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Effects of ambient temperature steps on thermal comfort requirements

机译:环境温度步骤对热舒适性要求的影响

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摘要

The purpose of this study was to determine the thermal comfort requirements for steps in temperature. Thirty male subjects were exposed for 50 min to a 34 or 37 degrees C condition, and then quickly transferred to a cooler environment of 31, 28, 25, and 22 degrees C for 50 min. Mean skin temperature was continuously measured, and the subjects reported their thermal sensation and comfort sensation every 2 min. Just after the step changes, the mean skin temperature immediately decreased, while the thermal sensation overshot and gradually rose again. Both the skin temperature and the thermal sensation seemed to reach a constant level within about 20 min. However, there were differences in the mean skin temperature and the neutral temperature derived from the correlation between the ambient temperature and the thermal sensation even 50 min after the steps, due to the thermal environmental condition before the changes of temperature. The change in the neutral temperature with time was expressed as two attenuating equations. These equations indicate that there is an obvious difference between the neutral temperatures due to the thermal condition before step changes, and that it takes >50 min after the step changes to reach the steady state. It is expected that these equations predict in quantitative terms the thermal comfort requirements within a given experimental condition.
机译:这项研究的目的是确定温度阶跃的热舒适性要求。 30名男性受试者在34或37摄氏度的条件下暴露50分钟,然后迅速转移到31、28、25和22摄氏度的凉爽环境中50分钟。连续测量平均皮肤温度,受试者每2分钟报告一次其热感和舒适感。阶跃变化后,平均皮肤温度立即下降,而热感过度,然后逐渐上升。皮肤温度和热感似乎都在约20分钟内达到恒定水平。然而,由于温度变化之前的热环境条件,即使在步骤后50分钟,平均皮肤温度和中性温度也存在差异,这是由环境温度与热感之间的相关性得出的。中性温度随时间的变化表示为两个衰减方程。这些方程式表明,由于阶跃变化之前的热条件,中性温度之间存在明显的差异,阶跃变化之后达到稳态需要> 50分钟。可以预期,这些方程可以定量地预测给定实验条件下的热舒适性要求。

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