Evaluation of hand and finger heat loss with a heated hand model.

F Chen, H Nilsson, I Holmér
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引用次数: 8

Abstract

A heated full-scale hand model has been used to determine indirectly hand and finger heat losses of human subjects exposed to four ambient cold conditions (0, 4, 10 and 16 degrees C, air velocity approximately 0.3 m/s). Heat transfer coefficients determined with the hand model, were used to calculate heat flux based on measured skin to ambient temperature gradients. The responses of eight subjects from a previous study were used for the analysis. The measurements were carried out in a small climate chamber which was cooled by evaporating liquid carbon dioxide. The thermal hand was put into the chamber in a vertical position with the thumb up. The surface temperature of the thermal hand was controlled at 21, 25, 28, 31 and 34 degrees C under each of the four ambient cold conditions, in order to investigate possible temperature dependence of the calculated combined convective and radiate heat transfer coefficient (hCR). The value of hCR varied between approximately 9-13 W/m2 degree C for fingers and palm and back of hand, respectively. Calculated heat losses showed significant individual variation, corresponding to the maintained skin to ambient temperature gradient. Individual values from about 50 to more than 300 W/m2 were calculated. Several subjects showed CIVD and heat fluxes associated with this phenomenon were sometimes doubled. The measurement results showed realistic and comparable with literature date. The advantages of the thermal hand model can be counted as easy to use; directly measures the heat loss; highly reproducible and no interruption. It appears that a heated hand model provides a useful methods for analysis and quantification of hand heat loss.

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用加热手模型评估手和手指的热损失。
一个加热的全尺寸手部模型被用来间接测定暴露于四种环境寒冷条件下(0、4、10和16摄氏度,空气速度约为0.3米/秒)的人类受试者的手和手指的热损失。用手模型确定的传热系数,计算基于皮肤对环境温度梯度的热流密度。在之前的一项研究中,8名受试者的回答被用于分析。测量是在一个小的气候室中进行的,该气候室通过蒸发液态二氧化碳来冷却。热手以拇指向上的垂直位置放入腔室。在四种环境冷条件下,热手的表面温度分别控制在21、25、28、31和34℃,以研究计算的对流和辐射联合传热系数(hCR)对温度的依赖性。手指、手掌和手背的hCR值分别在约9-13 W/m2℃之间变化。计算出的热损失显示出显著的个体差异,这与维持的皮肤与环境温度梯度相对应。计算了大约50到300 W/m2以上的单个值。一些受试者表现出CIVD,与此现象相关的热通量有时加倍。测量结果符合实际,与文献数据具有可比性。热手模型的优点可以算作使用方便;直接测量热损失;高度可复制且无中断。热手模型为手部热损失的分析和量化提供了一种有用的方法。
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