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Shape Optimizing Design of Kiewiti Spherical Reticulated Shell

机译:Kiewiti球形网状壳体形状优化设计

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With gross weight minimum of reticulated shell (including elements and nodes) as the objective function, with cross section size of elements, the volume of spherical nodes and shell shape parameter (kn, nx) as design variables, a two-level shape optimizing mathematical model of spherical reticulated shell, which is based on discrete variables, is established, and the corresponding optimizing design programmes are made. Model establishing with modeling macro program of spherical reticulated shell parameterization, using ANSYS software for the structure force analysis, this programme has the characteristics of high optimizing efficiency with multiple designing schemes, and high analyzing and computing accuracy. Some practical and valuable conclusions are reached by the analysis and comparisons of optimizing design results of 42 Kiewit spherical reticulated shells with six kinds of span and seven kinds of rise-span ratios.
机译:具有毛重最小的网状壳(包括元件和节点)作为目标函数,具有元素的横截面尺寸,球形节点和壳体形状参数(kn,Nx)作为设计变量,两级形状优化数学建立了基于离散变量的球形网状壳体的模型,并进行了相应的优化设计程序。模型建立了与宏观设计的球形网状壳参数化建立,使用ANSYS软件进行结构力分析,该程序具有高优化效率的特点,具有多种设计方案,以及高分析和计算精度。通过六种跨度和七种上升比率优化42 kiepit球形网状壳的设计结果,达到了一些实用和有价值的结论。

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