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Seasonal differences in seismic responses of embankment on a sloping ground in permafrost regions

机译:多年冻土区斜坡上路堤地震反应的季节性差异

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Because of its direct influence on the amount of unfrozen water and on the strength of intergranular ice in a frozen soil, temperature has a significant effect on all aspects of the mechanical behavior of the active layer in which temperature fluctuates above and below 0 degrees C. Hence seismic responses of engineering structures such as embankment on a sloping ground in permafrost regions exhibit obvious differences with seasonal alternation. To explore the distinctive seismic characteristics of a railway embankment on the sloping ground in permafrost regions, a coupled water-heat-dynamics model is built based on theories of heat transfer, soil moisture dynamics, frozen soil mechanics, soil dynamics, and so on. A well-monitored railway embankment on a sloping ground in Qinghai-Tibet Plateau is taken as an example to simulate seismic responses in four typical seasons in the 25th service year. The numerical results show that seismic acceleration, velocity and displacement responses are significantly different in four typical seasons, and the responses on October 15 are much higher among the four seasons. When the earthquake is over, there are still permanent differential deformations in the embankment and even severe damages on the left slope on October 15. Therefore, this position should be monitored closely and repaired timely to ensure safe operation. In addition, the numerical model and results may be a reference for maintenance, design and study on other embankments in permafrost regions. (c) 2015 Elsevier Ltd. All rights reserved.
机译:由于温度直接影响冻土中未冻结的水量和晶间冰的强度,温度对温度在0摄氏度以下波动的活性层力学行为的各个方面都有重要影响。因此,多年冻土区的工程结构,例如在斜坡上的路堤的地震响应表现出明显的差异。为了研究多年冻土区斜坡上铁路路堤的独特地震特征,基于传热,土壤水分动力学,冻土力学,土壤动力学等理论,建立了水热耦合模型。以青藏高原坡地上受良好监控的铁路路堤为例,模拟了第25个服务年中四个典型季节的地震响应。数值结果表明,在四个典型季节,地震加速度,速度和位移响应明显不同,而在四个季节中,10月15日的响应要高得多。地震结束后,10月15日,路堤上仍会出现永久性的差异变形,甚至在左坡上还会造成严重破坏。因此,应密切监视该位置并及时进行维修,以确保安全运行。此外,数值模型和结果可能为多年冻土区其他路堤的维护,设计和研究提供参考。 (c)2015 Elsevier Ltd.保留所有权利。

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