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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Construction and performance of the Karkheh dam complementary cut-off wall: an innovative engineering solution
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Construction and performance of the Karkheh dam complementary cut-off wall: an innovative engineering solution

机译:KARKHEH DAM互补截止墙的建筑和性能:创新工程解决方案

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摘要

Construction of a dam cut-off wall is one of the most challenging tasks in dam engineering given the deep excavations involved and the complex interactions between stiff cut-off walls and soft surrounding soils. Here, we present innovative solutions for the development of the Karkheh dam's complementary cut-off wall in southwest Iran which is among the largest structures of this type worldwide with a maximum depth of 115m. Due to excessive water seepage and high hydraulic gradient following the reservoir impoundment, additional measures were considered among which was the extension of the existing cut-off wall. The main goal was to decrease the hydraulic gradient of the seepage through the dam foundation. The construction of this new wall, which is called as the complementary wall here, was associated with a number of technical challenges among which were: the connection between the new and old walls; trenching and placing of plastic concrete wall through different dam body zones; and slurry loss during trenching through the dam body zones. The complementary wall was constructed successfully producing invaluable engineering experiences including: design of a U-shaped panel as the connecting panel; design of a new method for grouting through uniformly distributed filter/drain materials; and adding cement-based grouts to the cut-off wall panels to prevent slurry loss. The complementary wall helped to decrease both total seepage and the hydraulic gradient; for instance, in the right abutment, total seepage was cut for 25% and the hydraulic gradient was reduced from 0.2 to 0.095.
机译:坝截止墙的建设是大坝工程中最具挑战性的任务之一,鉴于涉及的深度挖掘和僵硬的切断墙和柔软的周围土壤之间的复杂相互作用。在这里,我们为西南伊朗的karkheh大坝互补缝隙墙的开发提供了创新解决方案,这是全球最大的大深度为115米的最大结构之一。由于水库蓄水量过多的水渗漏和高液压梯度,考虑了额外的措施,其中是现有切断墙的延伸。主要目标是通过坝基降低渗漏的液压梯度。这种新墙的建造,称为互补墙在这里,与许多技术挑战相关联:新旧墙壁之间的联系;通过不同坝体区域挖沟和放置塑料混凝土墙;通过坝体区域挖沟期间的浆料损失。互补墙建造成功生产宝贵的工程体验,包括:U形面板设计为连接面板;通过均匀分布式过滤器/排水材料灌浆的新方法的设计;并将基于水泥的灌浆添加到截止墙板上以防止浆料损失。互补墙有助于降低总渗流和液压梯度;例如,在正确的基台中,将总渗漏切割成25%,液压梯度降低0.2至0.095。

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