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小净距2扩4隧道变形规律的BP小波神经预测
引用本文:林大炜,林从谋,黄逸群,黄清祥,孟希. 小净距2扩4隧道变形规律的BP小波神经预测[J]. 华侨大学学报(自然科学版), 2014, 0(2): 207-211. DOI: 10.11830/ISSN.1000-5013.2014.02.0207
作者姓名:林大炜  林从谋  黄逸群  黄清祥  孟希
作者单位:华侨大学 岩土工程研究所, 福建 泉州 362021
基金项目:国家自然科学基金资助项目(51278208);福建省交通科技发展基金资助项目(200910)
摘    要:以泉厦高速扩建工程大帽山隧道为例,通过周边位移和拱顶沉降的监测数据对小净距扩挖隧道的围岩变形规律进行分析.研究表明:小净距2扩4隧道具有和其他隧道不同的变形规律.在此基础上将小波函数引入BP神经网络建立BP小波神经网络模型,对特大断面超小净距隧道2扩4时围岩变形进行预测,并将预测结果与BP神经网络的预测结果进行对比.结果表明:BP小波神经网络模型收敛快、精度高,优于BP神经网络模型,预测的精度达10%以内,满足工程精度要求.

关 键 词:隧道  围岩  变形规律  BP小波神经网络  预测方法  小净距  扩挖

BP Wavelet Neural Prediction of Deformation Law of Two-to-Four Lane Tunnels with Small Clear Interval
LIN Da-wei;LIN Cong-mou;HUANG Yi-qun;HUANG Qing-xiang;MENG Xi. BP Wavelet Neural Prediction of Deformation Law of Two-to-Four Lane Tunnels with Small Clear Interval[J]. Journal of Huaqiao University(Natural Science), 2014, 0(2): 207-211. DOI: 10.11830/ISSN.1000-5013.2014.02.0207
Authors:LIN Da-wei  LIN Cong-mou  HUANG Yi-qun  HUANG Qing-xiang  MENG Xi
Affiliation:Institute of Geotechnical Engineering, Huaqiao University, Quanzhou 362021, China
Abstract:Taking the expansion engineering Damaoshan tunnels in the expressway from Quanzhou to Xiamen as an example, the deformation of surrounding rock of small interval expanded tunnels was analyzed by the monitoring data of peripheral displacement and vault settlement. The results show: the deformation of two-to-four lane tunnels with small clear interval is different to the deformation of other tunnels. Introducing wavelet function to wavelet neural network, BP wavelet neural network model was established to predict the surrounding rock deformation of extra-large section and two-to-four lane tunnels with small clear interval. Comparing BP wavelet neural network results with BP neural network results, it is indicated: BP wavelet neural network model has faster convergence and higher precision than BP neural network model. The accuracy of the forecast results is in 10%, which meets the engineering requirement.
Keywords:tunnel  surrounding rock  deformation  BP wavelet neural network  prediction method  small interval  expansion excavation
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