considered for construction of a cofferdam. Schedule, reliability of the proposed solution and cost were the driving factors in the selection process with the first two being the higher priority. The selected solution had redundancy and recovery schemes planned to address unanticipated subsurface conditions and to assure timely completion of the intake structure as planned. The selected solution utilized steel sheet piles, jet grouted columns, soil anchors, and cement- sodium silicate grout mixture as a bottom seal plug placed at a significant distance below the bottom of excavation. On completion of these activities, the intake structure was built on schedule in a relatively dry condition with only two small sump pumps to handle minor seepage.
机译:Ilijan发电厂位于菲律宾的吕宋岛。华盛顿集团(Washington Group)是工程,采购与建筑(EPC)承包商,大林(Daelim)为土木分包商。进水口结构的围堰尺寸为36m x 30m,延伸至地下水位以下9.0m。该现场的地下条件非常复杂且变化很大。在入口结构位置遇到了三层交替的致密胶结砾岩层和高渗透性开放结构砾石/卵石层。通过简单的泵测试,从现场的一个大测试坑中估计出一个1 x10〜(-10)cm / sec的数量级渗透率。进水口结构距太平洋约五十米(50m),因此不包括脱水作为施工解决方案。本文详细介绍了地下条件,进水口结构以及为建造围堰而考虑的各种替代方案。进度,拟议解决方案的可靠性和成本是选择过程中的驱动因素,前两个是优先考虑的因素。选定的解决方案具有计划的冗余和恢复方案,以解决意外的地下条件并确保按计划及时完成进水口结构。选定的解决方案利用钢板桩,喷射灌浆柱,土壤锚和水泥-硅酸钠水泥浆混合物作为底部密封塞,该密封塞位于开挖底部下方较远的位置。这些活动完成后,进气结构按计划在相对干燥的条件下建造,只有两个小型污水泵可以处理少量渗水。

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