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Dynamic Characteristic and Fatigue Accumulative Damage of a Cross Shield Tunnel Structure under Vibration Load

机译:振动负荷下横盾隧道结构的动态特性和疲劳累积损伤

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摘要

This study presents an improved constitutive model for concrete under uniaxial cyclic loading which considers the fatigue stiffness degradation, fatigue strength degradation, and fatigue residual strain increment of concrete fatigue damage. According to the constitutive model, the dynamic response and cumulative damage of the tunnel cross structure under various train operation years were analyzed. The results show that the vibration in the middle of the main tunnel is most violent. With the increase of train operation period, the acceleration in the middle of the transverse passage floor, both sides of the wall corner and the vault increase significantly, and the maximum principal stress increases significantly only in both sides of the wall corner. The compressive damage is mainly distributed at both sides of the wall corner, while tensile damage is distributed in both sides of the inner wall corner. The accumulative damage of the cross structure exhibits a two-stage profile. The size and range of accumulative tensile damage of the connecting transverse passage are greater than those of accumulative compressive damage.
机译:本研究提高了单轴循环载荷下的混凝土的改进本构模型,其考虑了疲劳刚度降解,疲劳强度降解和疲劳残留应变增量的混凝土疲劳损伤。根据本构模型,分析了各种列车运营年度下隧道交叉结构的动态响应和累积损伤。结果表明,主要隧道中间的振动是最暴力的。随着火车操作周期的增加,横向通道地板中间的加速度,墙壁角落的两侧和拱顶显着增加,并且最大主要压力仅在墙壁两侧显着增加。压缩损坏主要分布在墙壁的两侧,而拉伸损伤在内壁角的两侧分布。交叉结构的累积损坏具有两级轮廓。连接横向通道的累积拉伸损坏的尺寸和范围大于累积抗压损伤。

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