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Preferred Air Velocity and Local Cooling Effect of desk fans in warm environments

机译:在温暖的环境中,台式风扇的首选风速和局部冷却效果

摘要

Common experiences, standards, and laboratory studies show that increased air velocity helps to offset warm sensation due to high environmental temperatures. In warm climate regions the opening of windows and the useof desk or ceiling fans are the most common systems to generate increased airflows to compensate for higher environmental temperatures at the expense of no or relatively low energy consumption. When using desk fans, local air movement is generated around the occupant and a certain cooling effect is perceived. The impact of the local air movement generated by different air flow patterns, and the possibility to keep comfortable conditions for the occupants in warm environments were evaluated in studies with human subjects. In an office-like climatic chamber, the effect of higher air velocity was investigated at room temperatures between 26°C to 34°C and at constant absolute humidity of 12.2 g/kg. By a thermal manikin the effect of directair movement generated by a personal desk fan at 26 °C, 28 °C, or 30 °C room temperatures and the achievable thermal comfort was also analyzed.Results show that it is possible to offset warm sensation within a range of indoor conditions using increased air velocity. Besides, higher air velocities and personal control increase the acceptability of the indoor environment at higher air temperatures with a limited energy consumption compared to full air conditioning during summer seasons in warmer countries. Comparing the study with Danish subjects with previous findings with Chinese subjects showed that subjects used to warmer climate could accept higher air velocities and felt less uncomfortable.
机译:共同的经验,标准和实验室研究表明,较高的风速有助于抵消由于环境温度升高而引起的温暖感。在温暖的气候地区,窗户的打开以及使用台式或吊扇是最常见的系统,以增加气流为代价,以补偿较高的环境温度,而无消耗或能耗相对较低。使用台式风扇时,乘员周围会产生局部空气流动,并且会感觉到一定的冷却效果。在对人类受试者的研究中,评估了由不同气流模式产生的局部空气运动的影响,以及在温暖的环境中为乘员保持舒适条件的可能性。在类似办公室的气候室内,研究了在26°C至34°C的室温和恒定的12.2 g / kg绝对湿度下较高空气流速的影响。通过热人体模型,还分析了个人台式风扇在26°C,28°C或30°C室温下产生的直接空气流动的影响以及可达到的热舒适性。结果表明,可以抵消室内的热感使用增加的空气速度在一定范围内的室内条件。此外,与温暖国家夏季的全空调相比,更高的风速和人为控制可提高室内温度在较高空气温度下的可接受性,且能耗有限。将这项研究与丹麦研究对象与中国研究对象的先前发现进行比较,结果表明,习惯于气候变暖的研究对象可以接受更高的空气速度,并且感到不舒服。

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