Teaching Support Services, University of Guelph, Guelph, NIG 2W1, ON, Canada.
Int J Biometeorol. 2009 Sep;53(5):429-41. doi: 10.1007/s00484-009-0227-2. Epub 2009 Apr 26.
The purpose of this paper is to improve the accuracy of the COMFA outdoor thermal comfort model for application to subjects performing physical activity. A sensitivity analysis was performed to identify conditions where the COMFA model produced erroneous estimates of the heat and moisture exchanges between the human body and the ambient environment, based on data from subjects performing moderate-to-vigorous physical activity. Errors occurred at high metabolic rates (> 400 W m(-2)), high wind speeds (> 4 m s(-1)) and warm air temperatures (> 28 degrees C). Revisions to the clothing resistance (r(c)), clothing vapour resistance (r(c upsilon)), skin tissue resistance (r(t)), and skin temperature (T(sk)) equations were proposed. The revised assessment revealed that subjects had a wide range of thermal acceptability (B = -20 W m(-2) to +150 W m(-2)), which was offset to the warm-end of the comfort scale. The revised model (COMFA*) performed well, predicting the actual thermal sensation of subjects in approximately 70% of cases. This study effectively integrated current empirical research related the effect of wind and activity on the clothing microclimate to improve the application of an outdoor thermal comfort model for subjects performing physical activity.
本文旨在提高 COMFA 户外热舒适模型的准确性,以适用于进行体力活动的人群。通过对进行中等到剧烈体力活动的人群进行数据分析,对 COMFA 模型在人体与环境之间的热湿交换方面产生错误估计的条件进行了敏感性分析。在高代谢率(>400 W m(-2))、高风速(>4 m s(-1))和暖空气温度(>28 摄氏度)的情况下会出现错误。提出了对服装热阻(r(c))、服装蒸发热阻(r(c upsilon))、皮肤组织热阻(r(t))和皮肤温度(T(sk))方程的修订。修订后的评估表明,受试者的热舒适度范围很广(B = -20 W m(-2) 到 +150 W m(-2)),这与舒适范围的暖端相抵消。修订后的模型(COMFA*)表现良好,约 70%的情况下能准确预测受试者的实际热感觉。本研究有效地整合了当前与风及活动对服装微气候影响相关的实证研究,以提高适用于进行体力活动的人群的户外热舒适模型的应用。