Exploration of iterative optimization of comprehensive nuclear emergency exercise scenarios in Fujian Province
10.13491/j.issn.1004-714X.2026.03.022
- VernacularTitle:福建省核应急综合演习情景的迭代优化探索
- Author:
Shiyao HUANG
1
Author Information
1. Fujian Radiation Environment Supervision Station, Fuzhou 350012, China.
- Publication Type:OriginalArticles
- Keywords:
Nuclear emergency;
Exercise scenario;
Practicality;
Radiation monitoring
- From:
Chinese Journal of Radiological Health
2026;35(3):450-454
- CountryChina
- Language:Chinese
-
Abstract:
Objective To summarize and solidify effective practices, we analyzed the scenario design of Fujian’s multi-year nuclear emergency drills, aiming to enhance regional nuclear emergency response capabilities. Methods We conducted a longitudinal comparison of iterative improvements in scenario design across the three most recent drills. A case comparison approach was adopted to examine the evolutionary logic in three dimensions: expert judgment, radiation monitoring, and public resettlement. Results The analysis shows that Fujian has consistently adhered to the principle of “summarization, innovation and improvement”. This approach has transformed its drill model from a single, fixed framework into a multidimensional, combat-ready system. Expert assessment evolved from a supporting role into a central function. Radiation monitoring evolved from a single-point approach to a comprehensive system. Public evacuation has shifted from one-way notification to multi-channel interactive communication. Coordinated operations have expanded from the provincial to the national level. These changes fully demonstrate the emergency system’s adaptability, force synergy, and combat readiness in response. Conclusion Fujian has institutionalized the long-term mechanism of “using drills to drive capacity building” while maintaining a combat-oriented approach. Its model can serve as a reference for other provinces in nuclear emergency response. This holds important practical implications for strengthening nuclear safety defenses.