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Structural Optimization of Hatch Cover Based on Bi-directional Evolutionary Structure Optimization and Surrogate Model Method 被引量:3
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作者 LI Kai YU Yanyun +2 位作者 HE Jingyi ZHAO Decai LIN Yan 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第4期538-549,共12页
Weight reduction has attracted much attention among ship designers and ship owners.In the present work,based on an improved bi-directional evolutionary structural optimization(BESO) method and surrogate model method,w... Weight reduction has attracted much attention among ship designers and ship owners.In the present work,based on an improved bi-directional evolutionary structural optimization(BESO) method and surrogate model method,we propose a hybrid optimization method for the structural design optimization of beam-plate structures,which covers three optimization levels:dimension optimization,topology optimization and section optimization.The objective of the proposed optimization method is to minimize the weight of design object under a group of constraints.The kernel optimization procedure(KOP) uses BESO to obtain the optimal topology from a ground structure.To deal with beam-plate structures,the traditional BESO method is improved by using cubic box as the unit cell instead of solid unit to construct periodic lattice structure.In the first optimization level,a series of ground structures are generated based on different dimensional parameter combinations,the KOP is performed to all the ground structures,the response surface model of optimal objective values and dimension parameters is created,and then the optimal dimension parameters can be obtained.In the second optimization level,the optimal topology is obtained by using the KOP according to the optimal dimension parameters.In the third optimization level,response surface method(RSM) is used to determine the section parameters.The proposed method is applied to a hatch cover structure design.The locations and shapes of all the structural members are determined from an oversized ground structure.The results show that the proposed method leads to a greater weight saving,compared with the original design and genetic algorithm(GA) based optimization results. 展开更多
关键词 hatch cover structure optimization multi-level optimization hi-directional evolutionary structural optimization response surface method
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Stress Relaxation and Sensitivity Weight for Bi-Directional Evolutionary Structural Optimization to Improve the Computational Efficiency and Stabilization on Stress-Based Topology Optimization 被引量:2
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作者 Chao Ma Yunkai Gao +1 位作者 Yuexing Duan Zhe Liu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第2期715-738,共24页
Stress-based topology optimization is one of the most concerns of structural optimization and receives much attention in a wide range of engineering designs.To solve the inherent issues of stress-based topology optimi... Stress-based topology optimization is one of the most concerns of structural optimization and receives much attention in a wide range of engineering designs.To solve the inherent issues of stress-based topology optimization,many schemes are added to the conventional bi-directional evolutionary structural optimization(BESO)method in the previous studies.However,these schemes degrade the generality of BESO and increase the computational cost.This study proposes an improved topology optimization method for the continuum structures considering stress minimization in the framework of the conventional BESO method.A global stress measure constructed by p-norm function is treated as the objective function.To stabilize the optimization process,both qp-relaxation and sensitivity weight scheme are introduced.Design variables are updated by the conventional BESO method.Several 2D and 3D examples are used to demonstrate the validity of the proposed method.The results show that the optimization process can be stabilized by qp-relaxation.The value of q and p are crucial to reasonable solutions.The proposed sensitivity weight scheme further stabilizes the optimization process and evenly distributes the stress field.The computational efficiency of the proposed method is higher than the previous methods because it keeps the generality of BESO and does not need additional schemes. 展开更多
关键词 Stress-based topology optimization aggregation function stress relaxation sensitivity weight bi-directional evolutionary structural optimization
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A Modified Bi-Directional Evolutionary Structural Optimization Procedure with Variable Evolutionary Volume Ratio Applied to Multi-Objective Topology Optimization Problem
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作者 Xudong Jiang Jiaqi Ma Xiaoyan Teng 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第4期511-526,共16页
Natural frequency and dynamic stiffness under transient loading are two key performances for structural design related to automotive,aviation and construction industries.This article aims to tackle the multi-objective... Natural frequency and dynamic stiffness under transient loading are two key performances for structural design related to automotive,aviation and construction industries.This article aims to tackle the multi-objective topological optimization problem considering dynamic stiffness and natural frequency using modified version of bi-directional evolutionary structural optimization(BESO).The conventional BESO is provided with constant evolutionary volume ratio(EVR),whereas low EVR greatly retards the optimization process and high EVR improperly removes the efficient elements.To address the issue,the modified BESO with variable EVR is introduced.To compromise the natural frequency and the dynamic stiffness,a weighting scheme of sensitivity numbers is employed to form the Pareto solution space.Several numerical examples demonstrate that the optimal solutions obtained from the modified BESO method have good agreement with those from the classic BESO method.Most importantly,the dynamic removal strategy with the variable EVR sharply springs up the optimization process.Therefore,it is concluded that the modified BESO method with variable EVR can solve structural design problems using multi-objective optimization. 展开更多
关键词 bi-directional evolutionary structural optimization variable evolutionary volume ratio multi-objective optimization weighted sum topology optimization
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A Smooth Bidirectional Evolutionary Structural Optimization of Vibrational Structures for Natural Frequency and Dynamic Compliance
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作者 Xiaoyan Teng Qiang Li Xudong Jiang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第6期2479-2496,共18页
A smooth bidirectional evolutionary structural optimization(SBESO),as a bidirectional version of SESO is proposed to solve the topological optimization of vibrating continuum structures for natural frequencies and dyn... A smooth bidirectional evolutionary structural optimization(SBESO),as a bidirectional version of SESO is proposed to solve the topological optimization of vibrating continuum structures for natural frequencies and dynamic compliance under the transient load.A weighted function is introduced to regulate the mass and stiffness matrix of an element,which has the inefficient element gradually removed from the design domain as if it were undergoing damage.Aiming at maximizing the natural frequency of a structure,the frequency optimization formulation is proposed using the SBESO technique.The effects of various weight functions including constant,linear and sine functions on structural optimization are compared.With the equivalent static load(ESL)method,the dynamic stiffness optimization of a structure is formulated by the SBESO technique.Numerical examples show that compared with the classic BESO method,the SBESO method can efficiently suppress the excessive element deletion by adjusting the element deletion rate and weight function.It is also found that the proposed SBESO technique can obtain an efficient configuration and smooth boundary and demonstrate the advantages over the classic BESO technique. 展开更多
关键词 Topology optimization smooth bi-directional evolutionary structural optimization(SBESO) eigenfrequency optimization dynamic stiffness optimization
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COMPUTER PROGRAM FOR DIRECTED STRUCTURE TOPOLOGY OPTIMIZATION 被引量:1
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作者 Xianjie Wang Xun'an Zhang Kepeng Cheng 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2015年第4期431-440,共10页
To compensate for the imperfection of traditional bi-directional evolutionary structural optimization, material interpolation scheme and sensitivity filter functions are introduced. A suitable filter can overcome the ... To compensate for the imperfection of traditional bi-directional evolutionary structural optimization, material interpolation scheme and sensitivity filter functions are introduced. A suitable filter can overcome the checkerboard and mesh-dependency. And the historical information on accurate elemental sensitivity numbers are used to keep the objective function converging steadily. Apart from rational intervals of the relevant important parameters, the concept of distinguishing between active and non-active elements design is proposed, which can be widely used for improving the function and artistry of structures directly, especially for a one whose accurate size is not given. Furthermore, user-friendly software packages are developed to enhance its accessibility for practicing engineers and architects. And to reduce the time cost for large timeconsuming complex structure optimization, parallel computing is built-in in the MATLAB codes. The program is easy to use for engineers who may not be familiar with either FEA or structure optimization. And developers can make a deep research on the algorithm by changing the MATLAB codes. Several classical examples are given to show that the improved BESO method is superior for its handy and utility computer program software. 展开更多
关键词 bi-directional evolutionary structural optimization (BESO) continuum structurescomputer program development improved algorithm directed structure topology optimizationportion construction design
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Topology Optimization in Damping Structure Based on ESO
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作者 郭中泽 陈裕泽 侯强 《Defence Technology(防务技术)》 SCIE EI CAS 2008年第4期293-298,共6页
The damping material optimal placement for the structure with damping layer is studied based on evolutionary structural optimization (ESO) to maximize modal loss factors. A mathematical model is constructed with the o... The damping material optimal placement for the structure with damping layer is studied based on evolutionary structural optimization (ESO) to maximize modal loss factors. A mathematical model is constructed with the objective function defined as the maximum of modal loss factors of the structure and design constraints function defined as volume fraction of damping material. The optimal placement is found. Several examples are presented for verification. The results demonstrate that the method based on ESO is effective in solving the topology optimization of the structure with unconstrained damping layer and constrained damping layer. This optimization method suits for free and constrained damping structures. 展开更多
关键词 机械设计 减振 隔振 理论
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Structural Topology Optimization by Combining BESO with Reinforcement Learning 被引量:1
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作者 Hongbo Sun Ling Ma 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2021年第1期85-96,共12页
In this paper,a new algorithm combining the features of bi-direction evolutionary structural optimization(BESO)and reinforcement learning(RL)is proposed for continuum structural topology optimization(STO).In contrast ... In this paper,a new algorithm combining the features of bi-direction evolutionary structural optimization(BESO)and reinforcement learning(RL)is proposed for continuum structural topology optimization(STO).In contrast to conventional approaches which only generate a certain quasi-optimal solution,the goal of the combined method is to provide more quasi-optimal solutions for designers such as the idea of generative design.Two key components were adopted.First,besides sensitivity,value function updated by Monte-Carlo reinforcement learning was utilized to measure the importance of each element,which made the solving process convergent and closer to the optimum.Second,ε-greedy policy added a random perturbation to the main search direction so as to extend the search ability.Finally,the quality and diversity of solutions could be guaranteed by controlling the value of compliance as well as Intersection-over-Union(IoU).Results of several 2D and 3D compliance minimization problems,including a geometrically nonlinear case,show that the combined method is capable of generating a group of good and different solutions that satisfy various possible requirements in engineering design within acceptable computation cost. 展开更多
关键词 structural topology optimization bi-direction evolutionary structural optimization reinforcement learning first-visit Monte-Carlo method ε-greedy policy generative design
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基于最低灵敏度区域更新的改进双向渐近结构优化方法
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作者 刘辉 杨旭东 孙栋 《机电工程》 北大核心 2025年第9期1759-1770,共12页
针对双向渐近结构拓扑优化方法(BESO)中灵敏度过滤引发的原始信息偏差及算法收敛性不足的问题,提出了一种最低灵敏度区域更新法。首先,找出了灵敏度值过滤前的最低一批单元在有限元划分后的网格中的位置信息(简称为最低灵敏度区域),在... 针对双向渐近结构拓扑优化方法(BESO)中灵敏度过滤引发的原始信息偏差及算法收敛性不足的问题,提出了一种最低灵敏度区域更新法。首先,找出了灵敏度值过滤前的最低一批单元在有限元划分后的网格中的位置信息(简称为最低灵敏度区域),在灵敏度过滤后,仅在最低灵敏度区域中进行了设计变量的更新,即可在不丢失网格无关滤波器的作用下,在一定程度上保障灵敏度过滤方法对灵敏度信息的偏差影响,确保算法仅在真正小的一批单元中更新设计变量,在一定程度上能够确保演化的正确方向;然后,判断了目标函数的稳定性,通过逐步缩小最低灵敏度区域,缩减了设计变量的更新范围,迫使结构的拓扑形状趋于稳定;最后,针对静载荷作用下的线弹性材料刚度最大化设计、几何非线性结构的刚度最大化设计以及微结构的剪切模量最大化设计,分别进行了对比验证。研究结果表明:最低灵敏度区域更新法比原BESO方法的总迭代次数降低了约16%,平均柔度降低了1.6%,平均迭代时长降低了约20%。该结果证明,最低灵敏度区域更新法可获得更优的解,并具有较好的收敛性,且提高了算法的收敛速度。 展开更多
关键词 机械设计 拓扑优化 双向渐近结构优化方法 灵敏度过滤 收敛准则 非线性 微结构
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双向渐进结构拓扑优化方法的改进
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作者 付萌萌 陶晓庆 袁晓安 《机械设计与制造工程》 2025年第7期11-14,共4页
为解决拓扑优化结构边界易出现锯齿状的问题,提出在双向渐进结构法(BESO)中引入固定网格法进行有限元分析。通过单元节点灵敏度判断边界单元,对其进行局部网格划分,实现了优化结果的边界光滑处理。最后通过算例验证了该方法的可行性。
关键词 双向渐进结构法 固定网格法 锯齿状
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Layout optimization of steel reinforcement in concrete structure using a truss-continuum model
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作者 Anbang CHEN Xiaoshan LIN +1 位作者 Zi-Long ZHAO Yi Min XIE 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2023年第5期669-685,共17页
Owing to advancement in advanced manufacturing technology,the reinforcement design of concrete structures has become an important topic in structural engineering.Based on bi-directional evolutionary structural optimiz... Owing to advancement in advanced manufacturing technology,the reinforcement design of concrete structures has become an important topic in structural engineering.Based on bi-directional evolutionary structural optimization(BESO),a new approach is developed in this study to optimize the reinforcement layout in steel-reinforced concrete(SRC)structures.This approach combines a minimum compliance objective function with a hybrid trusscontinuum model.Furthermore,a modified bi-directional evolutionary structural optimization(M-BESO)method is proposed to control the level of tensile stress in concrete.To fully utilize the tensile strength of steel and the compressive strength of concrete,the optimization sensitivity of steel in a concrete–steel composite is integrated with the average normal stress of a neighboring concrete.To demonstrate the effectiveness of the proposed procedures,reinforcement layout optimizations of a simply supported beam,a corbel,and a wall with a window are conducted.Clear steel trajectories of SRC structures can be obtained using both methods.The area of critical tensile stress in concrete yielded by the M-BESO is more than 40%lower than that yielded by the uniform design and BESO.Hence,the M-BESO facilitates a fully digital workflow that can be extremely effective for improving the design of steel reinforcements in concrete structures. 展开更多
关键词 bi-directional evolutionary structural optimization steel-reinforced concrete concrete stress reinforcement method hybrid model
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基于双向渐进结构优化法的机翼翼肋拓扑优化设计 被引量:1
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作者 黄成磊 范庆明 +1 位作者 刘红军 喻伯牙 《西北工业大学学报》 EI CAS CSCD 北大核心 2024年第6期1005-1010,共6页
太阳能无人机对自身结构质量的要求极为苛刻,而机翼作为太阳能无人机的重要组成部分,其质量占据了整体结构的绝大部分比重。因此,通常可对机翼结构进行优化设计,在满足结构强度的同时尽可能最大限度地降低机翼结构质量,进而提高无人机... 太阳能无人机对自身结构质量的要求极为苛刻,而机翼作为太阳能无人机的重要组成部分,其质量占据了整体结构的绝大部分比重。因此,通常可对机翼结构进行优化设计,在满足结构强度的同时尽可能最大限度地降低机翼结构质量,进而提高无人机的整体性能。以某大展弦比的太阳能无人机机翼为研究对象,利用双向渐进结构优化法,以机翼整体最小应变能为目标函数、翼肋体积分数为约束,对翼肋进行拓扑优化设计,根据单元应力大小对翼肋内部材料进行合理增删,并将优化后的翼肋进行重新设计,最终机翼整体质量下降了29.7%。结果表明:应用文中方法可以得到翼肋的最佳构型,有效提高了材料利用率,并且机翼结构质量大大降低,为太阳能无人机的轻量化研究提供了一定参考。 展开更多
关键词 机翼结构 太阳能无人机 双向渐进结构优化法 拓扑优化 翼肋减轻孔
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基于双向渐进结构优化算法的预制拼装箱梁剪力键设计研究 被引量:5
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作者 刘世明 黄如妍 +2 位作者 孙宝珊 巴松涛 李晓克 《世界桥梁》 北大核心 2024年第4期77-84,共8页
为研究单项和多项荷载组合作用下节段预制拼装箱梁接缝处剪力键受力状况,以郑州南四环全预制装配高架桥为背景,采用Abaqus软件和双向渐进结构优化(BESO)算法,建立典型箱梁节段分析模型,研究剪力键在单位轴力、剪力、扭矩、弯矩和不同荷... 为研究单项和多项荷载组合作用下节段预制拼装箱梁接缝处剪力键受力状况,以郑州南四环全预制装配高架桥为背景,采用Abaqus软件和双向渐进结构优化(BESO)算法,建立典型箱梁节段分析模型,研究剪力键在单位轴力、剪力、扭矩、弯矩和不同荷载组合作用下的布置规律。结果表明:轴力作用时剪力键应布置于顶板;剪力作用时剪力键应布置于腹板和底板;扭矩作用时剪力键应布置在顶板、腹板交接处和腹板外侧;横桥向弯矩作用时剪力键应布置于顶板、腹板下侧和底板;竖向弯矩作用时,剪力键应布置于顶板翼缘。轴剪组合作用下,当剪力占比小于50%时,轴力对剪力键布置起控制作用;当剪力占比达95.24%时,剪力对剪力键布置起控制作用。弯剪组合作用下,当剪力占比超过4.76%时,剪力对剪力键布置起控制作用;当剪力占比小于0.50%时,横桥向弯矩对剪力键布置起控制作用。扭剪组合作用下,当剪力占比超过0.10%时,剪力对剪力键布置起控制作用。预制拼装箱梁剪力键布置受荷载类型及荷载组合影响显著,应考虑不同位置剪力键的实际受力状况进行设计。 展开更多
关键词 节段预制拼装箱梁 剪力键布置 双向渐进结构优化算法 传力机理 单项荷载 荷载组合 设计优化 有限元法
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声子晶体能带结构仿真的CS-FEM方法及其在拓扑优化设计中的应用
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作者 赵跃 王刚 《河北工业大学学报》 CAS 2024年第1期1-10,共10页
针对声子晶体拓扑优化设计时能带结构和灵敏度计算效率低的缺陷,构造了一种Cell-based光滑有限元法模型(CS-FEM),并结合双向渐进结构优化法(BESO)实现了声子晶体的带隙最大化设计。基于四边形单元构造光滑子域,将梯度光滑技术与Bloch定... 针对声子晶体拓扑优化设计时能带结构和灵敏度计算效率低的缺陷,构造了一种Cell-based光滑有限元法模型(CS-FEM),并结合双向渐进结构优化法(BESO)实现了声子晶体的带隙最大化设计。基于四边形单元构造光滑子域,将梯度光滑技术与Bloch定理结合,构建了声子晶体能带结构计算的CS-FEM数值模型,并将其用于正问题的仿真模拟。在渐进优化准则下,通过BESO算法完成了声子晶体的优化设计。数值算例表明:CS-FEM能够适当软化离散系统的刚度,提供更加准确、高效的能带结构仿真结果;基于CS-FEM进行正问题的计算,在优化设计中得到了最优的拓扑构型,并有效地提高了优化效率,对于实现声子晶体的高效设计具有重要的参考价值。 展开更多
关键词 声子晶体 拓扑优化 光滑有限元法 梯度光滑技术 双向渐进结构优化法
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拓扑优化方法及其在微型柔性结构设计中的应用 被引量:11
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作者 孙宝元 杨贵玉 李震 《纳米技术与精密工程》 CAS CSCD 2003年第1期24-30,共7页
介绍了连续体结构拓扑优化设计中常用的均匀化方法和渐进结构优化法的原理,对拓扑优化中出现的数值不稳定现象——棋盘格式、网格依赖性和局部极值——进行了分析,通过典型实例和笔者最近的研究工作说明了拓扑优化在微型柔性机构设计中... 介绍了连续体结构拓扑优化设计中常用的均匀化方法和渐进结构优化法的原理,对拓扑优化中出现的数值不稳定现象——棋盘格式、网格依赖性和局部极值——进行了分析,通过典型实例和笔者最近的研究工作说明了拓扑优化在微型柔性机构设计中的应用,最后对拓扑优化技术的发展进行了展望. 展开更多
关键词 拓扑优化方法 微型柔性结构 结构设计 均匀化方法 渐进结构优化法 棋盘格式 网格依赖性 局部极值 微夹持器
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一种变位移约束限的结构拓扑优化方法 被引量:9
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作者 荣见华 邢晓娟 邓果 《力学学报》 EI CSCD 北大核心 2009年第3期431-439,共9页
针对仅有位移约束和重量最小的结构拓扑优化问题,基于ICM(独立、连续、映射)方法思路,提出了一种变位移约束限的结构拓扑优化方法.在每一轮子循环迭代求解开始时,为了控制拓扑设计变量的变化量,形成和引进了新的位移约束限.另外,建立了... 针对仅有位移约束和重量最小的结构拓扑优化问题,基于ICM(独立、连续、映射)方法思路,提出了一种变位移约束限的结构拓扑优化方法.在每一轮子循环迭代求解开始时,为了控制拓扑设计变量的变化量,形成和引进了新的位移约束限.另外,建立了单元删除阈值和几轮迭代循环的单元删除策略.为了确保优化迭代中结构非奇异和方法具有增添单元的功能,在结构孔洞和边界周围引入了一层人工材料单元,并建立了一套有效结构信息到结构最大设计域信息的映射转换方法.结合对偶求解方法,形成了一种新的连续体结构的拓扑优化方法.给出的算例表明该方法没有目标函数的振荡现象,且验证了该方法的正确性和有效性. 展开更多
关键词 拓扑优化 位移约束 连续体结构 ICM方法 渐进结构优化
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加窗渐进结构优化算法 被引量:9
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作者 王磊佳 张鹄志 祝明桥 《应用力学学报》 CAS CSCD 北大核心 2018年第5期1037-1044,共8页
渐进结构优化算法通常用于寻找结构最优的拓扑形状,指导结构的设计。但其删除准则的缺陷易引起计算效率低等一系列问题。本文对删除准则进行了改进,提出了加窗渐进结构优化算法。该算法引入结构整体平均应变能密度作为单元删除准则,同... 渐进结构优化算法通常用于寻找结构最优的拓扑形状,指导结构的设计。但其删除准则的缺陷易引起计算效率低等一系列问题。本文对删除准则进行了改进,提出了加窗渐进结构优化算法。该算法引入结构整体平均应变能密度作为单元删除准则,同时将单元删除率设定为窗口可调的自适应状态。该算法一定程度上解决了传统渐进结构优化算法中计算效率较低和优化过程易发生畸变的问题,且推广至高阶有限元单元应用后扩大了其应用范围。通过与Michell理论解对比,其构造的拓扑的可靠性也得到了证明。 展开更多
关键词 结构优化 拓扑优化 渐进结构优化算法 计算效率 加窗
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渐进结构优化设计的现状与进展 被引量:40
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作者 荣见华 谢忆民 +2 位作者 姜节胜 徐斌 付俊庆 《长沙交通学院学报》 2001年第3期16-23,共8页
渐进结构拓扑优化 (ESO)是近年来兴起的一种解决各类结构优化问题的数值方法。它是基于这样一个简单概念 :通过将结构中无效或低效的材料一步步去掉 ,剩下的结构将逐渐趋于优化。其特点在于简单 ,通用 ,优化的结构可为桁架、刚架、板壳... 渐进结构拓扑优化 (ESO)是近年来兴起的一种解决各类结构优化问题的数值方法。它是基于这样一个简单概念 :通过将结构中无效或低效的材料一步步去掉 ,剩下的结构将逐渐趋于优化。其特点在于简单 ,通用 ,优化的结构可为桁架、刚架、板壳或三维连续体。优化的约束条件包括应力、刚度、位移、频率、临界压力及动响应。阐述了渐进结构优化法的基本原理和具体步骤 ,并以一系列算例演示该法的计算机实施过程 ,最后介绍了ESO的最新进展。 展开更多
关键词 结构优化 有限元法 渐进法 计算力学 渐进结构 设计 ESO 现状 进展
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一种基于主应力的双方向渐进结构拓扑优化方法 被引量:8
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作者 罗志凡 荣见华 杜海珍 《应用基础与工程科学学报》 EI CSCD 2003年第1期98-105,共8页
针对桥梁结构的受力特性及其材料的性能要求 ,在基于主应力优化准则的基础上 ,本文提出了一种双方向渐进结构拓扑优化算法 .该算法在充分考虑材料拉压特性的同时 ,具有删除和恢复单元的功能 ,并消除了解的振荡现象 .
关键词 桥梁结构 受力特性 主应力优化准则 双方向渐进结构拓扑优化方法 拉压特性
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基于单元密度进化步长控制的双向渐进结构优化方法 被引量:6
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作者 匡兵 李应弟 +1 位作者 刘夫云 刘娟 《计算力学学报》 CAS CSCD 北大核心 2016年第1期15-21,共7页
在渐进结构优化方法中,单元密度的进化步长是获得全局最优解的关键因素之一。为了提高渐进结构优化方法的全局寻优能力,提出一种基于单元密度进化步长控制的双向渐进结构优化方法。该方法根据各单元对结构性能影响的权重系数,建立单元... 在渐进结构优化方法中,单元密度的进化步长是获得全局最优解的关键因素之一。为了提高渐进结构优化方法的全局寻优能力,提出一种基于单元密度进化步长控制的双向渐进结构优化方法。该方法根据各单元对结构性能影响的权重系数,建立单元密度进化步长的控制模型以控制主/次要单元的删除速率和添加速率,减小灵敏度误差并抑制灰度单元的产生。在控制单元密度进化步长的基础上结合双向渐进结构优化方法中添加单元的特点,以避免由于误删单元导致优化失败。同时,采用灵敏度再分配技术抑制棋盘格式以获得更平滑的优化构形。最后,通过两个算例验证了本文方法能有效地通过控制单元密度进化步长提高全局寻优能力。 展开更多
关键词 渐进结构优化方法 单元密度进化步长 权重系数 灵敏度误差 棋盘格式
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基于双向渐进结构优化法的钢桥系统失效模式识别 被引量:8
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作者 罗晓瑜 王春生 +2 位作者 姚书奎 寇婷苇 王茜 《中国公路学报》 EI CAS CSCD 北大核心 2017年第3期31-39,共9页
准确模拟钢桥系统失效状态,实现结构失效状态的转移是钢桥结构系统主要失效模式识别算法的核心之一。针对钢桥中已屈服的失效杆件在继续强化或卸载情况下可能导致的结构内力重分布现象,以及通过删除失效单元并对失效单元所在节点外施加... 准确模拟钢桥系统失效状态,实现结构失效状态的转移是钢桥结构系统主要失效模式识别算法的核心之一。针对钢桥中已屈服的失效杆件在继续强化或卸载情况下可能导致的结构内力重分布现象,以及通过删除失效单元并对失效单元所在节点外施加虚载实现结构拓扑状态转变的简化方法难以精确模拟结构实际受力性能的问题,提出了更全面反映钢材在弹性、屈服、强化、强化后卸载这4个阶段力学性能的受拉弹-塑性材料本构模型,钢材受压时采用考虑屈服应力折减的弹-塑性本构模型,并引入双向渐进结构优化法实现结构分析状态的自动转移;通过应力判断准则确定拉压杆件的弹塑性状态以及是否出现局部卸载现象,在钢桥系统失效模式搜寻过程中完成材料本构模型随单元受力状态的自动转换,直至达到材料极限强度后才予以删除这些杆件。结果表明:该方法充分考虑了钢桥构件间的相互影响关系与结构的内力重分布现象,通过精细化分析与结构状态自动转移,实现钢桥结构系统失效路径的搜寻;结合阶段临界强度分枝-约界法编制的识别钢桥主要失效模式的计算程序,实现了钢桥系统失效树主干和主枝的快速识别和生成,并成功识别出算例钢桁架桥的主要失效模式以及伪失效模式。 展开更多
关键词 桥梁工程 钢桥 双向渐近结构优化法 系统失效模式 结构可靠度 分枝-约界法
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