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首页> 外文期刊>Arabian journal of geosciences >Discrete element modeling of a cross-river tunnel under subway train operation during peak and off-peak periods
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Discrete element modeling of a cross-river tunnel under subway train operation during peak and off-peak periods

机译:峰值和近期峰期间跨河隧道跨河隧道的离散元素建模

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摘要

In China, a large number of passengers during peak period are a key problem issue that results in a peak load on the subway tunnel. The irregular vibration due to the overloading of train will cause critical damage to rail track and foundations. Due to the lack of field monitoring data, the effects of trainload-induced irregular vibration to the stability of concrete foundation and surrounding area remain a crucial scientific challenge. In current study, a cross-river tunnel in Wuhan subway 2nd line was selected as a case study. The numerical model was developed by using the discrete element method with the consideration of rail track, sleeper, concrete lining, and surrounding strata. Irregular vibration levels induced by train operation with different loads, which included the normal load and peak load, were applied to the rail. Stress, vertical and radial displacement, and particle acceleration in the rail, sleeper, concrete lining, and surroundings were calculated during the numerical simulation. The results revealed that with the increasing of trainload, the settlement of the rail track increases linearly. The symmetrical position on both sides of the concrete lining was compared and showed that the radial displacement and hoop stress of the particles are evenly distributed. The vibrational frequency of the concrete lining was closely associated with the load frequency. The symmetrical trend of radial displacement of particles in the surroundings showed that the value decreased with increasing distance from the outer edge of the lining. The effective distance of train irregular vibration load in the horizontal path is more than 4.0m, which should be considered when an adjacent tunnel is constructed simultaneously.
机译:在中国,高峰期的大量乘客是一个关键问题问题,导致地铁隧道的峰值负荷。由于火车过载导致的不规则振动将对铁路轨道和基础造成危险损害。由于缺乏现场监测数据,梁载引起的不规则振动对混凝土基础及周边地区稳定性的影响仍然是至关重要的科学挑战。在目前的研究中,选择了武汉地铁2号线的跨河隧道作为案例研究。通过使用离散元素方法开发了数值模型,以考虑到轨道,睡眠机,混凝土衬里和周围地层。用不同负载的火车操作引起的不规则振动水平,包括正常负载和峰值负荷,施加到轨道上。在数值模拟期间计算了轨道,卧式,混凝土衬里和周围环境中的应力,垂直和径向位移和粒子加速度。结果表明,随着研磨机载荷的增加,轨道轨道的沉降线性地增加。比较混凝土衬里两侧的对称位置,并显示颗粒的径向位移和旋转响应均匀分布。混凝土衬里的振动频率与负载频率密切相关。周围颗粒径向位移的对称趋势表明,随着距离衬砌的外边缘的距离增加而降低。水平路径中的列车不规则振动载荷的有效距离大于4.0米,应在同时构造相邻的隧道时考虑。

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