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Use of geocomposite drain against rapid-drawdown loading for roller-compacted concrete (RCC) armored earth dam

机译:土工复合材料排水设备对碾压混凝土(RCC)装甲土坝的快速降落载荷的使用

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摘要

This case study describes the design and construction of a drainage system consisting of a geocomposite drain immediately beneath the roller-compacted concrete (RCC) slope facing at the Loxahatchee Reservoir in western Palm Beach County, Florida. 1.5 kilometers of RCC and geocomposite drain were installed along the western alignment of Cell 6. The main stability issue for the RCC was the development of excessive pore water pressure beneath the RCC in the event of rapid drawdown of the reservoir. Transient seepage analysis showed that installation of the geocomposite drain eliminated excess pore pressure beneath the RCC and dramatically increased the factor of safety against uplift, preventing structural instability of the RCC. Under the operational reservoir levels since placing the reservoir in operation, no structural instability has been observed in the RCC, which was also confirmed by post-construction transient seepage analysis. Performance of the geocomposite drain has successfully met the design objectives.
机译:本案例研究描述了排水系统的设计和施工,该排水系统由紧靠碾压混凝土(RCC)斜面下方的土工复合排水口组成,该斜面位于佛罗里达州棕榈滩县西部的Loxahatchee水库。在6号井的西边沿线安装了1.5公里的RCC和土质复合排水设备。RCC的主要稳定性问题是,在水库快速流失的情况下,RCC下方的孔隙水压力过高。瞬态渗流分析表明,土工复合材料排水装置的安装消除了碾压混凝土下方的过大孔隙压力,并显着提高了抗隆起的安全系数,从而防止了碾压混凝土结构的不稳定性。自储层投入运行以来,在运行储层水平下,RCC中未观察到结构失稳,这也通过施工后的瞬态渗流分析得到了证实。土工复合材料排水系统的性能已成功达到设计目标。

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