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Modeling and analysis of the influence of the protective garment movement on the skin temperature and burn degree

机译:防护服运动对皮肤温度和灼伤程度影响的建模和分析

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摘要

A numerical thermal model of the multi-layer protective clothing which accounts for the clothing movement is presented. The model includes heat conduction and thermal radiation in non-grey fabrics and air gaps, diffusive transfer of water vapour through fabrics and air gaps, sorption and desorption of water in fabric fibers, non-equilibrium bio-heat transfer in the skin and perspiration on the skin surface. Moreover, the model contains infiltration of fresh air into the widest air gap between the clothing and skin due to the clothing movement. In the simulations the clothing was for a short time exposed to the radiative heat flux emitted from the external source and cooled down in the surroundings with its movement accounted for. The results obtained are used to assess the influence of frequency and amplitude of variation of the thickness of the widest air gap on the skin temperature and burn degree, heat fluxes and vapour mass flow rate on the skin surface as well as relative humidity close to the skin. Numerical simulations reveal that an increase in the movement frequency and amplitude results in a decrease of average values of the majority of monitored quantities on the skin surface or close to it. The most visible decreases are observed for the average skin surface temperature and values of the Henriques-Moritz integral.
机译:给出了考虑防护服运动的多层防护服的数值热模型。该模型包括非灰色织物和气隙中的热传导和热辐射,水蒸气通过织物和气隙的扩散传递,织物纤维中水的吸附和解吸,皮肤中非平衡生物热传递以及汗渍皮肤表面。此外,该模型还包含由于衣物移动而使新鲜空气渗透到衣物和皮肤之间最大的气隙中的现象。在模拟中,衣服在短时间内暴露于外部源发出的辐射热通量,并在周围环境中冷却,并考虑了其运动。获得的结果用于评估最宽气隙厚度变化的频率和幅度对皮肤温度和灼伤度,皮肤表面的热通量和蒸气质量流速以及接近皮肤的相对湿度的影响。皮肤。数值模拟显示,运动频率和幅度的增加导致皮肤表面或接近皮肤表面的大多数监视量的平均值降低。对于平均皮肤表面温度和Henriques-Moritz积分值,可以看到最明显的下降。

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