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Evaluation of the Convective Heat Transfer Coefficient of the Human Body Using the Wind Tunnel and Thermal Manikin

机译:利用风洞和热人体模型评估人体对流换热系数

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摘要

This study was conducted to determine the convective heat transfer rates (α_c) of each part of the human body and of the whole body when a human is in a standing or sedentary posture in an outdoor environment. A wind tunnel was used to reproduce the side wind in an outdoor environment, and a naked thermal manikin was used to control the detailed thermal characteristics of the human body. Accurate radiation analysis was employed to evaluate the radiation effect of the thermal manikin. The α_cs of the whole body and of each part of the body increased along with the wind velocity in the standing and sedentary postures. In the standing position, the α_cs of the head, feet, and hands, the terminuses of the human body, were about 20-30% higher than the average α_c of the whole body. In the sedentary position, the α_cs of the head, hands, and arms, the terminuses of the human body, were about 20% higher than the average α_c of the whole body. The α_cs in this study were lower than those obtained from the climate chamber. Meanwhile, they were similar to or slightly higher than those from the results in wind tunnels.
机译:进行这项研究是为了确定人在室外环境中站立或久坐的姿势时,人体各部分和整个身体的对流传热速率(α_c)。使用风洞在室外环境中重现侧风,并使用裸热人体模型来控制人体的详细热特性。精确的辐射分析用于评估人体模型的辐射效果。在站立和久坐姿势下,整个身体和身体每个部分的α_cs随风速增加。在站立位置,人的头,脚和手的α_cs比全身的平均α_c高约20-30%。在久坐的位置上,人体末端的头,手和手臂的α_cs比整个身体的平均α_c高约20%。本研究中的α_cs低于从气候室获得的α_cs。同时,它们与风洞中的结果相似或略高。

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