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Optimal design of spoke double-layer cable-net structures based on an energy principle

机译:基于能量原理的辐条双层电缆结构的最优设计

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摘要

An optimal design method for a spoke double-layer cable-net structure (SDLC) is proposed in this study. Simplified calculation models of the SDLC are put forward to reveal the static responses under vertical loads and wind loads. Next, based on an energy principle, the relationship among the initial prestress level, cross-sectional areas of the components, rise height, sag height, overall displacement, and relative deformation is proposed. Moreover, a calculation model of the Foshan Center SDLC is built and optimized. Given the limited loading cases, material properties of the components, and variation ranges of the rise height and sag height, the self-weight and initial prestress level of the entire structure can be obtained. Because the self-weight of the cables decreases with increasing of the rise height and sag height, while the self-weight of the inner strut increases, the total weight of the entire structure successively exhibits a sharp reduction, a gradual decrease, a slow increase, and a sharp increase during the optimization process. For the simplified model, the optimal design corresponds to the combination of rise height and sag height that results in an appropriate prestress level of the entire structure with the minimum total weight.
机译:本研究提出了一种辐条双层电缆结构(SDLC)的最佳设计方法。提出了SDLC的简化计算模型,以揭示垂直载荷和风负荷下的静态响应。接下来,基于能量原理,提出了初始预应力水平,部件的横截面积,上升高度,下垂高,总位移和相对变形的关系。此外,建立和优化了佛山中心SDLC的计算模型。鉴于有限的装载案例,可以获得组件的材料特性和上升高度和凹凸高度的变化范围,可以获得整个结构的自重和初始预应力水平。因为电缆的自重随着上升高度和下垂高度的增加而降低,而内支柱的自重增加,整个结构的总重量连续表现出急剧减少,逐渐减少,缓慢增加,优化过程中的急剧增加。对于简化的模型,最佳设计对应于上升高度和下垂高度的组合,从而导致整个结构的适当预应力水平,最小总重量。

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