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Aerodynamic and aeroelastic analysis of bundled cables by numerical simulation

机译:捆扎电缆的气动和气动弹性数值模拟分析

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摘要

A numerical model for the aerodynamic and aeroelastic analysis of bundled cables, commonly used in energy transmission lines, is presented in this work. The bundles were idealized by a sectional model representing the section at the mid span between two supporting towers. A slightly compressible viscous fluid was considered and the two-dimensional flow was analyzed using a two-step explicit method with an arbitrary Eulerian-Lagrangean description. A Taylor series expansion was used in time and the classical Galerkin technique with the finite element method were used for space discretization. Turbulence was modeled using large eddy simulation with the classical Smagorinsky's sub-grid scale model. The set of cables forms a single body with elastic constrains working mechanically coupled, being each cable linked to the others by spacers. The fluid-structure interaction was taken into account considering equilibrium and compatibility conditions at the fluid-solid interfaces, and the resulting dynamical equilibrium equation was solved using the Newmark's method. © 2004 Elsevier Ltd. All rights reserved.
机译:在这项工作中,提出了通常用于能量传输线中的捆绑电缆的气动和气动弹性分析的数值模型。通过表示两个支撑塔架中间跨度截面的截面模型来理想化束。考虑了略微可压缩的粘性流体,并使用具有任意欧拉-拉格朗日描述的两步显式方法分析了二维流动。时间上采用了泰勒级数展开,而有限元方法则采用了经典的Galerkin技术进行空间离散化。湍流通过经典Smagorinsky的子网格比例模型使用大型涡流模拟进行建模。电缆组形成具有弹性约束的单个主体,该弹性约束以机械方式耦合,使每条电缆通过垫片彼此连接。考虑到流固界面处的平衡和相容条件,考虑了流固耦合,并使用纽马克方法求解了动力学平衡方程。 &复制; 2004 Elsevier Ltd.保留所有权利。

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