The International Conference 'Problems of Emergency Situations' (PES 2025)

The International Conference 'Problems of Emergency Situations' (PES 2025)

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 190 p.
  • 言語 ENG
  • 商品コード 9783036409665

Full Description

The annual International Scientific Applied Conference "Problems of Emergency Situations" (PES 2025, May 14, 2025, Ukraine) was organised by the National University of Civil Defence of Ukraine. As a partner, the Odessa State Academy of Civil Engineering and Architecture (Ukraine, Odessa) was involved. The purpose of the conference was to discuss issues related to the problems and prospects of introducing the latest developments and technologies aimed at preventing emergencies and minimising their consequences in the field of civil defence.

Contents

Preface
Chapter 1: Computational Research
Determination of the Patterns in the Formation of Gas Filter Cartridge Geometries
Intensity of Neutralization of Dangerous Gases during Deposition with Small-Dispersion Water
Analytical Calculation of Annular Plates Supported on an Elastic Foundation with Power-Law Inhomogeneity
Analytical Method of Calculating Beams of Variable Stiffness on an Elastic Winkler Base
Numerical Analysis of Protective Wall Height Effect on Window Glass Durability Near Gas Explosion Epicenter
Chapter 2 : Fire-Resistance and Fault Tolerance of Constructions and Structures
Studying Fire Hazard of Premises of a Mobile Communications Base Station
Resistance of the Defense Structure of an Aircraft Hangar to Emergency Impacts
Research of the High-Intensity Dynamic Loads Effects on a Monolithic Reinforced Concrete Frame Building
Predicting the Geometric Shape of the Cross-Section of Fire Retardant Wooden Beams under Conditions of Fire
Intensification of Sand Dehydration in Warehouses Using Vacuum Installations
Evaluation of Fire-Damaged Concrete Structures Using the Non-Destructive Testing
Chapter 3: Monitoring and Detection of Pollution and Hazardous Situations
Study of the Accuracy of the Temperature Fire Measurement by the Sensors of the Fire Alarms in Dynamic Conditions with Random Temperature Fluctuations
Assessment of Power Supply Modes for Thermocatalytic Sensors in Explosion Hazard Monitoring Systems of Technogenic Facilities
Development of an Electromagnetic Detection Method for Explosive Materials
Optimization of Groundwater Sampling after Destruction by Multiple Rocket Launcher Systems
Improving Environmental Safety of Food Industry Enterprises

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