人工冻结对南京砂液化特性的影响

Jie Zhou, Zeyao Li, Wanjun Tian, Jiawei Sun
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摘要

目的研究人工冻结对南京砂土液化特性的影响及其机理。利用GDS动力三轴系统,对长江中下游广泛发现的南京砂在地震荷载和地铁列车振动荷载作用下的设计/方法/途径进行了研究,并在试验中识别了这两种荷载对南京砂冻结施工的潜在危害。结果表明:无论是地震荷载还是地铁列车振动荷载,冻融循环都会显著降低南京砂的刚度和抗液化能力,特别是在第一次冻融循环中;冻融循环次数越多,粉质细砂结构性能越差,越容易液化;冻融循环会增加南京砂动孔隙压力对动荷载响应的敏感性;冻结温度和有效围压越低,南京砂冻融循环后的抗液化能力越差;与地铁列车振动荷载相比,南京地震荷载对南京沙土冻结工程的潜在危险性较小。研究成果对长江下游地铁穿越通道人工冻地施工具有指导意义,对保障地铁隧道及其穿越通道的施工安全具有指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of artificial freezing on liquefaction characteristics of Nanjing sand
PurposeThis study purposes to study the influence of artificial freezing on the liquefaction characteristics of Nanjing sand, as well as its mechanism.Design/methodology/approachwas studied through dynamic triaxial tests by means of the GDS dynamic triaxial system on Nanjing sand extensively discovered in the middle and lower reaches of the Yangtze River under seismic load and metro train vibration load, respectively, and potential hazards of the two loads to the freezing construction of Nanjing sand were also identified in the tests.FindingsThe results show that under both seismic load and metro train vibration load, freeze-thaw cycles will significantly reduce the stiffness and liquefaction resistance of Nanjing sand, especially in the first freeze-thaw cycle; the more freeze-thaw cycles, the worse structural behaviors of silty-fine sand, and the easier to liquefy; freeze-thaw cycles will increase the sensitivity of Nanjing sand's dynamic pore pressure to dynamic load response; the lower the freezing temperature and the effective confining pressure, the worse the liquefaction resistance of Nanjing sand after freeze-thaw cycles; compared to the metro train vibration load, the seismic load in Nanjing is potentially less dangerous to freezing construction of Nanjing sand.Originality/valueThe research results are helpful to the construction of the artificial ground freezing of the subway crossing passage in the lower reaches of the Yangtze River and to ensure the construction safety of the subway tunnel and its crossing passage.
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