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Topology Optimization of Framed Structures using SAP2000

机译:使用SAP2000的框架结构的拓扑优化

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Topology optimization (TO) represents a free-form design approach that aims to identify optimized material distribution within the design domain. There are two main broad class of techniques which can be applied: discrete and continuum optimization of the structural system. In this work, TO is applied to structural systems modelled 1D finite elements (i.e. truss and frames) by using SAP2000 which is a well-known commercial software for analysis and design of structural systems that is equipped with an open application programming interface (OAPI). The optimization problem at hand is solved using the High-Performance Topology Optimization Computing Platform (HP-TOCP). The TO problem for the case of structures simulated with 1D finite elements is mainly divided in two stages. First, the generation of the initial design domain, usually called as “ground structures” and second, the formulation of the optimization problem. Most of the articles that can be found in literature and deal with the ground structure generation are applied in 2D structures and have many geometrical limitations. In this work, the Rhino’s plug-in Grasshopper is used, which is a well-known free form design tool with wide range of applications. An additional tool was also developed in C#, to transfer the initial geometry in SAP2000 and formulate the optimization problem. In this work, compliance represents the objective function of the problem while both volume of the final structure and the design code regulations represent the constraints. Without loss of the generality, circular and rectangle cross-sectional geometries are considered in both 2D and 3D test cases.
机译:拓扑优化(to)表示自由形式的设计方法,旨在识别设计域内的优化材料分布。有两种主要的广泛技术,可以应用:结构系统的离散和连续性优化。在这项工作中,通过使用SAP2000应用于结构系统建模的1D有限元(即桁架和帧),这是一种可公知的商业软件,用于分析和设计结构系统,该结构系统配备了开放应用程序编程接口(OAPI) 。使用高性能拓扑优化计算平台(HP-TOCP)解决了手的优化问题。用1D有限元模拟的结构的遇到问题主要分为两个阶段。首先,初始设计域的生成,通常被称为“地面结构”和第二,制定优化问题。在文献中可以找到的大多数物品和处理地面结构生成的制品应用于2D结构并具有许多几何限制。在这项工作中,使用了犀牛的插件蚱蜢,这是一种具有广泛应用的可着名的自由形式设计工具。在C#中也开发了一个附加工具,以在SAP2000中传输初始几何体并制定优化问题。在这项工作中,顺应性代表了问题的目标函数,而最终结构的卷和设计代码规定则代表约束。在2D和3D测试用例的情况下,不考虑一般性,圆形和矩形横截面几何形式。

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