Improving the Methodology for Ensuring Population Safety During Emergencies
Main Article Content
Abstract
This study analyzes the influence of the human factor, building architecture, technical means, and several other variables on the evacuation process, as well as the methodology for organizing population evacuation during emergencies. Particular attention is given to how these factors affect the efficiency and safety of movement along escape routes for different categories of the population, including vulnerable groups, within various types of buildings, structures, and residential areas. The evacuation methodology was refined and improved through computer-based simulations, which enabled the systematic evaluation and optimization of evacuation scenarios under conditions of heightened stress and risk.

Citation Metrics:
Downloads
Citation Metrics & Similar Scopus Articles
-
A.g S. (2027)Polymer-bitumen compositions for improving the energy efficiency of road constructionKompleksnoe Ispolzovanie Mineralnogo Syra, 341(2), 97-104
-
Kenzhaliyev B.K. (2027)Predicting Copper Production Cycles in Hydrometallurgy with Interpretable Machine LearningKompleksnoe Ispolzovanie Mineralnogo Syra, 341(2), 5-15
-
Al Atok A.R. (2027)Presidential Involvement in Legislative Processes in Indonesia: Constitutional Distinctiveness or Structural Anomaly Within a Presidential System?Cuestiones Constitucionales, 28(56)
Article Details

Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
References
Alekseev, S. V. (2018). Evacuation measures in emergency situations. Security of Russia.
Hasanov, A., & Karimova, N. (2021). Methods for ensuring safety in residential buildings. Science and Technology.
ISO. (2018). ISO 22320:2018—Security and resilience: Emergency management—Guidelines for incident management. International Organization for Standardization.
Jo‘rayevna, S. M. (2025). Lifelong learning and professional adaptation: Strategies for continuous professional development. Conference of Modern Science & Pedagogy, 1(2), 355–360.
Ministry of Construction of the Republic of Uzbekistan. (2020). Regulatory documents on safety measures in building design. Construction Publishing.
Mirzaev, M. (2020). Strategy of actions in emergencies: Training manual. Ilm Ziyo.
National Fire Protection Association. (2021). NFPA 101: Life Safety Code.
Qodirov, B. (2022). Planning safety measures in urban and engineering structures. Innovation.
Shodiyeva, M. (2017). Problems of creating teaching and methodological support for upgrading primary school teachers’ qualifications. Auris-Verlag. http://www.auris-verlag.de
Shodiyeva, M. (2022). Educational technologies to be used in formal, non-formal, informal education of continuous professional development of primary class teachers. International Journal of Pedagogics, 2(10), 27–32.
Shodiyeva, M. (2023). Methods of developing creative competence of students of higher education institutions on the basis of an integrative approach. European International Journal of Pedagogics, 3(10), 86–90.
Shodiyeva, M. (2024). Zamonaviy andragogik amaliyotni tashkil etishning samarali shakl va usullari.
Shodiyeva, M. (2025). 5E modeli asosida darsni loyihalash: Nazariya va amaliyot uyg‘unligi. Maktabgacha va maktab ta’limi jurnali, 3(5).
Shodiyeva, M. J. (2021). Scientific and pedagogical aspects of professional development of primary school teachers. Современное образование (Узбекистан), (4), 58–64.
Shodiyeva, M. D. (2018). Компоненты учебно-методического обеспечения в системе повышения квалификации учителей начальных классов. International Scientific Review of the Problems and Prospects of Modern Science and Education, 82–84.
UNDRR. (2022). Global assessment report on disaster risk reduction 2022. United Nations Office for Disaster Risk Reduction.


















