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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Effect of temperature difference between manikin and wet fabric skin surfaces on clothing evaporative resistance: how much error is there?
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Effect of temperature difference between manikin and wet fabric skin surfaces on clothing evaporative resistance: how much error is there?

机译:人体模型和湿织物皮肤表面之间的温差对衣物的蒸发阻力的影响:误差有多少?

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摘要

Clothing evaporative resistance is one of the inherent factors that impede heat exchange by sweating evaporation. It is widely used as a basic input in physiological heat strain models. Previous studies showed a large variability in clothing evaporative resistance both at intra-laboratory and inter-laboratory testing. The errors in evaporative resistance may cause severe problems in the determination of heat stress level of the wearers. In this paper, the effect of temperature difference between the manikin nude surface and wet textile skin surface on clothing evaporative resistance was investigated by both theoretical analysis and thermal manikin measurements. It was found that the temperature difference between the skin surface and the manikin nude surface could lead to an error of up to 35.9% in evaporative resistance of the boundary air layer. Similarly, this temperature difference could also introduce an error of up to 23.7% in the real clothing total evaporative resistance (R (et_real) < 0.1287 kPa m(2)/W). Finally, it is evident that one major error in the calculation of evaporative resistance comes from the use of the manikin surface temperature instead of the wet textile fabric skin temperature.
机译:衣物的耐蒸发性是出汗蒸发阻碍热交换的内在因素之一。它被广泛用作生理热应变模型的基本输入。先前的研究表明,在实验室内部和实验室之间的测试中,服装的蒸发阻力存在很大差异。蒸发阻力的误差可能在确定穿戴者的热应力水平时引起严重的问题。本文通过理论分析和热人体模型测量,研究了人体模型裸露表面和湿纺织品皮肤表面之间的温差对衣物蒸发阻力的影响。发现皮肤表面与人体模型裸露表面之间的温度差可能导致边界空气层的蒸发阻力误差高达35.9%。同样,该温度差也可能导致真实衣物总蒸发阻力的最大误差为23.7%(R(et_real)<0.1287 kPa m(2)/ W)。最后,很明显,计算蒸发阻力时的一个主要错误是由于使用人体模型表面温度而不是湿织物表面温度。

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