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衣物吸湿对人体热平衡的影响。

Effects of moisture absorption in clothing on the human heat balance.

作者信息

Lotens W A, Havenith G

机构信息

TNO Human Factors Research Institute, Soesterberg, The Netherlands.

出版信息

Ergonomics. 1995 Jun;38(6):1092-113. doi: 10.1080/00140139508925176.

Abstract

A theory of moisture absorption in clothing, with the associated effects of heat transfer, was developed and applied in a computer model. The model considers the body, underclothing, an outer layer, and the adjacent air layer. The theory was checked with an experiment involving four subjects. They wore heavy woollen clothing, which was either initially dry or humid, in both a warm and a cool environment. Model calculations and experimental results agree approximately upon the timing and magnitude of the effect of absorbing clothing on heat flows, temperatures and physiological reactions. Contrary to expectations the observed vapour resistance is lower in the heat than in the cold, probably due to differences in sweat distribution. It is pointed out that the usual way to determine the clothing characteristics by means of partitional calorimetry leads to considerable errors when the steady state has not been reached. In clothing that has high absorption properties the transient effects may be sustained for hours. Tests using the model show few beneficial effects of absorbing clothing on thermal sensation.

摘要

建立了一种关于衣物吸湿及其相关热传递效应的理论,并将其应用于计算机模型中。该模型考虑了人体、内衣、外层衣物以及相邻的空气层。通过一项涉及四名受试者的实验对该理论进行了检验。他们在温暖和凉爽的环境中都穿着厚重的羊毛衣物,这些衣物初始状态要么是干燥的,要么是潮湿的。模型计算结果与实验结果在衣物吸湿对热流、温度和生理反应的影响的时间和程度上大致相符。与预期相反,观察到的蒸汽阻力在热环境中比在冷环境中更低,这可能是由于汗液分布的差异。指出当未达到稳态时,通过部分量热法确定衣物特性的常用方法会导致相当大的误差。在具有高吸湿性能的衣物中,瞬态效应可能会持续数小时。使用该模型进行的测试表明,吸湿衣物对热感觉几乎没有有益影响。

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