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首页> 外文期刊>Autex Research Journal >Effect of Air Gap Entrapped in Firefighter Protective Clothing on Thermal Resistance and Evaporative Resistance
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Effect of Air Gap Entrapped in Firefighter Protective Clothing on Thermal Resistance and Evaporative Resistance

机译:困在消防员防护服中的气隙对热阻和蒸发阻力的影响

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摘要

Heat and water vapor transfer behavior of thermal protective clothing is greatly influenced by the air gap entrapped in multilayer fabric system. In this study, a sweating hot plate method was used to investigate the effect of air gap position and size on thermal resistance and evaporative resistance of firefighter clothing under a range of ambient temperature and humidity. Results indicated that the presence of air gap in multilayer fabric system decreased heat and water vapor transfer abilities under normal wear. Moreover, the air gap position slightly influenced the thermal and evaporative performances of the firefighter clothing. In this study, the multilayer fabric system obtained the highest thermal resistance, when the air space was located at position B. Furthermore, the effect of ambient temperature on heat and water vapor transfer properties of the multilayer fabric system was also investigated in the presence of a specific air gap. It was indicated that ambient temperature did not influence the evaporative resistance of thermal protective clothing. A thermographic image was used to test the surface temperature of multilayer fabric system when an air gap was incorporated. These results suggested that a certain air gap entrapped in thermal protective clothing system could affect wear comfort.
机译:多层织物系统中夹带的气隙极大地影响了热防护服的热和水蒸气传递行为。在这项研究中,使用发汗的热板法研究气隙位置和大小对环境温度和湿度范围内消防员服装的耐热性和蒸发性的影响。结果表明,在正常磨损下,多层织物系统中存在气隙会降低热量和水蒸气的传递能力。而且,气隙位置对消防员衣服的热和蒸发性能有轻微的影响。在这项研究中,当空气空间位于位置B时,多层织物系统获得了最高的热阻。此外,还研究了环境温度对多层织物系统在热和水蒸气传递特性方面的影响。一个特定的气隙。结果表明,环境温度不影响热防护服的耐蒸发性。当引入气隙时,使用热成像图像测试多层织物系统的表面温度。这些结果表明,热防护服系统中存在一定的气隙会影响穿着舒适度。

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