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沃尔特(Walter)——出汗织物人体模型的新功能与应用

New functions and applications of walter, the sweating fabric manikin.

作者信息

Fan Jintu, Qian Xiaoming

机构信息

Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.

出版信息

Eur J Appl Physiol. 2004 Sep;92(6):641-4. doi: 10.1007/s00421-004-1134-1.

Abstract

In this paper, latest developments on Walter, a sweating fabric manikin, are reported. These include the improved simulation of "walking motion", the design and construction of an automated water supply, and real-time measurement of evaporative water loss and regulation of "skin" temperature through the regulation of the pumps inside the manikin body. Testing of commercial garment ensembles showed that the measurement of thermal insulation and moisture-vapour resistance of clothing is very reproducible with the coefficient of variation being generally less than 5%. It was also shown that, in addition to the thermal insulation and moisture-vapour resistance, the percentage of moisture accumulation within clothing is a very useful parameter of clothing comfort. The improved manikin has been used to investigate the effects of walking motion on thermal insulation and evaporative resistance of clothing. The trend of the effects of walking speed up to 1.13 m s(-1) for the nude manikin and when it was wearing garments of different sizes are reported.

摘要

本文报道了发汗织物人体模型沃尔特的最新进展。这些进展包括对“行走运动”的改进模拟、自动供水系统的设计与构建,以及通过调节人体模型体内的泵实时测量蒸发失水量并调节“皮肤”温度。对商业服装套装的测试表明,服装热阻和湿阻的测量具有很高的可重复性,变异系数通常小于5%。研究还表明,除了热阻和湿阻外,服装内的水分积聚百分比也是衡量服装舒适性的一个非常有用的参数。改进后的人体模型已被用于研究行走运动对服装热阻和蒸发阻力的影响。报告了裸身人体模型以及穿着不同尺寸服装时,行走速度高达1.13 m s(-1)时的影响趋势。

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