Assessment of Hazardous Cryogenic Processes Impact on Engineering Facilities in the Arctic

V. Grebenets, F. D. Yurov, A. Kizyakov, L. I. Zotova, A. Maslakov, V. Tolmanov, I. Streletskaya
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Abstract

Comprehensive studies of the state of the infrastructure in the Russian Arctic were carried out. The degree of deformation of objects and the impact of dangerous cryogenic and nival-glacial processes on the stability of build- ings and constructions were assessed. It was established that a number of cryogenic processes that are dangerous for the infrastructure were developing in urbanized areas of the permafrost zone. They are caused (or activated) by anthropogenic impact or by climatic changes. Thermokarst, thermal erosion and thermal abrasion of banks, icings formation are activating. The tangential forces of frost heaving increase due to the increase of the active layer depth. Almost all the buildings and the life support systems at the territories of the national settlements of the Polar re- gion are in an emergency or pre-emergency state. The percentage of deformation of the engineering infrastructure varies from 20% to 80% in industrial centers, which is often caused by the development of dangerous cryogenic processes. A methodic was developed to assess the negative impact of the most destructive processes on the infra- structure of settlements. It takes into account the degree of damage to the territory, the duration, and repeatability of processes. The risk assessment was carried out for one and a half dozen settlements in the Russian Arctic, with special attention paid to the infrastructure of the north of Western Siberia. The impact of waste disposal on the infrastructure of the Arctic was analyzed. A classification was proposed based on the degree of their influence on permafrost foundations. Proposals on stabilization of geotechnical situation in Arctic cities are given.
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危险低温过程对北极工程设施影响的评估
对俄罗斯北极地区的基础设施状况进行了全面研究。评估了物体的变形程度以及危险的低温和初冰期过程对建筑物和构筑物稳定性的影响。在多年冻土带的城市化地区,一些对基础设施有危险的低温过程正在发展。它们是由人为影响或气候变化引起(或激活)的。热溶蚀、热侵蚀和热磨蚀河岸,冰的形成正在激活。冻胀切向力随活动层深度的增加而增大。极地地区国家定居点领土上的几乎所有建筑物和生命维持系统都处于紧急状态或紧急前状态。在工业中心,工程基础设施的变形率从20%到80%不等,这通常是由危险的低温过程的发展引起的。制定了一种方法来评估最具破坏性的进程对住区基础设施的负面影响。它考虑了对领土的破坏程度、持续时间和过程的可重复性。风险评估是对俄罗斯北极地区的六个定居点进行的,特别关注了西西伯利亚北部的基础设施。分析了废物处理对北极基础设施的影响。根据其对多年冻土基础的影响程度提出了分类方法。提出了稳定北极城市岩土状况的建议。
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