Scientific projects of the university

One of the most significant achievements of Satbayev University is the development and implementation of scientific technologies introduced into industrial practice.

Main priority research areas:

  • Ecology, environment, and rational use of natural resources
  • Energy, advanced materials, and transport
  • Advanced manufacturing, digital and space technologies
  • Life and health sciences
  • Sustainable development of the agro-industrial complex
  • Intellectual potential of the country
  • National security and defense, biological safety

The key objectives of the work include generating new knowledge; developing partnership mechanisms necessary for the creation and commercialization of domestic technologies; improving the system of financial support for innovation activities; enhancing scientific, technical, and intellectual potential; and addressing other critical issues related to the development of the innovation-driven economy.

Satbayev University is a leader in innovative scientific research in the country. Its scientists and faculty publish articles in leading international journals, while the number of inventions, patents, and copyrights continues to grow. The university works closely with industry, generating fundamental and applied ideas aimed at solving pressing challenges faced by economic sectors.

The university’s researchers are highly valued in the national labor market and receive recognition at prestigious international symposia and conferences. They actively explore new fields of knowledge and technologies and implement research outcomes following the full innovation cycle—from ideas to practical application in industry.

The University plans its scientific work for years to come, linking its future with the upcoming fourth industrial revolution.

AP25794615 – Research and development of methods for optimizing the production of secondary aluminum alloys with improved mechanical properties
AP25796413 – Development of a comprehensive technological sequence of scientific-practical procedures for efficient geodynamic monitoring in Kazakhstan’s intensive mining areas
AP25795061 – Development of scientifically based methods for determining calculation parameters for the growth of residual oil reserves and substantiation of technological indicators at a late stage of field development
AP25796515 – Development of geophysical criteria for localization of ore districts using digital physical field models resulted from airborne geophysical studies
AP25793737 – Improvement petrophysical justification methodology of the interpretation data and increasing efficiency of geophysical welllogging research at exogenous type uranium deposits
AP25793601 – Improving the efficiency of oil field waterflooding by considering well interactions and optimizing their placement scheme
AP25795745 – Development and study of a new valve assembly model for sucker rod pump units to improve operational performance
AP25796769 – Technology for obtaining effective thermal insulation material based on composite binder and woodworking waste
AP25796273 – Algorithm for detecting hemodynamically significant cardiac arrhythmia during free physical activity
AP25796271 – Development and study of highly porous electrodes for vanadium flow battery application
AP25794855 – Composite facade products made from fiber cement with TTPs ash addition
AP25794509 – Development of geophysical criteria for localization of ore districts using digital physical field models resulted from airborne geophysical studies
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