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Hazards of Activation of Cryogenic Processes in the Arctic Community: A Geopenetrating Radar Study in Lorino, Chukotka, Russia

机译:北极社区中低温过程激活的危害:Lorino,Chukotka,俄罗斯的地理抑制雷达研究

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The subsurface structure of permafrost is of high significance to forecast landscape dynamics and the engineering stability of infrastructure under human impacts and climate warming, which is a modern challenge for Arctic communities. Application of the non-destructive method of geo-penetrating radar (GPR) survey is a promising way to study it. The study program, which could be used for planning and monitoring of measures of adaptation of Arctic communities to environmental changes is provided in this paper. The main principle was to use etalons of coupled radargrams and archive geological data to interpret changes in the permafrost structure from a grid of 5–10 m deep GPR transects. Here, we show the application of GPR to reconstruct and predict hazards of activation of cryogenic processes from the spatial variability in the structure of permafrost. The cumulative effects of the village and climate change on permafrost were manifested in changes in the active layer thickness from 0.5?1.0 m to up to 3.5 m. Despite that the permafrost degradation has declined due to the improved maintenance of infrastructure and the effects of ground filling application, the hazards of heaving and thermokarst remain for the built-up area in Lorino.
机译:Permafrost的地下结构对于人们影响和气候变暖下的基础设施的景观动态和工程稳定性具有很大的意义,这是北极社区的现代挑战。地理渗透雷达(GPR)调查的非破坏性方法的应用是研究它的有希望的方式。本文提供了该研究计划,可用于规划和监测北极社区适应环境变更的措施。主要原则是使用耦合射线磁场和归档地质数据的标准元,从5-10米深的GPR横断面的网格中解释Permafrost结构的变化。在这里,我们展示了GPR的应用重建和预测从多年冻土结构中的空间变异性激活低温过程的危害。村和气候变化对永久冻土的累积效果在活性层厚度的变化中表现为0.5≤1.0μm至高达3.5米。尽管由于基础设施的维护和地面填充应用的影响而导致永久冻土退化有所下降,但仍然适用于Lorino的内置区域的危险和热量。

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