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热带地区办公室瞬态条件下的热感觉与舒适度调查

Thermal sensations and comfort investigations in transient conditions in tropical office.

作者信息

Dahlan Nur Dalilah, Gital Yakubu Yau

机构信息

Department of Architecture, Faculty of Design and Architecture, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.

Architectural Technology Department, The Federal Polytechnic, PMB 0231, Bauchi, Nigeria.

出版信息

Appl Ergon. 2016 May;54:169-76. doi: 10.1016/j.apergo.2015.12.008. Epub 2016 Jan 7.

Abstract

The study was done to identify affective and sensory responses observed as a result of hysteresis effects in transient thermal conditions consisting of warm-neutral and neutral - warm performed in a quasi-experiment setting. Air-conditioned building interiors in hot-humid areas have resulted in thermal discomfort and health risks for people moving into and out of buildings. Reports have shown that the instantaneous change in air temperature can cause abrupt thermoregulation responses. Thermal sensation vote (TSV) and thermal comfort vote (TCV) assessments as a consequence of moving through spaces with distinct thermal conditions were conducted in an existing single-story office in a hot-humid microclimate, maintained at an air temperature 24 °C (± 0.5), relative humidity 51% (± 7), air velocity 0.5 m/s (± 0.5), and mean radiant temperature (MRT) 26.6 °C (± 1.2). The measured office is connected to a veranda that showed the following semi-outdoor temperatures: air temperature 35 °C (± 2.1), relative humidity 43% (± 7), air velocity 0.4 m/s (± 0.4), and MRT 36.4 °C (± 2.9). Subjective assessments from 36 college-aged participants consisting of thermal sensations, preferences and comfort votes were correlated against a steady state predicted mean vote (PMV) model. Local skin temperatures on the forehead and dorsal left hand were included to observe physiological responses due to thermal transition. TSV for veranda-office transition showed that no significant means difference with TSV office-veranda transition were found. However, TCV collected from warm-neutral (-0.24, ± 1.2) and neutral-warm (-0.72, ± 1.3) conditions revealed statistically significant mean differences (p < 0.05). Sensory and affective responses as a consequence of thermal transition after travel from warm-neutral-warm conditions did not replicate the hysteresis effects of brief, slightly cool, thermal sensations found in previous laboratory experiments. These findings also indicate that PMV is an acceptable alternative to predict thermal sensation immediately after a down-step thermal transition (≤ 1 min exposure duration) for people living in a hot-humid climate country.

摘要

本研究旨在识别在准实验环境中,由暖-中性和中性-暖瞬态热条件下的滞后效应所观察到的情感和感官反应。炎热潮湿地区装有空调的建筑内部,会给进出建筑物的人员带来热不适和健康风险。报告显示,气温的瞬间变化会引发突然的体温调节反应。在炎热潮湿微气候环境下的一座现有单层办公室中,对因在具有不同热条件的空间中移动而产生的热感觉投票(TSV)和热舒适投票(TCV)进行了评估,该办公室的空气温度保持在24°C(±0.5),相对湿度51%(±7),风速0.5 m/s(±0.5),平均辐射温度(MRT)26.6°C(±1.2)。被测办公室与一个阳台相连,阳台显示出以下半室外温度:空气温度35°C(±2.1),相对湿度43%(±7),风速0.4 m/s(±0.4),MRT 36.4°C(±2.9)。对36名大学生参与者的热感觉、偏好和舒适投票等主观评估,与稳态预测平均投票(PMV)模型进行了相关性分析。纳入前额和左手背部的局部皮肤温度,以观察热过渡引起的生理反应。阳台-办公室过渡的TSV表明,与办公室-阳台过渡的TSV相比,未发现显著的均值差异。然而,从暖-中性(-0.24,±1.2)和中性-暖(-0.72,±1.3)条件收集的TCV显示出统计学上的显著均值差异(p < 0.05)。在从暖-中性-暖条件下旅行后的热过渡所产生的感官和情感反应,并未重现先前实验室实验中发现的短暂、稍凉的热感觉的滞后效应。这些发现还表明,对于生活在炎热潮湿气候国家的人们来说,PMV是预测热过渡下降后(暴露持续时间≤1分钟)立即出现的热感觉的可接受替代方法。

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