College of Fashion and Design, Donghua University, People's Republic of China.
Protective Clothing Research Center, Donghua University, People's Republic of China.
Int J Occup Saf Ergon. 2024 Sep;30(3):663-676. doi: 10.1080/10803548.2024.2327869. Epub 2024 Mar 22.
Relevant studies in the fields of fire safety, occupational health and firefighter clothing were analyzed in this study to address the high injury rate among firefighters during fire rescue and the complexity of factors affecting skin burns. The findings indicate that the degree of skin burns in firefighters is primarily influenced by the heat source (heat flux, type), firefighter clothing (fabric, pattern) and the under-clothing air gap (thickness, characteristics). Since skin burns cannot be directly measured, internal skin heat transfer and burn prediction models are commonly employed to assess the impact of external factors on skin burns. These models can predict the safe working distance or time for firefighters. Investigating the influencing factors and prediction models of skin burns among firefighters holds significant value in enhancing operating procedures, optimizing firefighter clothing design and effectively preventing skin burns.
本研究分析了火灾安全、职业健康和消防服领域的相关研究,以解决火灾救援中消防员高受伤率和影响皮肤烧伤因素的复杂性问题。研究结果表明,消防员皮肤烧伤程度主要受热源(热通量、类型)、消防服(织物、图案)和内衣空气间隙(厚度、特性)的影响。由于皮肤烧伤无法直接测量,通常采用内部皮肤传热和烧伤预测模型来评估外部因素对皮肤烧伤的影响。这些模型可以预测消防员的安全工作距离或时间。研究消防员皮肤烧伤的影响因素和预测模型对于改进操作程序、优化消防服设计和有效预防皮肤烧伤具有重要意义。