首页> 外文期刊>International Journal of Heat and Mass Transfer >Stability analysis of transmission tower foundations in permafrost equipped with thermosiphons and vegetation cover on the Qinghai-Tibet Plateau
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Stability analysis of transmission tower foundations in permafrost equipped with thermosiphons and vegetation cover on the Qinghai-Tibet Plateau

机译:青藏高原带热虹吸和植被覆盖的多年冻土输电塔基础稳定性分析

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摘要

During the construction of the ±400 kV direct current power transmission line (DCPTL), frozen blocks were backfilled into the foundation pits in permafrost regions because of the lack of backfilling materials and other problems, but this resulted in less compact backfilled soils. To ensure the stability of the tower foundations, a large number of thermosiphons were installed. This study discusses the threat to the stability of tower foundations of water infiltration along the large voids created within the backfilled soils by the use of frozen blocks, and quantifies the efficacy of a combination of thermosiphons and vegetation cover in enhancing tower stability, based on field collected data from January 2011 to April 2017. The results indicate that the cooling effects of thermosiphons caused a large amount of net heat removal from the foundation soils, even during the first operational year of the foundation, while foundation soils without thermosiphons exhibited net heat input during the same period. Ponding in the pits and downward infiltration of water obviously work to warm the foundation soils, and can result in the settlement of the tower footings, threatening the tower stability. The combination of thermosiphons and vegetation cover is shown to effectively cool the foundation soils and to reduce the settlement of the footings, thus ensuring the continued tower stability. This study also shows that the backfilling of frozen blocks should be avoided in the current climate conditions, even though effective cooling measures like thermosiphons are used because the downward infiltration of water along the large voids between the frozen backfilled blocks can’t be totally prevented. If the current degradation of the frozen state of the backfilled soils continues, the infiltrated water, which has been frozen at the bottom of the backfill, will begin to thaw again, threatening the stability of the tower foundations.
机译:在±400 kV直流输电线路(DCPTL)的建设过程中,由于缺少回填材料和其他问题,冻土块被回填到多年冻土地区的基坑中,但这导致了回填土的致密性降低。为了确保塔基础的稳定性,安装了许多热虹吸管。这项研究讨论了冻结块对沿回填土壤内部产生的大孔隙渗入水对塔基础稳定性的威胁,并根据现场情况量化了热虹吸管和植被覆盖物组合在增强塔稳定性方面的功效。收集了2011年1月至2017年4月的数据。结果表明,即使在基础的第一个运营年中,热虹吸的冷却作用仍会导致从基础土壤中大量去除净热,而没有热虹吸的基础土壤则表现出净热输入。在同一时期。坑中的池塘和水的向下渗透显然可以使基础土壤变暖,并可能导致塔基沉降,从而威胁到塔的稳定性。热虹吸管和植被覆盖物的结合可以有效地冷却基础土壤并减少基础沉降,从而确保塔的持续稳定性。这项研究还表明,即使采用有效的冷却措施(例如热虹吸管),在当前的气候条件下也应避免对冷冻块进行回填,因为无法完全防止水沿着冷冻回填块之间的大空隙向下渗透。如果当前回填土的冻结状态继续恶化,已经在回填底部冻结的渗透水将再次融化,从而威胁到塔基的稳定性。

著录项

  • 来源
  • 作者单位

    State Key Laboratory of Frozen Soil EngineeringNorthwest Institute of Eco-Environment and ResourcesChinese Academy of Sciences;

    Test Electric Power Research Institute of State Grid Qinghai Electric Power Company;

    State Key Laboratory of Frozen Soil EngineeringNorthwest Institute of Eco-Environment and ResourcesChinese Academy of Sciences;

    State Key Laboratory of Frozen Soil EngineeringNorthwest Institute of Eco-Environment and ResourcesChinese Academy of Sciences;

    State Key Laboratory of Frozen Soil EngineeringNorthwest Institute of Eco-Environment and ResourcesChinese Academy of Sciences;

    State Key Laboratory of Frozen Soil EngineeringNorthwest Institute of Eco-Environment and ResourcesChinese Academy of Sciences;

    Test Electric Power Research Institute of State Grid Qinghai Electric Power Company;

    Test Electric Power Research Institute of State Grid Qinghai Electric Power Company;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tower foundation; Thermosiphon; Permafrost; Water infiltration; Backfilled frozen blocks;

    机译:塔基础;热虹吸管;多年冻土;水渗透;回填的冻块;

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