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首页> 外文期刊>International Journal of Ventilation >Effects of Intermittent Air Velocity on Thermal and Draught Perception During Transient Temperature Conditions
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Effects of Intermittent Air Velocity on Thermal and Draught Perception During Transient Temperature Conditions

机译:间歇温度对瞬态温度条件下热和通风感的影响

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摘要

Previous research has shown that air movement has a significant influence on humans' thermal comfort. For persons feeling cool, air movement tends to be perceived as draught, whilst when feeling warm air movements may provide a desired cooling effect. In the transition zone it therefore seems difficult to use constant air velocity as a tool for cooling without creating draught problems. Nevertheless, from an energy saving perspective it appears to be far more efficient to use enhanced convective cooling, induced by the air movement, to cool only the occupants instead of the entire building. One possible way to use air movement as a method to improve thermal comfort without resultant draught problems could be to use intermittent air velocity instead of constant velocity. The present paper reports results from three experiments where subjects have been exposed to velocity variations, showing support for the hypothesis that it is possible to cool humans and reduce the percentage of occupants who are dissatisfied with the room temperature, without creating draught problems, through intermittent cooling.
机译:先前的研究表明,空气流动会对人类的热舒适度产生重大影响。对于感觉凉爽的人,空气流动倾向于被认为是吃水,而当感觉到温暖的空气运动可能会提供所需的冷却效果。因此,在过渡区中似乎很难使用恒定的风速作为冷却工具而不会产生通风问题。然而,从节能的角度来看,使用由空气流动引起的增强的对流冷却来仅冷却居住者而不是整个建筑物,似乎效率更高。使用空气运动作为改善热舒适性而又不会引起通风困难的一种可能方法是使用间歇空气速度而不是恒定速度。本文报告了三个实验的结果,在这些实验中,受试者暴露于速度变化中,这表明了这样的假设:可以断断续续地为人类降温,并减少对室温不满意的乘员百分比,而不会造成吃水问题。冷却。

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