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首页> 外文期刊>Canadian Journal of Civil Engineering >Dynamic response of a concrete dam impounding an ice-covered reservoir: Part I. Mathematical modelling
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Dynamic response of a concrete dam impounding an ice-covered reservoir: Part I. Mathematical modelling

机译:蓄积冰水库的混凝土坝的动力响应:第一部分。数学模型

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This paper examines the dynamic response of a concrete dam impounding an ice-covered reservoir and subjected to forced-vibration testing. The analytical research presented is a follow-up to an extensive dynamic testing program carried out on a 84-m high concrete gravity dam located in northeastern Quebec, Canada, under harsh winter conditions, including a 1.0- to 1.5-m-thick ice sheet covering the reservoir. One of the major challenges encountered when analyzing ice-dam-reservoir-foundation interaction is modelling the complex nature of the ice and the boundary conditions governing reservoir motion. The problem is further complicated because there are little or no appropriate experimental data and observational evidence relevant to ice-dam interaction processes. Some of these challenges are addressed herein using a two-dimensional analytical approach, which investigates the effects due to ice cover, water compressibility, and reservoir bottom absorption. A frequency-domain substructure method technique is used and a new boundary condition along the ice-cover-reservoir interface is proposed. The technique developed is implemented in a finite element code specialized in the seismic analysis of concrete dams. Numerical results are discussed in the companion paper in this issue.
机译:本文研究了蓄积在冰雪覆盖的水库中并经受强制振动测试的混凝土坝的动力响应。所提供的分析研究是在加拿大严峻的冬季条件下,对位于加拿大魁北克省东北部的一座84米高的混凝土重力坝进行的广泛动态测试计划的后续措施,其中包括厚1.0至1.5米的冰盖。覆盖水库。分析冰坝-水库-地基相互作用时遇到的主要挑战之一是对冰的复杂性和控制水库运动的边界条件进行建模。该问题变得更加复杂,因为几乎没有或没有与冰坝相互作用过程相关的适当实验数据和观察证据。本文使用二维分析方法解决了其中一些挑战,该方法研究了由于冰盖,水的可压缩性和储层底部吸收而产生的影响。利用频域子结构方法技术,提出了沿冰盖-水库界面的边界条件。所开发的技术以专门用于混凝土大坝地震分析的有限元代码实现。数值结果将在本期随书中讨论。

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