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A full-scale field experiment to study the thermal-deformation process of widening highway embankments in permafrost regions

机译:一种全规模的现场实验,研究了多年冻土地区拓宽堤防热变形过程

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摘要

As one of the widely used upgrading way in road engineering, the widening embankment(WE) has suffered evident differential deformation, which is even severer for highway in permafrost regions due to the temperature sensitivity of frozen soil and the heat absorption effect of the asphalt pavement. Given this issue, a full-scale experimental highway of WE was performed along the Qinghai-Tibet Highway(QTH) to investigate the differential deformation features and its developing law. The continuous three years'' monitoring data taken from the experimental site, including the ground temperature and the layered deformation of WE and original embankment(OE), were used to analyze the thermal-deformation process. The results indicate that the widening part presented the remarkable thermal disturbance to the existing embankment(EE). The underlying permafrost was in a noteworthy degradation state, embodying the apparent decrease of the permafrost table and the increase of the ground temperature. Correspondingly, the heat disruption induced by widening led to a much higher deformation at the widening side compared to the original embankment, showing a periodic stepwise curve. Specifically, the deformation mainly occurred in the junction of the EE and the widening part, most of which was caused by the thawing consolidation near the original permafrost table. In contrast, the deformation of EE mainly attributed to the compression of the active layer. Furthermore, it was the deformation origination differences that resulted in the differential deformation of WE developed gradually during the monitoring period, the maximum of which reached up to 64 mm.
机译:作为道路工程中广泛使用的升级方式之一,由于冷冻土壤的温度敏感性和沥青路面的热吸收效果,宽松的路堤(我们)遭受了明显的差异变形,这对于多年冻土区的高速公路甚至是高速公路。 。鉴于此问题,我们沿青藏公路(QTH)进行了全规模的实验公路,探讨了差异变形特征及其发展法。使用连续的三年的监测数据,包括地下温度和我们和原始堤防(OE)的地温和层状变形,用于分析热变形过程。结果表明,加宽部分向现有路堤(EE)呈现出显着的热扰动。潜在的永久冻土是一种值得注意的降解状态,体现了永久冻土表的表观降低和地温的增加。相应地,与原始堤防相比,通过较宽的导致通过扩展侧的变形引起的热破坏,示出了周期性的逐步曲线。具体地,主要发生在EE和加宽部分的交界处的变形,其中大部分是由原始永久冻土表附近的解冻整合引起的。相反,EE的变形主要归因于有源层的压缩。此外,它是导致我们在监测期间逐渐发展的差异变形的变形发起差异,其最大达到64毫米。

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  • 来源
    《寒旱区科学:英文版》 |2021年第002期|P.123-132|共10页
  • 作者单位

    State Key Laboratory of Road Engineering Safety and Health in High-altitude Regions CCCC First Highway Consultants Co. LTD Xi''an Shaanxi 710075 China;

    State Key Laboratory of Road Engineering Safety and Health in High-altitude Regions CCCC First Highway Consultants Co. LTD Xi''an Shaanxi 710075 ChinaCollege of Science and Engineering University of Tasmania Hobart 7005 Australia;

    State Key Laboratory of Road Engineering Safety and Health in High-altitude Regions CCCC First Highway Consultants Co. LTD Xi''an Shaanxi 710075 China;

    State Key Laboratory of Road Engineering Safety and Health in High-altitude Regions CCCC First Highway Consultants Co. LTD Xi''an Shaanxi 710075 China;

    State Key Laboratory of Road Engineering Safety and Health in High-altitude Regions CCCC First Highway Consultants Co. LTD Xi''an Shaanxi 710075 China;

    Institute of Earth Environment Chinese Academy of Sciences Xi''an Shaanxi 710061 ChinaCollege of Science and Engineering University of Tasmania Hobart 7005 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 铁路线路工程;
  • 关键词

    widening embankment; permafrost; deformation; in-situ experiment;

    机译:扩大堤防;永久冻土;变形;原位实验;
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