首页> 外文期刊>Journal of the Royal Naval Medical Service >Modelling the effectiveness of techniques for reducing heat strain in Royal Navy nuclear, biological and chemical cleansing stations' teams.
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Modelling the effectiveness of techniques for reducing heat strain in Royal Navy nuclear, biological and chemical cleansing stations' teams.

机译:塑造皇家海军核,生物化学洁净站队伍减少热应变的效果。

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摘要

High temperatures, combined with wearing nuclear biological chemical (NBC) individual protective equipment (IPE), produce significant heat strain in personnel working in ships' NBC cleansing stations (CS) and limit the ability of ships to operate in a contaminated environment. This report reviews the potential solutions to this problem and concludes that only a method of actively cooling personnel will reduce heat strain and increase the number of people that can be processed through ships' NBC CS. Amongst the wide range of cooling equipment that might offer a benefit, only hand immersion in cold water and ice-vests are practically useful for use in NBC CS. To assess how effective these techniques are likely to be INM has modelled the thermal effects under environmental conditions expected in the CS when operating in a hot climate. The model predicted that hand immersion in cold water (10 degrees C) would be the most effective cooling method, providing that personnel were able to take regular rest periods to immerse the hands. If it is preferred that personnel in the CS be able to work continuously, then ice-vests would be effective. The safe total work time that can be achieved in a three hour period without a cooling intervention is approximately 72 minutes, regular rest periods must be taken throughout the three hour work period, to total of 108 minutes. Safe work times can be increased to 99 minutes by using an ice-vest and 117 minutes by using hand immersion in 10 degrees C water, with required rest times reduced accordingly, thereby increasing capacity of CS teams to decontaminate personnel.
机译:高温,结合穿着核生物化学(NBC)个体防护设备(IPE),在船舶NBC清洁站(CS)的工作人员中产生显着的热应变,并限制船舶在受污染环境中运行的能力。本报告审查了对此问题的潜在解决方案,并得出结论,只有积极的冷却人员的方法将减少热量应变并增加通过船舶NBC CS处理的人数。在可能提供益处的各种冷却设备中,只有冷水和冰背心的手只是在NBC CS中使用。为了评估这些技术的有效性可能是INM,在炎热的气候运行时,在CS中预期的环境条件下模拟了热效应。该模型预测,冷水中的手浸入(10摄氏度)是最有效的冷却方法,提供人员能够采取常规休息时间来浸入手。如果首选CS中的人员能够连续工作,那么冰背心会有效。在没有冷却干预的3小时内可以实现的安全总工作时间约为72分钟,必须在整个三小时工作期间进行常规休息时间,总共108分钟。通过使用冰背心和117分钟可以使用10摄氏度的水浸泡的安全工作时间增加到99分钟,因此需要休息时间相应地减少,从而增加了CS团队对净化人员的能力。

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