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Ex-Vivo Porcine Skin Model for Estimation of Trapped Occupant Burn Risk in Pre-and Post-suppression Fire Environments

机译:抑制前后火灾环境中被困乘员烧伤风险的前体猪皮肤模型

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摘要

There are currently important questions in the fire service as to the efficacy of various fire attack methods, both in terms of rapidly suppressing the fire and for potentially impacting the burn risk for occupants in the structure. A series of 24 full-scale residential fire experiments were performed to investigate the influence of fire size and fire service water application (interior only vs exterior-to-interior fire attack) on relative risk for skin burns in trapped occupants. A novel skin damage assessment tool utilizing ex vivo porcine skin samples was developed allowing measurement of temperatures at the surface of the porcine skin and at the subcutaneous fat surrogate interface. This tool allowed, for the first time, observation that typical fire attack methods resulted in short-lived transient increases in skin surface temperatures for a simulated occupant just outside the fire room that were typically around 5 degrees C but ranged from 0 degrees C to 15 degrees C for rapid fire service intervention. Minimal differences were observed between the effects of interior or exterior fire streams immediately outside of the fire room. However, these values were markedly lower than when water application was delayed. This new tool provides novel information regarding trapped occupant skin burn risk that compliments traditional fire measurement tools and may provide a platform for future study on the impact of clothing as well as model based interpretation of experimental data that more accurately captures relevant physiology.
机译:当前,在消防部门中,关于各种火灾扑灭方法的功效存在重要的问题,无论是在迅速抑制火灾方面,还是潜在地影响建筑物中居住者的燃烧危险方面。进行了一系列24项全面的住宅火灾实验,以研究火势和消防用水(仅内部与外部到内部之间的火势)对被困人员皮肤灼伤的相对风险的影响。开发了一种利用离体猪皮肤样品的新型皮肤损伤评估工具,该工具可以测量猪皮肤表面和皮下脂肪替代物界面的温度。该工具首次使人观察到,典型的火灾攻击方法导致刚在消防室外的模拟乘员的皮肤表面温度短暂短暂地短暂升高,通常在5摄氏度左右,但范围从0摄氏度到15摄氏度摄氏度以迅速进行消防干预。观察到紧接在消防室外的内部或外部火流的影响之间的差异最小。但是,这些值明显低于延迟用水的时间。这个新工具提供了有关困住的乘客皮肤烧伤风险的新颖信息,这些信息补充了传统的火灾测量工具,并且可以为将来对服装影响的研究以及实验数据的基于模型的解释提供一个平台,从而更准确地捕获相关的生理学信息。

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