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Numerical modelling of anti-frost heave measures of high-speed railway subgrade in cold regions

机译:寒冷地区高速铁路路基防冻胀措施的数值模拟

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The frost heave and thaw settlement of high-speed railway subgrade directly affect the running speed and safety operations of trains in cold regions. Based on the theory behind water flow and heat transfer in unsaturated soils, a moisture-thermal coupling differential equation in frozen soils is established, and a full coupling of the temperature and moisture fields of frozen soils is realized. To validate the numerical model for frost heave, the frost heave of subgrade, which is calculated by combining the ice content simulated by the moisture-thermal coupling model with the hydrodynamic frost heave model, is compared to field data. Finally, the frost heave of three different subgrades (subgrade with insulation, subgrade with insulation + asphalt, and subgrade with gravel + insulation + asphalt) was calculated at the time of the strongest frost heave. The results show that the subgrade with gravel + insulation + asphalt performs best at controlling frost heave, followed by the subgrade with insulation + asphalt and the subgrade with insulation. In conclusion, it is recommended that the subgrade with gravel + insulation + asphalt should be applied in high speed railway construction to reduce frost heave damage and maintenance expenses, and to ensure that trains can operate at maximum speed.
机译:高速铁路路基的冻胀和解冻沉降直接影响寒冷地区列车的运行速度和安全运行。基于非饱和土壤中水的流动和传热的理论,建立了冻土的水热耦合微分方程,实现了冻土温度场和湿度场的完全耦合。为了验证冻胀的数值模型,将通过将湿热耦合模型模拟的冰含量与流体动力冻胀模型相结合而计算出的路基冻胀与现场数据进行了比较。最后,在最强霜冻时计算了三个不同路基(带保温层的路基,带绝缘层+沥青的路基和带砾石+绝缘层+沥青的路基)的冻胀量。结果表明,碎石+保温+沥青的路基在控制冻胀方面表现最好,其次是保温+沥青的路基和保温的路基。总之,建议在高速铁路建设中使用碎石+绝缘+沥青的路基,以减少冻胀的破坏和维护费用,并确保火车能够以最高速度运行。

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