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Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures最新文献

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Optimum Design of Reinforced Concrete Columns 钢筋混凝土柱的优化设计
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch004
In the design of reinforced concrete (RC) columns, ductility is provided by allowing yielding of steel in the part of section under tensile stresses. This situation cannot be provided for RC columns since sections of columns are generally under compressive stresses resulting from axial loading including weight of all upper stories, flexural moments, and shear forces. To practically provide ductility, axial force is limited, and stirrups are densely designed. These rules are given in design regulations and must be checked during optimization. In this chapter, an optimum design methodology for biaxial loaded column is presented. Uniaxial loaded column methodology is given with the computer code. Finally, the slenderness effects are presented via ACI 318: Building code requirements for structural concrete and optimum results are given for several numerical cases using various metaheuristic algorithms.
在钢筋混凝土(RC)柱的设计中,延性是通过允许在拉应力下截面部分的钢屈服来提供的。这种情况不能提供给钢筋混凝土柱,因为柱的部分通常承受轴向载荷产生的压应力,包括所有上层的重量、弯矩和剪力。为了实际提供延展性,轴向力是有限的,马镫是密集设计的。这些规则在设计规程中给出,在优化过程中必须进行校核。在本章中,提出了双轴加载柱的优化设计方法。给出了单轴荷载柱法,并编制了计算程序。最后,通过ACI 318:结构混凝土的建筑规范要求展示了长细比效应,并使用各种元启发式算法给出了几个数值案例的最佳结果。
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引用次数: 6
Optimum Design of Post-Tensioned Axially-Symmetric Cylindrical Reinforced Concrete Walls 后张轴对称圆柱钢筋混凝土墙的优化设计
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch009
In this chapter, an optimization methodology for design of post-tensioned axially symmetric cylindrical reinforced concrete (RC) walls is presented. The objective of optimization is the minimization of total material cost of the wall including concrete, reinforced bars, post-tensioned cables, and form work required for wall and application of the post-tensioning. The optimized values are wall thickness, compressive strength of the concrete, locations and intensities of the post-tensioned loads, the diameter of the reinforcement bars (rebars), and distance between rebars. The optimization process employs the superposition method (SPM) for the analyses of the wall, and the design constraints are defined according to ACI-318: Building code requirements for structural concrete.
在本章中,提出了一种后张轴对称圆柱钢筋混凝土(RC)墙的优化设计方法。优化的目标是使墙体的总材料成本最小化,包括混凝土、钢筋、后张拉电缆、墙体所需的形式工作和后张拉的应用。优化值为墙厚、混凝土抗压强度、后张荷载的位置和强度、钢筋直径和钢筋间距。优化过程采用叠加法(SPM)对墙体进行分析,并根据ACI-318:建筑规范对结构混凝土的要求定义设计约束。
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引用次数: 0
Metaheuristic Optimization of Reinforced Concrete Frames 钢筋混凝土框架的元启发式优化
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch006
In this chapter, an optimum design methodology for reinforced concrete (RC) frames are presented. In the optimum design of frames, both beams and columns are optimized. In addition to that, internal forces can be modified according to rigidity of members for statically indetermined frames. In the presented methodology, the optimization of RC frame is done according to dynamic seismic loads and the design is done according to time-history analysis. As a metaheuristic algorithm, a modified harmony search is used, and the design constraints are provided according to ACI 318: Building code requirements for structural concrete. The optimum results of two span-two story symmetric RC frames and three span-three story RC frame are presented.
在本章中,提出了钢筋混凝土框架的优化设计方法。在框架的优化设计中,梁和柱都进行了优化。此外,对于超静定框架,内力可以根据构件的刚度进行修正。在该方法中,钢筋混凝土框架的优化是根据动力地震荷载进行的,设计是根据时程分析进行的。作为一种元启发式算法,采用了改进的和谐搜索,并根据ACI 318:建筑规范对结构混凝土的要求提供了设计约束。给出了两跨两层对称钢筋混凝土框架和三跨三层对称钢筋混凝土框架的优化结果。
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引用次数: 0
Optimum Design of Reinforced Concrete Retaining Walls 钢筋混凝土挡土墙的优化设计
Pub Date : 1900-01-01 DOI: 10.4018/978-1-5225-4766-2.CH016
Rasim Temür, G. Bekdaş
In this chapter, the optimization of reinforced concrete (RC) retaining walls is presented. RC retaining walls are one of the structural types that are constructed on land and used for retaining soil backfill. Because of this reason, both structural and geotechnical limits are in progress in the optimization process. Additionally, the stability conditions against pressure of soils are the key constraints in the optimum design of RC retaining walls. The presented methodology in this chapter considers both static and dynamic soil pressures resulting from earthquakes. A computer code employing teaching-learning-based optimization algorithm is also given.
本章主要介绍钢筋混凝土挡土墙的优化设计。钢筋混凝土挡土墙是建在陆地上,用于挡土回填的结构类型之一。正因如此,结构极限和岩土极限都在优化过程中。此外,土体抗压稳定条件是钢筋混凝土挡土墙优化设计的关键制约因素。本章提出的方法考虑了地震引起的静土压力和动土压力。给出了基于教与学的优化算法的计算机代码。
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引用次数: 11
Optimum Design of Carbon Fiber-Reinforced Polymer for Increasing Shear Capacity of Beams 提高梁抗剪能力的碳纤维增强聚合物优化设计
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch008
For reinforced concrete (RC) structures, retrofit of structures are needed to be done for several situations. These situations include the renovation of structure by adding new components (floors or extension) and elimination of safety risks (resulting from unforeseen effects - forces and durability). Most retrofit methods for RC structures need destruction of existing members and hard work on increasing of existing section dimension and reinforcements. Whereas, using carbon fiber reinforced polymer (CFRP) strips is an easy option to increase the flexural moment or shear capacity of RC members without destruction. In that case, the use of the structure is provided during the application. In this chapter, the optimum design of CFRP strips is presented for increasing the insufficient shear capacity of RC beams. The design constraints are provided according to ACI-318: Building code requirements for structural concrete and ACI-440: Guide for the Design and Construction of Externally Bonded FRP Systems for Strengthening Concrete Structure.
对于钢筋混凝土结构,有几种情况需要对结构进行改造。这些情况包括通过增加新组件(地板或延伸部分)来翻新结构,以及消除安全风险(由不可预见的影响-力和耐久性造成)。大多数钢筋混凝土结构的改造方法都需要破坏现有构件,努力增加现有截面尺寸和配筋。然而,使用碳纤维增强聚合物(CFRP)条是一种简单的选择,可以在不破坏的情况下增加钢筋混凝土构件的弯矩或抗剪能力。在这种情况下,在应用程序期间提供结构的使用。本章针对钢筋混凝土梁抗剪能力不足的问题,提出了碳纤维布带的优化设计方案。设计约束是根据ACI-318:结构混凝土的建筑规范要求和ACI-440:用于加强混凝土结构的外部粘结FRP系统的设计和施工指南提供的。
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引用次数: 1
Optimum Design of Reinforced Concrete Beams 钢筋混凝土梁的优化设计
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch003
The design of reinforced concrete (RC) beams need special conditions to provide a ductile design. In this design, the maximum amount of tensile reinforcement must be limited to singly reinforced design. After the singly reinforced limit, the cost of doubly reinforced RC beam rapidly increases, and it may not be an optimum design. To consider this nonlinear behavior and other rules used in RC structures according to regulations such as ACI 318: Building code requirements for structural concrete and Eurocode 2: Design of concrete structures, an algorithmic and iteration optimization method is needed. In this chapter, two examples are presented, and optimum results are shared for methodologies employing several metaheuristic algorithms. The importance of using metaheuristic algorithms can be seen in this chapter.
钢筋混凝土梁的设计需要在特殊条件下提供延性设计。在这种设计中,最大受拉钢筋量必须限制在单钢筋设计中。超过单配筋极限后,双配筋钢筋混凝土梁的造价迅速增加,可能不再是最优设计。为了考虑这种非线性行为以及根据诸如ACI 318:结构混凝土的建筑规范要求和欧洲规范2:混凝土结构设计等法规在RC结构中使用的其他规则,需要一种算法和迭代优化方法。在本章中,提出了两个例子,并分享了采用几种元启发式算法的方法的最佳结果。使用元启发式算法的重要性可以在本章中看到。
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引用次数: 1
Introduction and State-of-the-Art Review of Optimum Design of Reinforced Concrete Structures 钢筋混凝土结构优化设计的介绍与研究进展
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch001
This first chapter of the book presents an introduction and review study. The necessity of optimization in engineering design is discussed. The nonlinear behavior of problems plays an important role in the usage of metaheuristic methods because of complexity resulting from design constraints considering safety and utilization rules. Design factors in analysis and design of structures are given. A brief history about optimization of structures is presented, including the first early attempts of Galilei Galileo. As the main scope of the book, the review of studies considering optimization of reinforced concrete (RC) structures and members via metaheuristic methods are given. The optimized RC members include beams, columns, slabs, frames, bridges, footings, shear walls, retaining walls, and cylindrical walls.
本书的第一章是绪论和回顾研究。论述了优化在工程设计中的必要性。由于考虑安全性和使用规则的设计约束所导致的复杂性,问题的非线性行为在元启发式方法的使用中起着重要作用。给出了结构分析和设计中的设计因素。简要介绍了结构优化的历史,包括伽利略的第一次早期尝试。作为本书的主要范围,回顾了考虑用元启发式方法优化钢筋混凝土(RC)结构和构件的研究。优化的RC构件包括梁、柱、板、框架、桥梁、基础、剪力墙、挡土墙和圆柱墙。
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引用次数: 0
Brief Information About Metaheuristic Methods 关于元启发式方法的简要信息
Pub Date : 1900-01-01 DOI: 10.4018/978-1-7998-2664-4.ch002
First, the reasons of using metaheuristic algorithms are listed for optimum design of reinforced concrete (RC) structures and members. The main reason is the non-linear formulation of RC design problems including various types of design constraints. The basic terms and formulation of optimization methods are presented. A general process of metaheuristic-based optimization methods is presented. This process is summarized as three stages: pre-optimization, analysis, and optimization. Details of several metaheuristic algorithms effectively used in structural engineering problems are summarized by giving all formulations according to the inspiration of algorithms. The flowcharts for the optimization processes are also included.
首先,列举了采用元启发式算法进行钢筋混凝土结构和构件优化设计的原因。其主要原因是钢筋混凝土设计问题的非线性公式包含各种类型的设计约束。给出了优化方法的基本术语和公式。给出了基于元启发式优化方法的一般过程。这个过程可以概括为三个阶段:预优化、分析和优化。根据算法的启发,给出了几种有效应用于结构工程问题的元启发式算法的具体表达式。优化过程的流程图也包括在内。
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引用次数: 0
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Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures
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