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Effects of fluid-structure interaction modeling assumptions on seismic floor acceleration demands within gravity dams

机译:流固耦合模型假设对重力坝内地震层加速度要求的影响

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This paper presents an original investigation of the sensitivity of floor acceleration demands in gravity dams to various modeling assumptions of the impounded reservoir. Such floor acceleration demands are crucial for the assessment of the seismic performance or vulnerability of dam-supported appurtenant structures. Two approaches are proposed to obtain floor acceleration demands: analytical and coupled dam-reservoir finite element models. Both techniques are applied to typical dam-reservoir systems with different geometries. The dam-reservoir systems are subjected to ground motions with various frequency contents and the resulting floor acceleration demands are examined to investigate the effects of reservoir geometry, water compressibility, reservoir bottom wave absorption and dam higher vibration modes. A new approach based on proposed floor frequency response functions is also developed to assess floor acceleration demands at the stage of preliminary seismic design or safety evaluation of dam-supported appurtenant structures. Examples are given to illustrate how the proposed approach can be effectively used to compare floor acceleration demands within different dams or within the same dam considering various modeling assumptions of the reservoir.
机译:本文提出了对重力坝地面加速度要求对蓄水库各种模型假设的敏感性的原始研究。这种地面加速度的要求对于评估大坝支撑的附属结构的抗震性能或脆弱性至关重要。提出了两种获得地面加速度要求的方法:解析和耦合水库-水库有限元模型。两种技术均应用于具有不同几何形状的典型大坝水库系统。大坝-水库系统受到不同频率内容的地面运动,并检查了产生的地面加速度需求,以研究水库几何形状,水可压缩性,水库底波吸收和大坝高振动模式的影响。还开发了一种基于提议的地板频率响应函数的新方法,以在初步地震设计或大坝支撑的附属结构的安全评估阶段评估地板加速度需求。给出了一些实例来说明如何考虑到水库的各种建模假设,有效地将所提出的方法用于比较不同大坝或同一大坝内的地面加速度需求。

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