热稳定性评估和工程解决方案的应用,以保护加拿大哈德逊湾海岸附近正在退化的路堤

IF 3.8 2区 工程技术 Q1 ENGINEERING, CIVIL Cold Regions Science and Technology Pub Date : 2024-06-13 DOI:10.1016/j.coldregions.2024.104230
Xiangbing Kong , Guy Doré
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引用次数: 0

摘要

加拿大魁北克省北极地区的努纳维克有 14 个北部社区。交通基础设施在这些地区的社会和经济发展中发挥着至关重要的作用。永久冻土的融化损害了北部交通基础设施的稳定性。严酷的北极气候条件限制了安装有效的监测系统来评估基础设施的稳定性。在阿库利维克,通道连接阿库利维克机场和阿库利维克村。目前还没有监测系统来观察通路永久冻土地基的热状况,这阻碍了开展预防性维护活动的能力,尤其是在努纳维克气候变暖的情况下。本文介绍了一个旨在使用新方法评估通路稳定性的项目,并根据最近开发的设计工具提出了稳定道路的适应性解决方案。本文特别关注了边坡下的地基土壤,由于积雪的影响,这里的冻土层退化相对较快。结果表明,边坡下的热梯度为 0.29 °C/m,中线下的热梯度几乎为零。为了进一步研究热状况,还考虑了气候变暖的预测,为设计有前景的适应解决方案提供了安全系数。这些结果有助于政府机构评估地下永久冻土的热状况,并在阿库里维克部署潜在的适应解决方案。
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Assessment of thermal stability and application of engineering solutions to preserve the degrading road embankment near Hudson Bay Coast, Canada

There are 14 northern communities in Nunavik, the Arctic region of Quebec province, Canada. Transportation infrastructure plays a vital role in the social and economic development of these localities. The thawing of permafrost compromises the stability of northern transportation infrastructure. Harsh Arctic climate conditions limit the installation of effective monitoring systems to assess infrastructure stability. In Akulivik, the access road connects the Akulivik airport and the village of Akulivik. There is no monitoring to observe the thermal condition of the permafrost foundation of the access road, hindering the capacity to perform preventive maintenance activities, especially in the context of observed climate warming in Nunavik. This paper describes a project aiming at the assessment of the stability of the access road using a new approach and proposes adaptation solutions to stabilize the road, based on design tools recently developed. Particular attention was paid to the foundation soil under the side slope where relatively rapid permafrost degradation was occurring due to accumulated snow. The results indicate a positive thermal gradient of 0.29 °C/m under the side slope and a near-zero thermal gradient under the centerline. Projected climate warming was also considered to further investigate the thermal condition, providing a safety margin for the design of promising adaptation solutions. These results assist government agencies in evaluating the thermal conditions of underlying permafrost and deploying potential adaptation solutions in Akulivik.

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来源期刊
Cold Regions Science and Technology
Cold Regions Science and Technology 工程技术-地球科学综合
CiteScore
7.40
自引率
12.20%
发文量
209
审稿时长
4.9 months
期刊介绍: Cold Regions Science and Technology is an international journal dealing with the science and technical problems of cold environments in both the polar regions and more temperate locations. It includes fundamental aspects of cryospheric sciences which have applications for cold regions problems as well as engineering topics which relate to the cryosphere. Emphasis is given to applied science with broad coverage of the physical and mechanical aspects of ice (including glaciers and sea ice), snow and snow avalanches, ice-water systems, ice-bonded soils and permafrost. Relevant aspects of Earth science, materials science, offshore and river ice engineering are also of primary interest. These include icing of ships and structures as well as trafficability in cold environments. Technological advances for cold regions in research, development, and engineering practice are relevant to the journal. Theoretical papers must include a detailed discussion of the potential application of the theory to address cold regions problems. The journal serves a wide range of specialists, providing a medium for interdisciplinary communication and a convenient source of reference.
期刊最新文献
Hysteresis of unfrozen water content of tailing mud with freeze-thaw and its correlation with electrical conductivity Metrological approach for permafrost temperature measurements A generalized thermal conductivity model of soil-rock mixture based on freezing characteristic curve Freezing of a Supercooled Water Drop after an Impact onto a Solid Wall Exploring heat transfer in freezing supercooled water droplet through high-speed infrared thermography
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