Methods of accounting the avalanche hazard for the territorial land-use planning in Russia

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY
P. M. Rodionova, A. Turchaninova, S. Sokratov, Y. Seliverstov, T. G. Glazovskaya
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引用次数: 0

Abstract

The legislation of the Russian Federation establishes the need to take into account hazardous natural processes and their parameters in territorial planning, as well as presentation of them in the relevant documentation in the form of maps. In a number of countries, there is a long-standing practice of mapping the avalanche zones basing on the definition of different levels of danger, which are used to limit or ban the construction in avalanche zones, as well as to project the anti-avalanche activities. Russia has experience in assessing risk and mapping the avalanche danger, but the practice of making such plans in our country is still not developed. The purpose of this work is to determine and plot on map avalanche zones on the example of one of the actively developed mountain regions of Russia. The all-season mountain resort «Gorky Gorod», located on Krasnaya Polyana in the Krasnodar region, was chosen as the object of study. Two approaches to the accounting and mapping of avalanche hazard in territorial planning were tested. In the first case, occurrence and pressure of avalanches were the determining factors. In the second case, critical avalanche pressure values were used to determine their destructive impact effect. To determine indexes (indicators) of the avalanche hazard, the simulation of snow avalanches in the RAMMS program was performed. According to the results of modeling for area of the «Gorky Gorod» resort schemes of the avalanche zones were constructed on the basis of two different approaches, having no account for the anti-avalanche measures used there. A more detailed plan based on a combination of these two approaches had also been drawn up and analyzed. The required criteria for determining the boundaries of zones with different levels of the danger are the subject for discussion. However, the proposed division of avalanchedangerous territory into zones with different levels of the hazard at the stage of territorial planning meets the requirements of the legislation and contributes to improving human security, reducing the avalanche risk, and mitigating the consequences of emergencies caused by avalanches.
俄罗斯国土土地利用规划中雪崩灾害的计算方法
俄罗斯联邦的立法规定,必须在领土规划中考虑到危险的自然过程及其参数,并在有关文件中以地图的形式加以说明。在许多国家,长期以来的做法是根据不同危险级别的定义绘制雪崩区,用于限制或禁止在雪崩区施工,以及规划抗雪崩活动。俄罗斯在评估雪崩风险和绘制雪崩危险地图方面有一定的经验,但在我国制定此类计划的实践尚不发达。这项工作的目的是确定并在地图上绘制雪崩区,以俄罗斯一个积极发展的山区为例。位于克拉斯诺达尔地区Krasnaya Polyana的四季山区度假胜地“Gorky Gorod”被选为研究对象。在国土规划中测试了两种计算和绘制雪崩灾害的方法。在第一种情况下,雪崩的发生和压力是决定因素。在第二种情况下,使用临界雪崩压力值来确定其破坏性冲击效果。为了确定雪崩危害的指标,在RAMMS程序中进行了雪崩模拟。根据对“高尔基-戈罗德”度假胜地区域的建模结果,在没有考虑那里使用的防雪崩措施的情况下,基于两种不同的方法构建了雪崩区的方案。还根据这两种方法的结合拟订和分析了一项更详细的计划。确定具有不同危险程度的区域边界所需的标准是讨论的主题。然而,在国土规划阶段将雪崩危险区域划分为不同危险级别的区域,符合立法要求,有助于提高人类安全,降低雪崩风险,减轻雪崩突发事件的后果。
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来源期刊
Led i Sneg-Ice and Snow
Led i Sneg-Ice and Snow GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.50
自引率
42.90%
发文量
11
审稿时长
8 weeks
期刊介绍: The journal was established with the aim of publishing new research results of the Earth cryosphere. Results of works in physics, mechanics, geophysics, and geochemistry of snow and ice are published here together with geographical aspects of the snow-ice phenomena occurrence in their interaction with other components of the environment. The challenge was to discuss the latest results of investigations carried out on Russia’s territory and works performed by Russian investigators together with foreign colleagues. Editorial board works in collaboration with Glaciological Association that is professional community of specialists in glaciology from all republics of the Former Soviet Union which are now new independent states. The journal serves as a platform for the presentation and discussion of new discoveries and results which help to elucidate the state of the Earth’s cryosphere and the characteristics of the evolution of the snow-ice processes and phenomena under the current conditions of rapid climate change.
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