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Seismic Response Of Intake Towers Including Dam-tower Interaction

机译:包括水坝-塔架相互作用的进水塔的地震反应

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The seismic response of the intake-outlet towers has been widely analyzed in recent years. The usual models consider the hydrodynamic effects produced by the surrounding water and the interior water, characterizing the dynamic response of the tower-water-foundation-soil system. As a result of these works, simplified added mass models have been developed. However, in all previous models, the surrounding water is assumed to be of uniform depth and to have infinite extension. Consequently, the considered added mass is associated with only the pressures created by the displacements of the tower itself. For a real system, the intake tower is usually located in proximity to the dam and the dam pressures may influence the equivalent added mass. The objective of this paper is to investigate how the response of the tower is affected by the presence of the dam. A coupled three-dimensional boundary element-finite element model in the frequency domain is employed to analyze the tower-dam-reservoir interaction problem. In all cases, the system response is assumed to be linear, and the effect of the internal fluid and the soil-structure interaction effects are not considered. The results suggest that unexpected resonance amplifications can occur due to changes in the added mass for the tower as a result of the tower-dam-reservoir interaction.
机译:近年来,进出水塔的地震反应已得到广泛分析。常用的模型考虑了周围水和内部水产生的水动力效应,表征了塔水-基础-土壤系统的动力响应。由于这些工作,已经开发出简化的附加质量模型。但是,在所有以前的模型中,都假定周围水具有均匀的深度并具有无限的扩展性。因此,所考虑的附加质量仅与塔架本身的位移所产生的压力有关。对于实际系统,进气塔通常位于大坝附近,大坝压力可能会影响当量附加质量。本文的目的是研究水坝的存在如何影响塔的响应。运用频域耦合三维边界元-有限元模型分析塔坝水库相互作用问题。在所有情况下,都假定系统响应是线性的,并且没有考虑内部流体的影响和土壤与结构的相互作用。结果表明,由于塔-坝-水库相互作用,塔的附加质量发生变化,可能会发生意外的共振放大。

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