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Effect of clothing material on thermal responses of the human body

机译:服装材料对人体热响应的影响

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摘要

The influence of clothing material on thermal responses of the human body are investigated by using an integrated model of a clothed thermoregulatory human body. A modified 25-nodes model considering the sweat accumulation on the skin surface is applied to simulate the human physiological regulatory responses. The heat and moisture coupled transfer mechanisms, including water vapour diffusion, the moisture evaporation/condensation, the moisture sorbtion/desorption by fibres, liquid sweat transfer under capillary pressure, and latent heat absorption/release due to phase change, are considered in the clothing model. On comparing prediction results with the experimental data in the literature, the proposed model seems able to predict dynamic heat and moisture transfer between the human body and the clothing system. The human body's thermal responses and clothing temperature and moisture variations are compared for different clothing materials during transient periods. We concluded that the hygroscopicity of clothing materials influences the human thermoregulation process significantly during environmental transients.
机译:通过使用穿戴式温度调节人体的集成模型,研究了服装材料对人体热响应的影响。考虑到皮肤表面汗液积聚的修改后的25节点模型用于模拟人类生理调节反应。衣服中考虑了热与湿耦合的传递机制,包括水蒸气的扩散,水分的蒸发/冷凝,纤维的水分吸收/解吸,毛细管压力下的汗液转移以及相变导致的潜热吸收/释放。模型。通过将预测结果与文献中的实验数据进行比较,所提出的模型似乎能够预测人体与服装系统之间的动态热量和水分传递。在瞬态期间内,比较了不同衣物材料对人体的热响应以及衣物温度和湿度的变化。我们得出的结论是,在环境瞬态过程中,服装材料的吸湿性会显着影响人体的温度调节过程。

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