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Mechanism of uplift deformation of the Dam foundation of Jiangya water power station, Hunan Province, PR China

机译:中国湖南江崖水电站大坝基础隆升变形机理

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摘要

Uplift deformation of Jiangya Dam in Loushui River, Hunan Province, P. R. China reached 28.4-32.6 mm in 2 years and 5 months ( December 1998-April 2001), which is unusual for dams worldwide. A perfectly confined aquifer, Yuntaiguan hot water aquifer, in the Jiangya syncline is recharged at a remote wing and outflows in front of the dam in the reservoir which is 875 m lower than the recharge point. The rise of the reservoir water level increases the head in the aquifer. The uplift deformation of the dam foundation corresponds spatially with the outcrop of the top interface of the aquifer and shows a direct time response to the fluctuation of the reservoir water level, indicating that the fluctuation of the reservoir water level is the dominant influence on the deformation. Numerical simulation shows spatial and dynamic similarities to the monitoring data. Numerical simulation of the cyclic reservoir water level confirms that the uplift is due to elastic deformation.
机译:中国湖南省s水市江崖大坝的隆升变形在2年零5个月(1998年12月至2001年4月)中达到28.4-32.6毫米,这在世界范围内都是不常见的。江崖向斜线中的一个完美密闭的含水层,即云台关热水含水层,在一个偏远的机翼处进行补给,并在水库中的坝前流出,这比补给点低875 m。水库水位的上升使含水层的水头增大。坝基的隆升变形在空间上与含水层顶部界面的露头相对应,并显示出对水库水位波动的直接时间响应,表明水库水位的波动是变形的主要影响因素。数值模拟显示了与监测数据的空间和动态相似性。循环水库水位的数值模拟证实了隆起是由于弹性变形引起的。

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