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RESPONSE OF A LEBANESE ROCK-FILLED DAM TO SEISMIC EXCITATION

机译:岩石碎石坝对地震激励的响应

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Old dams were usually constructed using simplified design criteria. Seismic action was not totally computed and included in the dams' sizing procedure, mainly static forces were applied to the dam body and resistance to a seismic excitation of 0.1 g peak ground acceleration was verified. This can raise stability concerns because, according to its location, the dam could be subjected to stronger earthquakes. The Qaraoun concrete face rockfill dam (CFRD), the first Lebanese dam, built in 1964, is studied here to evaluate overall stability. The highest excitation predicted for the site is defined by seismic hazard assessment, the applied earthquake is the horizontal component of the Tabas earthquake that occurred in Iran in 1978, with a 7.4 magnitude and 0.8 g ground acceleration, since the specifications of such an earthquake match the required design solicitation. The simulation was performed using the finite element code Plaxis 2D; a numerical mode! is presented with all calibration steps and assumptions covering the lack of data regarding the materials' properties. A non-linear behaviour was adopted for the rock fill; static and dynamic calculations were performed in order to obtain the permanent deformations, allowing for a judgement regarding the stability of the dam. A final settlement of one metre at the crest and a horizontal displacement of one metre are not threatening values, taking into consideration the level of the reservoir free board, which is 5 m below the dam crest.
机译:通常使用简化的设计标准来建造旧水坝。地震作用并未完全计算出来,并没有包含在大坝的选型程序中,主要是对坝体施加了静态力,并验证了对0.1 g峰值地面加速度的地震激励的抵抗力。这可能会引起稳定性问题,因为根据其位置,大坝可能会遭受更大的地震。 1964年建造的第一座黎巴嫩水坝Qaraoun混凝土面板堆石坝(CFRD)在这里进行了研究,以评估其整体稳定性。该地点预测的最高激励是通过地震危险性评估确定的,所应用的地震是1978年在伊朗发生的塔巴斯地震的水平分量,地面加速度为7.4级,地面加速度为0.8 g,因为这种地震的规格符合所需的设计要求。仿真是使用有限元代码Plaxis 2D进行的;数字模式!介绍了所有校准步骤和假设,涵盖了有关材料特性的数据不足。岩石填充采用非线性行为。为了获得永久变形,进行了静态和动态计算,从而可以判断大坝的稳定性。考虑到无水库蓄水板的高度(坝顶以下5 m),在波峰的最终沉降为1米和1米的水平位移不会构成威胁。

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