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Thermal response to firefighting activities in residential structure fires: impact of job assignment and suppression tactic

机译:住宅结构火灾中对消防活动的热响应:工作分配和抑制策略的影响

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摘要

Firefighters' thermal burden is generally attributed to high heat loads from the fire and metabolic heat generation, which may vary between job assignments and suppression tactic employed. Utilising a full-sized residential structure, firefighters were deployed in six job assignments utilising two attack tactics (1. Water applied from the interior, or 2. Exterior water application before transitioning to the interior). Environmental temperatures decreased after water application, but more rapidly with transitional attack. Local ambient temperatures for inside operation firefighters were higher than other positions (average 10-30 degrees C). Rapid elevations in skin temperature were found for all job assignments other than outside command. Neck skin temperatures for inside attack firefighters were 0.5 degrees C lower when the transitional tactic was employed. Significantly higher core temperatures were measured for the outside ventilation and overhaul positions than the inside positions (0.6-0.9 degrees C). Firefighters working at all fireground positions must be monitored and relieved based on intensity and duration.Practitioner Summary: Testing was done to characterise the thermal burden experienced by firefighters in different job assignments who responded to controlled residential fires (with typical furnishings) using two tactics. Ambient, skin and core temperatures varied based on job assignment and tactic employed, with rapid elevations in core temperature in many roles.
机译:消防员的热负荷通常归因于火灾和代谢热产生的高热负荷,这可能在工作分配和所采用的镇压策略之间有所不同。消防员利用一个完整的住宅结构,通过两种攻击策略(1.从内部浇水,或2.过渡到内部之前外部浇水)在六个工作任务中进行部署。施用水后环境温度下降,但随着过渡攻击而加快。内部操作消防员的当地环境温度高于其他位置(平均10-30摄氏度)。除外部命令外,所有工作分配的皮肤温度均迅速升高。采用过渡战术时,内部攻击消防员的颈部皮肤温度低0.5摄氏度。对于外部通风和大修位置,测得的中心温度明显高于内部位置(0.6-0.9摄氏度)。必须根据强度和持续时间对在各个火场位置工作的消防员进行监控和解雇。从业人员摘要:测试的目的是表征消防员在不同工作任务中所经历的热负荷,他们使用两种策略对受控的住宅火灾(使用典型的家具)做出反应。环境温度,皮肤温度和核心温度会根据工作分配和所采用的策略而有所不同,其中核心温度的快速升高在许多方面都起作用。

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