Multivariate optimisation of key factors for construction operations

Q4 Engineering
E. Telis, G. Besseris, C. Stergiou, M. Limbachiya
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引用次数: 0

Abstract

This paper presents a methodology for simultaneous optimisation taking into account the key factors for earth retaining structures design, using a real-world case study. These are safety factor, overall cost, total displacements and steel tension. The possible values of the design variables are discrete and its applications often depend on the engineers’ experience, the geotechnical investigation outcome and site accessibility. These variables are chosen based on the ground morphology and on the steel section and temporary prestressed anchors properties. The approach for this simultaneous optimisation of the critical design characteristics of the ‘Berlinoise’ retaining project is based on the desirability analysis – a proven statistical methodology. The presented work was supplemented with the use of finite element analysis. Via this methodology, engineers accurately predict the needed design characteristics, for a robust and financially beneficial study, as long as the input data are properly defined and the design variables values wisely selected.
施工作业关键因素的多元优化
本文提出了一种同时优化的方法,考虑到土挡结构设计的关键因素,使用现实世界的案例研究。这些是安全系数、总成本、总位移和钢张力。设计变量的可能值是离散的,其应用通常取决于工程师的经验、岩土调查结果和场地的可达性。这些变量的选择是基于地面形态和钢截面和临时预应力锚杆的性能。同时优化“柏林之声”保留项目的关键设计特征的方法是基于可取性分析-一种经过验证的统计方法。本文还补充了有限元分析的应用。通过这种方法,工程师可以准确地预测所需的设计特征,只要输入数据正确定义,并且明智地选择设计变量值,就可以进行稳健且经济上有益的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Quality Engineering and Technology
International Journal of Quality Engineering and Technology Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
发文量
1
期刊介绍: IJQET fosters the exchange and dissemination of research publications aimed at the latest developments in all areas of quality engineering. The thrust of this international journal is to publish original full-length articles on experimental and theoretical basic research with scholarly rigour. IJQET particularly welcomes those emerging methodologies and techniques in concise and quantitative expressions of the theoretical and practical engineering and science disciplines.
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