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水力发电学报 ›› 2025, Vol. 44 ›› Issue (6): 134-142.doi: 10.11660/slfdxb.20250613

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地震动输入模型对重力坝地震响应的影响

  

  • 出版日期:2025-06-25 发布日期:2025-06-25

Influence of earthquake input models on seismic response analysis for gravity dams

  • Online:2025-06-25 Published:2025-06-25

摘要: 地震动输入模型是重力坝地震响应分析的基础。首先,从理论上阐明4类地震动输入模型表达运动场特征的差异;随后,以随机波场方法构建场址波场和运动场,实现地震动输入模型的基准统一;最后,通过不同输入模型得到重力坝地震响应,并阐明地基辐射阻尼效应和复杂波场效应的影响。研究显示,与传统输入模型相比,非一致波动输入模型可准确模拟地面运动的非一致特征。不同输入模型得到的重力坝地震响应规律相似,但数值差异较大。在坝踵第一主应力峰值方面,地基辐射阻尼效应引起响应的显著减小,变幅范围为-68.2% ~ -14.8%;复杂波场效应多数情况下引起响应的增加,变幅范围为-8.7% ~ 53.0%。研究对揭示复杂波场效应的影响,推动重力坝地震响应分析理论的发展具有意义。

关键词: 重力坝, 地震动输入模型, 非一致波动输入模型, 复杂波场效应, 地基辐射阻尼效应

Abstract: The earthquake input model is fundamental in seismic responses analysis of a gravity dam. This paper first presents a theoretical analysis on the characteristics of motion fields that are expressed by four earthquake input models, then uses a random wavefield method to quantify incident waves and the corresponding ground motions, which ensures the unified input criterion shared by different earthquake input models. Finally, we simulate the seismic responses of a gravity dam using different earthquake input models, and offer a quantitative demonstration of the radiation-damping effect and complicated wavefield effect. The dam responses calculated using different earthquake input models are similar in trends, but their magnitudes are considerably different. For peak σ1 at the dam heel, the responses vary in the range of -68.2% to -14.8% caused by the radiation-damping effect, and -8.7% to 53.0% by the complex wavefield effect. This study reveals the influence of the complex wavefield effect, promoting the development of seismic response analysis of gravity dams.

Key words: gravity dam, earthquake input model, non-uniform wave input model, complex wavefield effect, radiation-damping effect

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