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Reliability-based design optimization of trusses under dynamic shakedown constraints

机译:动态Shakedown约束下基于可靠性的桁架设计优化

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摘要

A reliability-based design optimization problem under dynamic shakedown constraints for elastic perfectly plastic truss structures subjected to stochastic wind actions is presented. The simultaneous presence of quasi-static (cyclic) thermal loads is also considered. As usual in the shakedown theory, the quasi-statical loads will be defined as variable within a deterministic domain, while the dynamic problem will be treated considering an extended Ceradini-Gavarini approach. Some sources of uncertainties are introduced in the structural system and in the load definition. The reliability-optimization problem is formulated as the minimization of the volume of the structure subjected to deterministic and probabilistic constraints (related with the dynamic shakedown behavior). The related reliability constraints check is performed by means of a standard Monte Carlo simulation technique. An illustrative example is reported in order to validate the proposed approach and to provide useful practical tools.
机译:提出了一种基于可靠性的设计优化问题,在动态的Shakedown限制下进行了随机风动作的弹性完美塑料桁架结构。还考虑了准静态(环状)热负荷的同时存在。像往常一样,在Shakedown理论中,准静态负载将在确定性域内定义为变量,而在考虑扩展的Ceradini-Gavarini方法的情况下将处理动态问题。在结构系统和负载定义中引入了一些不确定性来源。可靠性优化问题被制定为对确定性和概率约束的结构的体积的最小化(与动态Shakedown行为有关)。通过标准蒙特卡罗模拟技术进行相关可靠性约束检查。报告说明性示例以验证所提出的方法并提供有用的实用工具。

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