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Prediction of the physiological response of humans wearing protective clothing using a thermophysiological human simulator.

机译:使用热生理人体模拟器预测穿着防护服的人类的生理反应。

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摘要

Most standards and devices for determining clothing properties ignore the physiological state of the wearer and are inadequate to evaluate the transient thermal properties of clothing ensembles. This study evaluated the physiological burden of different types of protective clothing and environmental conditions using the recently developed single-sector thermo-physiological human simulator and compared its performance with a thermal cylinder (without the physiological control model) and with an advanced physiological model (with a simple clothing model). A single-sector physiological simulator developed to simulate the dynamic thermal and perceptual behavior of humans over a wide range of environmental and personal conditions was successfully validated in this study through tests with clothed individuals exposed to hot and cold conditions. In comparative tests on water vapor permeable and impermeable clothing samples, the simulator provided a much more complete picture of actual clothing performance, for example, in terms of moisture retention within the clothing and the additional cooling due to the "heat pipe" effect in impermeable clothing.
机译:用于确定服装性能的大多数标准和设备忽略了穿着者的生理状态,并且不足以评估服装整体的瞬态热性能。这项研究使用最近开发的单扇区热生理人体模拟器评估了不同类型的防护服和环境条件的生理负担,并将其性能与热缸(没有生理控制模型)和高级生理模型(具有简单的服装模型)。通过在暴露于冷热条件下的穿着者进行的测试中,本研究成功验证了开发出的用于模拟人类在广泛的环境和个人条件下的动态热行为和感知行为的单扇区生理模拟器。在对水蒸气可渗透和不可渗透的衣物样品进行的比较测试中,模拟器提供了服装实际性能的更全面的图像,例如,在衣物内的水分保留和不可渗透的“热管”效应导致的额外冷却方面服装。

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