Fujitsuka C, Ohara K
J Hum Ergol (Tokyo). 1977 Sep;6(1):75-85.
Using a hygrometric capsule method developed by the authors, water vapor pressure was measured at each layer of clothing as well as at the skin surface on a human subject under actual wearing conditions. The pattern of vapor pressure gradient from the skin surface through clothing to the external air was examined in relation to the ambient vapor pressure and ths sort of textiles worn. The following findings were obtained. 1) Water vapor pressure gradient was greater between coat and external air than that between coat and underwear. The gradient became steeper again between underwear and the skin. 2) Under given clothing conditions, vapor pressure at each layer of clothing as well as at the skin varied according to the ambient humidity. However, the pattern of vapor pressure gradient from the skin through clothing to the external air was not greatly influenced by the external humidity. 3) The pattern of vapor pressure gradient from the skin through clothing to the external air was not greatly influenced by the external humidity. 3) The pattern of vapor pressure gradient through the clothing as a whole differed according to the kinds of textiles used for coat and underwear.
采用作者开发的湿度胶囊法,在实际穿着条件下,对人体受试者衣物的每一层以及皮肤表面的水蒸气压力进行了测量。研究了从皮肤表面经衣物到外部空气的蒸气压梯度模式与环境蒸气压以及所穿纺织品种类的关系。得到了以下结果。1)外套与外部空气之间的水蒸气压力梯度大于外套与内衣之间的梯度。内衣与皮肤之间的梯度再次变陡。2)在给定的着装条件下,衣物各层以及皮肤处的蒸气压会根据环境湿度而变化。然而,从皮肤经衣物到外部空气的蒸气压梯度模式受外部湿度的影响不大。3)从皮肤经衣物到外部空气的蒸气压梯度模式受外部湿度的影响不大。3)整个衣物的蒸气压梯度模式因外套和内衣所用纺织品的种类而异。