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首页> 外文期刊>European Journal of Applied Physiology >Assessment of the effects of environmental radiation on wind chill equivalent temperatures
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Assessment of the effects of environmental radiation on wind chill equivalent temperatures

机译:评估环境辐射对风冷等效温度的影响

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Combinations of wind-driven convection and environmental radiation in cold weather, make the environment “feel” colder. The relative contributions of these mechanisms, which form the basis for estimating wind chill equivalent temperatures (WCETs), are studied over a wide range of environmental conditions. Distinction is made between direct solar radiation and environmental radiation. Solar radiation, which is not included in the analysis, has beneficial effects, as it counters and offsets some of the effects due to wind and low air temperatures. Environmental radiation effects, which are included, have detrimental effects in enhancing heat loss from the human body, thus affecting the overall thermal sensation due to the environment. The analysis is performed by a simple, steady-state analytical model of human–environment thermal interaction using upper and lower bounds of environmental radiation heat exchange. It is shown that, over a wide range of relevant air temperatures and reported wind speeds, convection heat losses dominate over environmental radiation. At low wind speeds radiation contributes up to about 23% of the overall heat loss from exposed skin areas. Its relative contributions reduce considerably as the time of the exposure prolongs and exposed skin temperatures drop. At still higher wind speeds, environmental radiation effects become much smaller contributing about 5% of the total heat loss. These values fall well within the uncertainties associated with the parameter values assumed in the computation of WCETs. It is also shown that environmental radiation effects may be accommodated by adjusting reported wind speeds slightly above their reported values.
机译:风冷对流与寒冷天气中的环境辐射相结合,使环境“感觉”更冷。在广泛的环境条件下,研究了这些机制的相对贡献,这些贡献构成了估算风冷等效温度(WCET)的基础。在直接太阳辐射和环境辐射之间有区别。分析中未包括的太阳辐射具有有益的作用,因为它可以抵消和抵消由于风和低气温而产生的一些影响。所包括的环境辐射效应在增加人体热量散失方面具有有害作用,从而影响环境带来的整体热感。该分析是通过使用环境辐射热交换的上限和下限的人与环境热相互作用的简单稳态分析模型来执行的。结果表明,在各种相关的空气温度和报告的风速范围内,对流热损失占环境辐射的主导地位。在低风速下,辐射占裸露皮肤区域总热量损失的约23%。随着暴露时间的延长和皮肤温度的下降,其相对贡献显着降低。在更高的风速下,环境辐射的影响会变小得多,约占总热量损失的5%。这些值完全落在与WCET计算中假定的参数值相关的不确定性之内。还显示可以通过将报告的风速调整为略高于其报告值来适应环境辐射的影响。

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