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A Quantitative Evaluation Method Based on Back Analysis and the Double-Strength Reduction Optimization Method for Tunnel Stability

机译:一种基于BAST分析的定量评价方法和隧道稳定性的双强度减小优化方法

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摘要

Quantifying tunnel stability using the proposed combination of back analysis and the strength reduction method (SRM) is useful during construction. To feasibly and reliably obtain geotechnical parameters for the surrounding rock (which vary in different places), a real-coded genetic algorithm is used in setting the initial parameters of the neural network to improve the prediction accuracy of the parameters via back analysis by reasonably selecting the selection operator, crossover operator, and mutation operator. After obtaining the parameters, the proposed SRM, i.e., the optimization double-strength reduction method (ODSRM), which is based on the optimization method, is used to evaluate stability. By using this method, the cohesion and friction angle have different reduction factors that are more reasonable and accurate. The combined method is verified in an application to the Yu Liao Tunnel, where it is demonstrated that the combined method can use the measured displacements to obtain the safety factor. Compared with the traditional method, the proposed back analysis method can reduce errors in the predicted performance, and unlike the SRM, the ODSRM can avoid overestimating the safety factor with the same reduction factor. Finally, the presented methods can reduce the amount of calculation required and are convenient for evaluating tunnel stability with displacement.
机译:使用所提出的后分分析和强度缩减方法(SRM)进行量化隧道稳定性在施工期间是有用的。为了可行和可靠地获得周围岩石的岩土参数(在不同的地方变化),实际编码的遗传算法用于设定神经网络的初始参数,通过合理选择来提高参数的预测准确性选择操作员,交叉运算符和突变运算符。获得参数后,所提出的SRM,即优化双强度缩减方法(ODSRM),其基于优化方法,用于评估稳定性。通过使用这种方法,内聚力和摩擦角具有不同的减少因子,更合理和准确。在对Yu Liao隧道的应用中验证了组合方法,在那里证明组合方法可以使用测量的位移来获得安全系数。与传统方法相比,所提出的回分析方法可以减少预测性能的误差,与SRM不同,ODSRM可以避免高估具有相同减少因子的安全系数。最后,所提出的方法可以减少所需的计算量,方便地评估隧道稳定性的位移。

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