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Determination of strut-and-tie models using evolutionary structural optimization

机译:使用进化结构优化确定支撑杆和连接杆模型

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This paper introduces a method to determine strut-and-tie models in reinforced concrete (RC) structures using evolutionary structural optimization (ESO). Even though strut-and-tie models are broadly adapted in the design of reinforced concrete members subjected to shear and torsion, conventional methods can hardly offer useful models of RC members subjected to complex loadings and geometry conditions. In this paper, the basic idea of the ESO method is used to determine more rational strut-and-tie models. Since an optimum topology of structures, finally obtained by the ESO method, usually represents a truss-like structure, the ESO method using truss elements can effectively be used in finding the best strut-and-tie models in RC structures. To prevent the structural instability that may occur during the evolutionary optimization process, a brick element composed of six truss elements is designed as a basic element unit. Systematic removal of each brick element that has the least virtual strain energy follows, and the optimal load transfer mechanism of an RC structure, which is equivalent to the optimal topology of the strut-and-tie model, is finally characterized on the basis of an optimization criterion of minimizing the total elastic strain energy of the structure. Several RC structures are used as examples to demonstrate the capability of the proposed method in finding the best strut-and-tie model of each RC structure and to verify its efficiency in application to real design problems.
机译:本文介绍了一种使用演化结构优化(ESO)来确定钢筋混凝土(RC)结构中的拉杆-拉杆模型的方法。即使在受剪切和扭转的钢筋混凝土构件的设计中广泛采用了拉杆-拉杆模型,传统方法也很难提供承受复杂载荷和几何条件的钢筋混凝土构件的有用模型。在本文中,ESO方法的基本思想用于确定更合理的支杆和领带模型。由于最终通过ESO方法获得的最佳结构拓扑通常表示为桁架状结构,因此使用桁架单元的ESO方法可以有效地用于寻找RC结构中的最佳支撑和拉杆模型。为了防止在演化优化过程中可能发生的结构不稳定性,将由六个桁架元素组成的砖元素设计为基本元素单元。随后,系统地移除了具有最小虚拟应变能的每个砖块元素,并最终根据以下特征对RC结构的最佳载荷传递机制进行了表征,该机制等效于拉杆-连接模型的最佳拓扑。最小化结构的总弹性应变能的优化准则。以几个钢筋混凝土结构为例,演示了所提出方法在寻找每个钢筋混凝土结构的最佳支撑模型的能力,并验证了其在实际设计中的应用效率。

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