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Shape and Reinforcement Optimization of Underground Tunnels

机译:地下隧道的形状与加固优化

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References(24) Cited-By(7) Design of support system and selecting an optimum shape for the opening are two important steps in designing excavations in rock masses. Currently selecting the shape and support design are mainly based on designer's judgment and experience. Both of these problems can be viewed as material distribution problems where one needs to find the optimum distribution of a material in a domain. Topology optimization techniques have proved to be useful in solving these kinds of problems in structural design. Recently the application of topology optimization techniques in reinforcement design around underground excavations has been studied by some researchers. In this paper a three-phase material model will be introduced changing between normal rock, reinforced rock, and void. Using such a material model both problems of shape and reinforcement design can be solved together. A well-known topology optimization technique used in structural design is bi-directional evolutionary structural optimization (BESO). In this paper the BESO technique has been extended to simultaneously optimize the shape of the opening and the distribution of reinforcements. Validity and capability of the proposed approach have been investigated through some examples.
机译:参考文献(24)引用(7)支撑系统的设计和为开口选择最佳形状是岩体中开挖设计的两个重要步骤。当前选择形状和支撑设计主要是基于设计师的判断和经验。这两个问题都可以看作是材料分布问题,需要在一个域中找到材料的最佳分布。事实证明,拓扑优化技术可用于解决结构设计中的此类问题。最近,一些研究人员研究了拓扑优化技术在地下基坑加固设计中的应用。在本文中,将引入三相材料模型,在正常岩石,加筋岩石和空隙之间进行转换。使用这种材料模型,可以同时解决形状和加固设计的问题。结构设计中使用的一种众所周知的拓扑优化技术是双向进化结构优化(BESO)。在本文中,BESO技术已得到扩展,可以同时优化开口的形状和钢筋的分布。通过一些实例研究了该方法的有效性和能力。

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