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Settlement simulation of soft clay in the subway under dynamic load based on Midas GTS NX

机译:基于Midas GTS NX的动态负荷下地铁软粘土的结算模拟

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The subway has become the main way for people to travel nowadays. The saturated soft clay area has a large population and subway construction is the most extensively distributed. The saturated soft clay foundation will settle under the dynamic load of the subway train, which will affect the service life and structural safety. To study the settlement characteristics of soft clay under the dynamic load of the subway, a three-dimensional dynamic finite element model was established based on the finite element software Midas GTS NX, and the soft clay under the normal design speed (80 km/h) and the high-speed (120 km/h) were compared and analyzed. The research results show that the higher the train speed, the larger the lateral influence range of the surface settlement trough, but the settlement decreases with the increase of the subway running speed. The settlement of the subway line after one year of operation is about 45mm, and the settlement after 20 years is about 58mm. The growth rate of the settlement prediction curve decreases gradually, and the settlement increment is very small for a long time in the later period of operation.
机译:地铁已经成为人们时下出行的主要方式。饱和软土区有一个人口众多,地铁建设是分布最广。饱和软粘土地基将在地铁列车,这将影响使用寿命和结构安全的动态负载下解决。为了研究地铁的动态负载下软粘土的沉降特性,三维动态有限元模型是基于有限元软件迈达斯GTS NX,和在正常的设计速度的软粘土(80公里每小时建立)和高速(120公里/小时)进行比较分析。研究结果表明,该列车速度越高,较大的表面沉降槽的横向影响范围,但结算与地铁的运行速度的增加而减小。运行一年后,地铁一号线的沉降约45MM。而20年后的沉降约58毫米。沉降预测曲线的生长速度逐渐减小,并且结算增量非常小为在操作的后期时间长。

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