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首页> 外文期刊>Journal of occupational and environmental hygiene >Ambient Air Cooling for Concealed Soft Body Armor in a Hot Environment
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Ambient Air Cooling for Concealed Soft Body Armor in a Hot Environment

机译:炎热环境下隐身防弹衣的环境空气冷却

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Concealed soft body armor inhibits convective and evaporative heat loss and increases heat storage, especially in hot environments. One option to potentially mitigate heat storage is to promote airflow under the soft body armor. The purpose of this study was to evaluate the effect of ambient air induction (approximate to 100 liters per minute) on heat strain while wearing concealed soft body armor in a hot environment (wet bulb globe temperature = 30 degrees C). A counter-balanced, repeated measures protocol was performed with nine healthy male volunteers. Participants were fitted with either a traditional or modified Level II concealed soft body armor. Participants performed cycles of 12min of walking (1.25 liters per minute) and 3min of arm curls (0.6 liters per minute) for a total of 60min. Two-way repeated measures ANOVA was used to assess the mean differences in physiological measures (rectal temperature, heart rate, micro-environment [temperature and relative humidity]). Post hoc Bonferroni analysis and paired samples t-tests (alpha = 0.01) were conducted on omnibus significant findings. Perceptual measures (perceived exertion, thermal comfort) were analyzed using Wilcoxon Signed Ranks Tests. Modification led to an improvement in perceived exertion at 45min (MOD: 10 +/- 1; CON: 11 +/- 2; p 0.001) and 60min (MOD: 10 +/- 2; CON: 12 +/- 2; p 0.001) and a reduction in micro-environment temperature in MOD (1.0 +/- 0.2 degrees C, p = 0.03) compared to CON. Modification did not attenuate change in rectal temperature or heart rate (p < 0.01) during 60-min work bout. Change in rectal temperature approached significance between MOD and CON at the end of the work bout (MOD: 0.4 +/- 0.2 degrees C; CON: 0.7 +/- 0.3 degrees C; p = 0.048). The slope of rectal temperature was significantly greater (p = 0.04) under CON compared to MOD. These data suggest that air induction may provide small benefits while wearing concealed soft body armor, though improvements are needed to lessen physiological strain.
机译:隐蔽的防弹衣可抑制对流和蒸发热损失,并增加热量存储,尤其是在高温环境中。潜在地减轻热量存储的一种选择是促进软装甲下的气流。这项研究的目的是评估在炎热环境中(湿球温度= 30摄氏度)穿着隐藏式防弹衣时,周围空气诱导​​(每分钟约100升)对热应变的影响。对9名健康男性志愿者进行了平衡,重复的测量方案。参与者都装有传统的或改良的II级隐藏式软装盔甲。参与者进行了12分钟的步行(每分钟1.25升)和3分钟的手臂弯曲(每分钟0.6升)的循环,总共60分钟。使用双向重复测量ANOVA来评估生理测量的平均差异(直肠温度,心率,微环境[温度和相对湿度])。事后进行的Bonferroni分析和配对样本t检验(α= 0.01)针对综合显着性结果进行。使用Wilcoxon Signed Ranks Tests分析知觉量度(感知的劳累,热舒适度)。改变导致45分钟(MOD:10 +/- 1; CON:11 +/- 2; p 0.001)和60min(MOD:10 +/- 2; CON:12 +/- 2; p与CON相比,MOD的微环境温度降低了(1.0 +/- 0.2摄氏度,p = 0.03)。在60分钟的工作周期中,改良并没有减弱直肠温度或心率的变化(p <0.01)。在工作周期结束时,直肠温度的变化接近MOD和CON之间的显着性(MOD:0.4 +/- 0.2摄氏度; CON:0.7 +/- 0.3摄氏度; p = 0.048)。与MOD相比,CON下直肠温度的斜率明显更大(p = 0.04)。这些数据表明,尽管需要改进以减轻生理压力,但在穿着隐蔽的软装甲时进气可能会带来很小的好处。

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