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An optimization based approach for structural design considering safety, robustness, and cost

机译:考虑安全性,坚固性和成本的基于优化的结构设计方法

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摘要

Structural systems are subject to uncertainties due to variability in many hard-to-control noise factors, which include external loads, material properties, and construction workmanship. Traditional structural design methodologies, although clearly recognizing the presence of uncertainty, omit robustness against the effects of uncertainty in the design process. First, if the actual uncertainties in the design process are underestimated, the design may fail to satisfy safety requirements. Second, to guarantee safety in the presence of high variability of the system response, the structural designer may be forced to choose an overly conservative, thus inefficient and costly design. When robustness against uncertainty is not treated as one of the design objectives, the trade-off between over-design for safety and under-design for cost-savings is exacerbated. This manuscript demonstrates that safe and cost-effective structural engineering designs maybe achieved by implementing Robust Design concepts originally developed in manufacturing engineering to consider robustness against uncertainty. This manuscript presents an optimization-based methodology for the application of Robust Design principles to structural design and demonstrates its application on an academic problem involving design of a reinforced-concrete frame.
机译:由于许多难以控制的噪声因素(包括外部载荷,材料特性和施工工艺)的变化,结构系统存在不确定性。传统的结构设计方法学虽然清楚地认识到不确定性的存在,但在设计过程中却忽略了针对不确定性影响的鲁棒性。首先,如果低估了设计过程中的实际不确定性,则设计可能无法满足安全要求。其次,为了在系统响应高度可变的情况下保证安全,结构设计人员可能被迫选择过于保守的设计,从而导致效率低下和成本高昂的设计。如果针对不确定性的鲁棒性不被视为设计目标之一,则在安全性过高设计与节省成本的低度设计之间的权衡会加剧。该手稿表明,可以通过实施最初在制造工程中开发的考虑到对不确定性的鲁棒性的稳健设计概念来实现安全且具有成本效益的结构工程设计。该手稿提出了一种基于优化的方法,用于将稳健设计原理应用于结构设计,并演示了其在涉及钢筋混凝土框架设计的学术问题上的应用。

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