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水力发电学报 ›› 2023, Vol. 42 ›› Issue (1): 30-39.doi: 10.11660/slfdxb.20230104

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高堆石坝面板随机动力分析和抗震效果研究

  

  • 出版日期:2023-01-25 发布日期:2023-01-25

Study on stochastic dynamic analysis and seismic effect of face slabs of high rockfill dams

  • Online:2023-01-25 Published:2023-01-25

摘要: 强震作用下,高面板堆石坝面板中上部会产生较大顺坡向拉应力,可能导致面板开裂。已有研究表明,针对顺坡向拉应力较大的区域设置永久水平缝可有效降低该应力,而以往对于其抗震措施效果的研究多采用单一地震动进行确定性分析,缺乏考虑地震动过程不确定性对抗震措施效果的影响。本文以300 m高坝为例,基于随机动力方法,确定了面板顺坡向高拉应力区,并对水平缝设置长度进行讨论。联合广义概率密度演化方法,分别选择特定方向和典型单元对水平缝影响区域和顺坡向拉应力的降低作用进行研究,结果相互验证。从概率角度表明了水平缝抗震效果,并为其他抗震措施效果的研究提供新的思路。

关键词: 面板堆石坝, 顺坡向拉应力, 抗震措施, 随机动力方法, 广义概率密度演化方法

Abstract: For a high concrete face rockfill dam (CFRD) under strong ground motions, the middle and upper parts of its face slabs usually produce high tensile stress along the slope, possibly resulting in horizontal cracks and leakage. It has been proved that setting permanent horizontal joints in the areas prone to high tensile stress can reduce the stress effectively. However, most of the previous studies on the effect of anti-seismic measures used a single ground motion for deterministic analysis, lacking consideration of the randomness of ground motions. This paper presents a stochastic dynamic method for determining along slope zones with high stress of the face slab, together with a discussion on the length of horizontal joints and an application to a 300 m high dam. The area influenced by horizontal joints and their effect of stress reduction are investigated by using the generalized probability density evolution method and focusing on a specific direction and typical elements, which shows the effectiveness of horizontal joints serving as a new measure for anti-seismic protection from the perspective of probability.

Key words: concrete face rockfill dam (CFRD), along slope tensile stress, anti-seismic measure, stochastic dynamic method, generalized probability density evolution method

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