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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Efficient Robust Geotechnical Design of Drilled Shafts in Clay Using a Spreadsheet
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Efficient Robust Geotechnical Design of Drilled Shafts in Clay Using a Spreadsheet

机译:使用电子表格的粘土钻孔轴的高效鲁棒岩土工程设计

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This paper presents an efficient robust geotechnical design (RGD) approach that considers performance requirements, design robustness, and cost efficiency simultaneously. In this paper, design robustness is measured via the variation in the performance function of concern that can be evaluated using reliability analysis. Furthermore, the performance requirements of the system are also evaluated using reliability analysis. Thus, the evaluation of design robustness and the evaluation of performance requirements share common computational steps, referred to herein as computational coupling. This coupling for computational efficiency is a significant feature of the proposed RGD approach. Within the framework of the proposed RGD approach, design robustness, cost efficiency, and performance requirements can be considered simultaneously by means of multiobjective optimization. Furthermore, a practical and efficient procedure is developed for such optimization using a feature resident in a popular spreadsheet program. Through an example of the design of a drilled shaft in clay, the effectiveness of this new RGD approach is demonstrated. The results show that the hard-to-control variability resulting from construction variation, variable loading conditions, model errors, and uncertain geotechnical parameters in the design of drilled shafts in clay can be effectively considered with the proposed RGD approach.
机译:本文提出了一种有效的鲁棒岩土工程设计(RGD)方法,该方法同时考虑了性能要求,设计鲁棒性和成本效率。在本文中,通过考虑的性能函数的变化来衡量设计的稳健性,可以使用可靠性分析对其进行评估。此外,还使用可靠性分析来评估系统的性能要求。因此,设计鲁棒性的评估和性能要求的评估共享共同的计算步骤,在此称为计算耦合。计算效率的这种耦合是所提出的RGD方法的重要特征。在建议的RGD方法的框架内,可以通过多目标优化同时考虑设计的稳健性,成本效率和性能要求。此外,使用驻留在流行的电子表格程序中的特征,为这种优化开发了实用而有效的程序。通过一个在粘土中钻孔的轴的设计实例,证明了这种新的RGD方法的有效性。结果表明,所提出的RGD方法可以有效地考虑由于施工变化,可变载荷条件,模型误差以及不确定的岩土参数而导致的难以控制的变化。

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