首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Analysis of natural and forced convection heat losses from a thermal manikin: Comparative assessment of the static and dynamic postures
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Analysis of natural and forced convection heat losses from a thermal manikin: Comparative assessment of the static and dynamic postures

机译:热人体模型的自然和强制对流热损失分析:静态和动态姿势的比较评估

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摘要

The present experimental work is dedicated to the analysis of the effect of walking movements and air velocity on the convective heat transfer coefficients (h_(conv)) of the human body. A wind tunnel and an articulated thermal manikin of the Pernille type with sixteen body segments were used. Beyond the standing posture (static condition), a step rate of 45 steps/min was selected, corresponding to a walking speed of 0.51 m/s (dynamic condition). The free stream air velocity was varied from 0 to about 10 m/s. The experimental conditions were thus varied from natural to forced convection. The convection coefficients for the different body segments and the whole body were determined for each air velocity giving details about the differences between them. In the case of the whole body, for the standing static reference posture and free convection, the mean value of hconv was equal to 3.5 W m~(-2)°C~(-1). In the dynamic condition the corresponding hconv value was 4.5 Wm~(-2) °C~(-1). In forced convection, the highest values correspond to the highest wind speed and were equal to 22.4 W m~(-2) °C~(-1) for the static condition and 23.0 W m~(-2) °C~(-1) for the dynamic posture.
机译:本实验工作致力于分析步行运动和空气速度对人体对流换热系数(h_(conv))的影响。使用风洞和Pernille类型的铰接式热人体模型,身体模型为16个。除了站立姿势(静态条件)以外,还选择了45步/分钟的步速,对应于0.51 m / s的步行速度(动态条件)。自由气流的空气速度在0到约10 m / s之间变化。实验条件因此从自然对流变化到强制对流。确定每种风速下不同身体部分和整个身体的对流系数,并详细说明它们之间的差异。在整个人体中,对于站立的静态参考姿势和自由对流,hconv的平均值等于3.5 W m〜(-2)°C〜(-1)。在动态条件下,相应的hconv值为4.5 Wm〜(-2)°C〜(-1)。在强制对流中,最大值对应于最高风速,在静态条件下等于22.4 W m〜(-2)°C〜(-1),在23.0 W m〜(-2)°C〜(- 1)为动态姿势。

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