10 april 41

AP25796413 – Development of a comprehensive technological sequence of scientific-practical procedures for efficient geodynamic monitoring in Kazakhstan’s intensive mining areas

AP25796413 – Development of a comprehensive technological sequence of scientific-practical procedures for efficient geodynamic monitoring in Kazakhstan’s intensive mining areas

Objective of the projectThe aim of the project is to develop a unified technological sequence of scientific and practical procedures to enhance geodynamic monitoring of natural and technogenic processes in areas of intensive solid mineral mining in the Republic of Kazakhstan using space and GIS technologies.

Relevance: Amid the rapid development of the mining industry in the Republic of Kazakhstan, ensuring geodynamic control of subsurface conditions has become increasingly relevant. The exploitation of solid mineral deposits is associated with the intensification of natural and anthropogenic processes that alter the stress-strain state of rock masses and increase the risk of hazardous events. Recent tragic incidents related to collapses at mining sites clearly demonstrate the urgent need to improve geodynamic monitoring and forecasting systems. At the same time, the lack of well-developed methodological approaches and the limited application of modern space technologies reduce the effectiveness of existing monitoring practices. Therefore, the development of integrated approaches for monitoring and predicting geodynamic processes represents a critical scientific and practical task.

Scientific supervisor: PhD, Sabina Satybaldykovna Kudaybergenova

Expected and achieved results: The main result of the project is the development of a unified system of scientific and practical procedures to improve geodynamic monitoring at solid mineral deposits in Kazakhstan. The use of space-based data and GIS technologies enables comprehensive monitoring of natural and technogenic processes, reducing geological and economic risks. The project includes publication of articles, preparation of monographs, and development of methodological guidelines. In 2025, a factual database was created, mining and geological conditions were analyzed, and monitoring methods and technical tools were systematized. The applicability of geodetic, satellite, and geophysical monitoring methods was assessed. Prospective directions for improving methodologies through the integration of satellite and GIS data were identified. The scientific novelty lies in the development of an integrated geodynamic monitoring approach adapted to Kazakhstan’s conditions.

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