在移动河床物理模型中使用新的设计和施工方法的建议:Salto do Paraopeba大坝案例

Pub Date : 2023-06-05 DOI:10.1590/2318-0331.282320220107
C. B. Martinez, A. Saliba, Edna M. de F. Viana, J. L. Z. Tarqui, E. D. Teixeira, Mary Elma Ferreira Costa, Adriano Silva Bastos
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引用次数: 0

摘要

流动河床河系水工结构间相互作用的研究是复杂的,因为它涉及泥沙输运和边界条件的动态变化,需要使用物理模型。本文介绍了Salto Paraopeba小型水电站水库和大坝物理模型的设计和施工过程。在设计阶段,采用输沙计算模型重建了河流的原始几何形状,并对河流的流态和沿江输沙能力进行了模拟;这两个结果都允许对模型扩展进行定界。考虑到模型的尺度选择和模型与原型的相似性标准,提出了一种新的替代材料,由破碎的轮胎橡胶颗粒组成,比原型的沉积物具有更低的比质量和更大的直径。在构建阶段,采用玻璃纤维构建物理模型的新方法,该方法具有形态表现更好、重量更轻、通过模块安装和卸载简单、修复简单快速等优点。
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Proposal to use new methods of design and construction in mobile riverbed physical models: the Salto do Paraopeba dam case
ABSTRACT The study of the interaction between hydraulic structures in mobile bed river systems is complex because it involves sediment transport and dynamic changes in the boundary conditions, requiring the use of physical models. This article presents the procedure for the design and construction of a physical model of the reservoir and dam of the Small Hydroelectric Power Plant (SHPP) of Salto Paraopeba. In the design phase, computational modelling of sediment transport was used to reconstitute the primitive geometry of the river, and simulations of the flow regime and the transport capacity along the course of the river were also carried out; both results allowed to delimit the model extension. Considering the choice of scale and the similarity criteria between the model and the prototype, the use of a new alternative material was proposed, composed of crushed tire rubber particles, with a lower specific mass and a larger diameter than the prototype's sediment. In the construction phase, a new constructive method of the physical model was applied using fiberglass, the method presents constructive advantages, such as better representation of the morphology, lower weight, simple installation and uninstallation through modules, and simple and fast repairs, among others.
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