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Underground excavation shape optimization considering material nonlinearities

机译:考虑材料非线性的地下开挖形状优化

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摘要

The shape of an underground opening is a major factor influencing the stability of the underground excavation. Obtaining an optimized shape is significant in civil and mining engineering applications for increasing stability and reducing costs. This paper presents an updated method for finding the optimal shape of an underground excavation using the latest bi-directional evolutionary structural optimization (BESO) techniques considering material nonlinearities. Recent development in the BESO applications to underground excavation is discussed through illustrated examples. Details are given of the BESO method used to finding the optimal shape based on the global stiffness. The methodology of the stiffness based optimization techniques is described with examples of applications to underground excavation. Applications to underground void structures, such as cavern and tunnel, as well as underground solid structure such mine pillar are demonstrated. It is concluded that stiffness based optimization techniques are applicable to underground excavations and practical shape of an excavation can be generated as a result of the BESO application.
机译:地下洞口的形状是影响地下开挖稳定性的主要因素。在土木和采矿工程应用中,获得最佳形状对于提高稳定性和降低成本至关重要。本文提出了一种更新的方法,该方法使用最新的双向演化结构优化(BESO)技术来考虑地下材料的非线性,从而找到地下挖掘的最佳形状。通过示例说明了BESO在地下挖掘中的最新进展。详细介绍了用于基于整体刚度找到最佳形状的BESO方法。描述了基于刚度的优化技术的方法,并举例说明了地下挖掘的应用。演示了在地下洞室结构(如洞穴和隧道)以及地下实体结构(如矿井柱)中的应用。结论是,基于刚度的优化技术适用于地下开挖,并且由于BESO的应用,可以生成实际的开挖形状。

著录项

  • 来源
    《Computers and Geotechnics》 |2014年第5期|81-87|共7页
  • 作者单位

    School of Civil, Environmental and Chemical Engineering, RMIT University, CPO Box 2476, Melbourne 3001, Australia;

    School of Civil, Environmental and Chemical Engineering, RMIT University, CPO Box 2476, Melbourne 3001, Australia;

    School of Civil, Environmental and Chemical Engineering, RMIT University, CPO Box 2476, Melbourne 3001, Australia;

    School of Civil, Environmental and Chemical Engineering, RMIT University, CPO Box 2476, Melbourne 3001, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cavern; Excavation; Finite element; Optimization; Evolutionary structural optimization; Numerical analysis;

    机译:洞穴;挖掘;有限元;优化;进化结构优化;数值分析;

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