Application of catastrophe theory for mathematical modeling of landslide process on concave slopes of mountain territories

K. Khalkechev, R. Khalkechev
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Abstract

Introduction. Analysis of existing theoretical and experimental studies has shown that the model approach is the main method of landslide research. The existing mathematical model of landslides does not meet the requirements of the necessary adequacy. Materials and methods. This study uses a mathematical modeling methodology based on catastrophe theory. Results and discussion. To solve this actual problem, in this article authors developed a mathematical model of the landslide process on the concave slopes of mountainous territories. The developed model contains two components. The first of them is a mathematical model of the stress field in the volume of rocks located inside the slope section. This model uses the framework of fractal and multifractal modeling methods developed by the authors. The results of this model research are final expressions for calculating the stress field used rock pressure and bending stress as the external stress field. The superposition of the field induced by these external stresses gives the stress field in the volume of rocks located inside the slope section. Analysis of program implementation of this model showed that there are two areas in the slope section: compressive and tensile stresses adjacent to each other. At the boundary between these areas, there is a discontinuity of the stress field. A displacement surface passes along this boundary, forming a potentially landslide body. Moreover, it was found that a potentially landslide body on a slope is in a state of local and global instabilities. A potentially landslide body tends to occupy the position of the minimum potential energy. Local instability is expressed as the tendency of movement to a stable equilibrium without changing its location in the rock mass. The tendency of landslide body to move down the slope is a demonstration of global instability. The second mathematical model describes the realization of local instability that leads to the formation of a landslide body. Conclusion. According to the model analysis, it was found that the implementation of instability leads to the formation of a landslide body. At the same time, according to this analysis a landslide body can take up three stable equilibrium positions, allowing it to stay on the slope without global instability. Suggestions for practical application and direction of future research. The research results can be used to predict landslides on concave slopes of mountainous territories and to develop new mathematical models allowing to make the analysis of concave slopes of mountainous territories taking into account fracturing.
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应用灾难理论建立山区凹坡滑坡过程的数学模型
导言。对现有理论和实验研究的分析表明,模型方法是滑坡研究的主要方法。现有的滑坡数学模型不能满足必要的充分性要求。材料和方法。本研究采用基于灾变理论的数学建模方法。结果与讨论。为了解决这一实际问题,作者在本文中建立了山区凹坡滑坡过程的数学模型。该模型包含两个部分。第一部分是斜坡内部岩石体积应力场的数学模型。该模型采用了作者开发的分形和多分形建模方法框架。该模型的研究成果是计算应力场的最终表达式,使用岩石压力和弯曲应力作为外部应力场。这些外应力场的叠加给出了斜坡断面内岩石体积的应力场。对该模型的程序实施分析表明,在斜坡断面上有两个区域:相邻的压应力和拉应力。在这两个区域的边界处,应力场不连续。位移面沿此边界通过,形成潜在的滑坡体。此外,研究还发现,斜坡上的潜在滑坡体处于局部和整体不稳定状态。潜在滑坡体倾向于占据势能最小的位置。局部不稳定性表现为在不改变其在岩体中的位置的情况下运动到稳定平衡的趋势。滑坡体沿斜坡向下移动的趋势是整体不稳定性的表现。第二个数学模型描述了导致滑坡体形成的局部不稳定性的实现。结论根据模型分析发现,不稳定性的实现会导致滑坡体的形成。同时,根据该分析,滑坡体可以占据三个稳定的平衡位置,使其能够在斜坡上停留,而不会出现整体失稳。实际应用建议和未来研究方向。研究成果可用于预测山区凹坡上的滑坡,并开发新的数学模型,以便在考虑断裂的情况下对山区凹坡进行分析。
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来源期刊
Sustainable Development of Mountain Territories
Sustainable Development of Mountain Territories Social Sciences-Sociology and Political Science
CiteScore
2.40
自引率
0.00%
发文量
36
期刊介绍: International scientific journal "Sustainable development of mountain territories" covers fundamental and applied regional, national and international research and provides a platform to publish original full papers and related reviews in the following areas: engineering science and Earth science in the field of sustainable development of mountain territories. Main objectives of international scientific journal "Sustainable development of mountain territories" are: raising the level of professional scientific workers, teachers of higher educational institutions and scientific organizations; presentation of research results in the field of sustainable development of mountain areas on the technical aspects and Earth sciences, informing readers about the results of Russian and international scientific forums; improved review and editing of the articles submitted for publication; ensuring wide dissemination for the published articles in the international academic environment; encouraging dissemination and indexing of scientific works in various foreign key citation databases.
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