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适度温度漂移对热生理学和感知的影响。

The influence of a moderate temperature drift on thermal physiology and perception.

作者信息

Ivanova Yoanna M, Pallubinsky Hannah, Kramer Rick, van Marken Lichtenbelt Wouter

机构信息

Department of Nutrition and Movement Sciences, NUTRIM, Maastricht University, Maastricht, the Netherlands.

Department of Nutrition and Movement Sciences, NUTRIM, Maastricht University, Maastricht, the Netherlands; Department of the Built Environment, Eindhoven University of Technology, Eindhoven, the Netherlands.

出版信息

Physiol Behav. 2021 Feb 1;229:113257. doi: 10.1016/j.physbeh.2020.113257. Epub 2020 Nov 21.

Abstract

Humans spend approximately 80-90% of their time indoors. In current practice, indoor temperatures in many buildings are controlled very tightly. However, allowing more variation in indoor temperature results in more energy-efficient buildings and could potentially improve human metabolic and cardiovascular health. Therefore, this study aimed to evaluate the effect of a drifting ambient temperature versus a fixed ambient temperature on thermal physiological parameters and subjective perception. A cross-over intervention design was conducted in 16 healthy men (age 26 ± 4 y; BMI 23.0 ± 1.7 kg/m) between July 2018 and May 2019. All participants underwent two whole-day (8:30-17:00) experimental sessions, during which they were exposed to a drifting (17-25°C with a morning ramp of 2.58°C/h and afternoon ramp of -2.58°C/h) or constant ambient temperature (21°C) in randomized order. The experiments took place in respiratory chambers, which simulated a typical office environment and in which temperature conditions can be controlled accurately. Throughout the experimental sessions core and skin temperature, heart rate, blood pressure, energy expenditure as well as activity levels were measured. Subjective thermal perception, such as thermal comfort and sensation, was assessed by questionnaires every 30 min. Results reveal that energy expenditure was higher in the morning during the drifting session, which was accompanied by an increase in activity levels. Both drifting and fixed sessions were judged as comfortable although during the drift thermal comfort was lower in the morning and afternoon and higher during midday. The results indicate that a drifting ambient temperature can be applied in practice, and as such, can contribute to a healthier and more sustainable built environment. More research is needed to understand the role of a drifting temperature on the long term.

摘要

人类大约80 - 90%的时间都在室内度过。在当前的实际情况中,许多建筑的室内温度被严格控制。然而,允许室内温度有更多变化会使建筑更节能,并有可能改善人类的代谢和心血管健康。因此,本研究旨在评估环境温度漂移与固定环境温度对热生理参数和主观感受的影响。2018年7月至2019年5月期间,对16名健康男性(年龄26±4岁;体重指数23.0±1.7kg/m)进行了交叉干预设计。所有参与者都进行了两次为期一整天(8:30 - 17:00)的实验,在此期间,他们被随机安排暴露在漂移的(17 - 25°C,上午升温速率为2.58°C/小时,下午降温速率为 - 2.58°C/小时)或恒定的环境温度(21°C)下。实验在呼吸室内进行,该呼吸室模拟了典型的办公环境,温度条件可精确控制。在整个实验过程中,测量了核心温度、皮肤温度、心率、血压、能量消耗以及活动水平。每隔30分钟通过问卷调查评估主观热感受,如热舒适度和感觉。结果显示,在漂移实验期间,早晨的能量消耗更高,同时活动水平也有所增加。尽管在漂移实验中,早晨和下午的热舒适度较低,中午较高,但漂移和固定温度实验都被判定为舒适。结果表明,环境温度漂移在实际中是可行的,因此有助于营造更健康、更可持续的建筑环境。需要更多研究来了解长期温度漂移的作用。

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