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软土地区盾构隧道弯曲刚度有效率取值研究
引用本文:高树东,高文元,卢权威,张稳军.软土地区盾构隧道弯曲刚度有效率取值研究[J].地下空间与工程学报,2021,17(1):248-254.
作者姓名:高树东  高文元  卢权威  张稳军
作者单位:天津滨海新区轨道交通投资发展有限公司,天津300459;天津大学建筑工程学院,天津300354;天津大学滨海土木工程结构与安全教育部重点实验室,天津300354
基金项目:天津市建设系统科学技术项目发展计划(2016-17)
摘    要:修正惯用法以其概念明确、理论成熟和计算便捷的特点在盾构隧道设计中被广泛应用。弯曲刚度有效率η是修正惯用法中的重要参数,其取值对于隧道结构的计算结果具有至关重要的影响。研究基于荷载结构法,利用有限元计算软件ABAQUS建立了匀质圆环模型和梁-弹簧模型,研究了盾构隧道在软土地区通错缝拼装、基床系数和接头相对刚度对弯曲刚度有效率η的影响。通过对数值模拟计算结果进行整理,得到了弯曲刚度有效率η的拟合公式和通错缝拼装弯曲刚度有效率η的转化公式,为确定修正惯用法中的弯曲刚度有效率η提供了计算方法和参考依据。

关 键 词:盾构隧道  软土地区  修正惯用法  弯曲刚度有效率  影响因素
收稿时间:2020-08-19

Study on the Value of Effective Bending Rigidity Ratio of Subway Shield Tunnel in Soft Soil Area
Gao Shudong,Gao Wenyuan,Lu Quanwei,Zhang Wenjun.Study on the Value of Effective Bending Rigidity Ratio of Subway Shield Tunnel in Soft Soil Area[J].Chinese Journal of Underground Space and Engineering,2021,17(1):248-254.
Authors:Gao Shudong  Gao Wenyuan  Lu Quanwei  Zhang Wenjun
Abstract:The modified routine method is widely used in shield tunnel design because of its clear concept, mature theory and convenient calculation. The effective ratio of bending rigidity η is an important parameter in the modified routine method. Its value has a crucial influence on the calculation result of the tunnel structure. Based on the load structure method, the study uses finite element calculation software to establish a homogeneous ring model and a beam-spring model. The method are applied to the calculation of the effective ratio of bending rigidity η. The effect of the coefficient of subgrade reaction, joint relative stiffness and erection method on the effective ratio of bending rigidity η is studied. By arranging the numerical simulation results, the fitting formula of the effective ratio of bending rigidity η and the conversion formula of the bending stiffness effective efficiency η of the fault-stitching assembly are obtained. The formula provides a calculation method for determining the effective stiffness η of the modified idiom and reference basis.
Keywords:shield tunnel  soft soil area  modified routine method  effective ratio of bending rigidity  influencing factor  
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