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Studying the deformation and stability of rock mass surrounding the power station caverns using NA and GEP models

机译:利用NA和GED模型研究围绕电站洞穴岩体的变形和稳定性

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In this research, an optimum equation is proposed for displacement estimation at the key point and key zone of powerhouse cavern sidewall in elasto-plastic condition based on the numerical experiments. Moreover, a new predictive equation is suggested to predict occurred displacement at the key point using the gene expression programming (GEP). Based on the numerical analyses (NA), the location of key point on the reciprocal longitudinal walls of the powerhouse cavern is studied. It was specified that for cavern with 33x52 m cross section, key point might be placed on the rock sidewall (left wall) or on the pillar side (right wall) of cavern. On the other hand, for cavern with 18x30 m cross section in various geo-engineering conditions, the key point was located on the rock sidewall. Verification of the proposed equations (from NA and GEP) were conducted using some case studies measurements which proved a good agreement of the new equations with the real values and showed the higher accuracy compared to the similar available equation. Finally, using warning levels of tunnel stability loss proposed by Sakurai, a new a system classification scheme is proposed for key point surrounding the powerhouse cavern based on the critical displacement.
机译:在该研究中,基于数值实验,提出了在Elasto-quidity of Elasto-quidence的关键点和关键区的位移估计中的最佳等式。此外,建议使用基因表达编程(GEP)预测新的预测等式以预测发生在关键点的发生位移。基于数值分析(NA),研究了动力室洞穴互核纵壁上的关键点的位置。有指定,对于带33x52 m横截面的洞穴,可以将关键点放在岩石侧壁(左壁)上或洞穴的柱侧(右壁)上。另一方面,对于具有18x30 m横截面的洞穴,在各种地理工程条件下,关键点位于岩石侧壁上。使用某种情况研究测量进行了验证所提出的等式(来自NA和GEP),该测量结果证明了与实际值的新方程的良好协议,并与类似的可用方程相比表现出更高的准确性。最后,利用Sakurai提出的警告水平,提出了一种基于临界位移围绕功率院洞穴的关键点的新型系统分类方案。

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