Skip to main navigation menu Skip to main content Skip to site footer

METHODS TO IMPROVE ENERGY EFFICIENCY OF LOW-RISE RESIDENTIAL BUILDINGS UNDER CLIMATE CHANGE CONDITIONS

Abstract

In the context of global warming, increasing extreme temperatures, and rising demand for energy resources, reducing the energy consumption of residential buildings has become a critical task. This paper scientifically analyzes the methods to enhance the energy efficiency of low-rise residential buildings under climate change conditions. The study examines modern architectural and planning solutions, structural and engineering technologies, as well as passive and active energy efficiency measures adapted to local climatic conditions. The results of the study provide scientific and practical recommendations for applying energy-saving solutions in the design and renovation of low-rise residential buildings.

Keywords

climate change, energy efficiency, low-rise residential buildings, passive design, sustainable architecture, energy conservation.

PDF

References

  1. Kajjoba, D., Wesonga, R., Lwanyaga, JD va boshqalar. Kam daromadli tropik binolarda issiqlik qulayligini va uning energiya samaradorligi salohiyatini baholash: sharh. Barqaror energiya res. 12 , 25 (2025).
  2. Mehdi Gholami Rostam, Alireza Abbasi. Enhancing building energy efficiency through a climate adaptive design: Considering upcoming extreme climate conditions, Journal of Cleaner Production, Volume 450, 2024, 141747, ISSN 0959-6526,
  3. Kosimova, Sh. (2025). Opportunities and problems in increasing energy efficiency of buildings in the conditions of the climate of Uzbekistan. International Journal of Advance Scientific Research.
  4. Mansurova, K., & Xolmurodov, B. (2024). A systematic review of methods for evaluating the thermal performance of buildings through energy simulations. Renewable and Sustainable Energy Reviews.
  5. Assessment of thermal comfort and its potential for energy efficiency in low-income tropical buildings: A review. (2025). Sustainable Energy Research, 12, Article 25.
  6. MDPI. (2024). Energy efficiency and decarbonization strategies in buildings: A review of technologies, policies, and future directions. Applied Sciences, 15(21), 11660.
  7. Impacts of climate change and building energy efficiency improvement: A simulation study. (2023). Journal of Building Performance Simulation, 16(5), 527–542.
  8. Assessment of thermal comfort and its potential for energy efficiency in low-income tropical buildings: A review. (2025). Sustainable Energy Research, 12, Article 25.
  9. Towards energy efficient buildings by digital transformation: BIM and simulation-based approaches. (2024). Energy Informatics, 7(1), 45.
  10. Enhancing building energy efficiency through a climate adaptive design: A review. (2024). Journal of Cleaner Production, 415, 138623.
  11. Green renovation of building envelopes: Thermal performance and energy savings analysis. (2025). International Journal of Low-Carbon Technologies, 16(4), 1277–1291.

Downloads

Download data is not yet available.