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Simulation Analysis of the Refreezing Characteristics of Cast-in-Place Piles in Permafrost Regions on the Qinghai-Tibet Plateau

机译:青藏高原多年冻土区灌注桩再冻特性的模拟分析

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The stability of piles used for the Qinghai-Tibet Power Transmission Line (QTPTL) is important for the operation of the line because this type of foundation is generally used in areas with unfavorable geological conditions. Intensive heat influence of casting temperatures and hydration heat means that the refreezing of cast-in-place piles obviously affects the schedule and cost of the project. The refreezing process was simulated on a cast-in-place pile based at tower 1443 of QTPTL in the warm and ice-rich Touerjiu region, Qinghai-Tibet Plateau. The results show that the thermal energy, originating from the casting temperature and hydration heat of cement, dissipates mainly through lateral heat flux, resulting in the warming and thawing of surrounding soil. The stability of the pile will dramatically decrease during the process. It was also found that the dissipation of the thermal energy is affected by the heat conductivity and water/ice content of the surrounding soil. The refreezing process of a 1-m-diameter pile in Touerjiu region continues for about 67 days. The maximum thermal influence range is about 9.8 m for a single pile, and group pile effects exist for towers of QTPTL in Touerjiu region. The duration of the thermal impact of casting temperature and hydration heat of a single pile is about 630 days.
机译:青藏输电线路(QTPTL)所用桩的稳定性对于输电线路的运行非常重要,因为这种类型的地基通常用于地质条件不利的地区。浇筑温度和水化热的强烈热影响意味着,现浇桩的重新冻结明显影响了项目的进度和成本。在青藏高原土尔ji地区温暖且富含冰的QTPTL塔1443上的现浇桩上模拟了再冻过程。结果表明,源自浇注温度和水泥水化热的热能主要通过侧向热流消散,导致周围土壤变暖和融化。在此过程中,桩的稳定性将大大降低。还发现热能的耗散受到周围土壤的热导率和水/冰含量的影响。头尔ji地区直径为1米的桩的重新冻结过程持续约67天。单桩的最大热影响范围约为9.8 m,在头尔region地区的QTPTL塔中存在群桩效应。单桩的浇铸温度和水化热的热影响持续时间约为630天。

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