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太阳辐射和黑体再辐射对热舒适性的影响。

The effects of solar radiation and black body re-radiation on thermal comfort.

作者信息

Hodder Simon, Parsons Ken

机构信息

Department of Human Sciences, Loughborough University, Loughborough, Leicestershire, UK.

出版信息

Ergonomics. 2008 Apr;51(4):476-91. doi: 10.1080/00140130701710986.

Abstract

When the sun shines on people in enclosed spaces, such as in buildings or vehicles, it directly affects thermal comfort. There is also an indirect effect as surrounding surfaces are heated exposing a person to re-radiation. This laboratory study investigated the effects of long wave re-radiation on thermal comfort, individually and when combined with direct solar radiation. Nine male participants (26.0 +/- 4.7 years) took part in three experimental sessions where they were exposed to radiation from a hot black panel heated to 100 degrees C; direct simulated solar radiation of 600 Wm(-2) and the combined simulated solar radiation and black panel radiation. Exposures were for 30 min, during which subjective responses and mean skin temperatures were recorded. The results showed that, at a surface temperature of 100 degrees C (close to maximum in practice), radiation from the flat black panel provided thermal discomfort but that this was relatively small when compared with the effects of direct solar radiation. It was concluded that re-radiation, from a dashboard in a vehicle, for example, will not have a major direct influence on thermal comfort and that existing models of thermal comfort do not require a specific modification. These results showed that, for the conditions investigated, the addition of re-radiation from internal components has an effect on thermal sensation when combined with direct solar radiation. However, it is not considered that it will be a major factor in a real world situation. This is because, in practice, dashboards are unlikely to maintain very high surface temperatures in vehicles without an unacceptably high air temperature. This study quantifies the contribution of short- and long-wave radiation to thermal comfort. The results will aid vehicle designers to have a better understanding of the complex radiation environment. These include direct radiation from the sun as well as re-radiation from the dashboard and other internal surfaces.

摘要

当阳光照射在封闭空间中的人身上时,比如在建筑物或车辆内,它会直接影响热舒适度。由于周围表面受热会使人受到再辐射,所以还存在间接影响。这项实验室研究调查了长波再辐射对热舒适度的影响,包括单独影响以及与直接太阳辐射相结合时的影响。九名男性参与者(年龄26.0±4.7岁)参加了三个实验环节,在这些环节中,他们分别暴露在加热到100摄氏度的热黑色面板的辐射下、600 Wm(-2)的直接模拟太阳辐射下以及模拟太阳辐射与黑色面板辐射相结合的环境中。暴露时间为30分钟,在此期间记录主观反应和平均皮肤温度。结果表明,在表面温度为100摄氏度(实际中接近最大值)时,平板黑色面板的辐射会导致热不适,但与直接太阳辐射的影响相比,这种不适相对较小。得出的结论是,例如车辆仪表板的再辐射不会对热舒适度产生重大直接影响,现有的热舒适度模型不需要进行特定修改。这些结果表明,在所研究的条件下,与直接太阳辐射相结合时,内部部件的再辐射对热感觉有影响。然而,在实际情况中,它不被认为是一个主要因素。这是因为在实践中,如果空气温度过高到不可接受的程度,车辆仪表板不太可能保持非常高的表面温度。这项研究量化了短波和长波辐射对热舒适度的贡献。研究结果将有助于车辆设计师更好地理解复杂的辐射环境。这些环境包括来自太阳的直接辐射以及仪表板和其他内表面的再辐射。

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