Virtual Simulation System for Reduction and Analysis of Explosive Fields
Lei Zhang, Jianguo Ning, Xiangzhao Xu · 2024
The application of Virtual Reality (VR) technology continues to expand across various fields. This paper aims to explore its innovative application in the reduction and analysis of explosion scenarios. By integrating advanced virtual simulation techniques, a virtual reality-based explosion scene simulation system is designed to achieve a high-fidelity recreation and in-depth analysis of explosive events. The system integrates an advanced physics engine and simulation algorithms to accurately simulate various aspects of the explosion scene, including flames, smoke, and shock waves. This study provides a new way to understand the impact and mechanism of an explosive event by restoring the explosion scene in a virtual environment. And the simulation system provides realistic 3D scenarios to show the process of the blast impact as well as the possible outcomes, which not only helps engineers to assess the extent of the damage, safety distances, and contingency plans, but also plays a key role in the engineering, security, and environmental fields to improve the safety and risk management. By combining virtual reality technology and in-depth analysis of explosion scenarios, we expect to provide more scientific and comprehensive support for the prevention and handling of explosion accidents.