Literature DB >> 32886843

Effects of increased humidity on physiological responses, thermal comfort, perceived air quality, and Sick Building Syndrome symptoms at elevated indoor temperatures for subjects in a hot-humid climate.

Chunying Zuo1, Lin Luo1, Weiwei Liu1.   

Abstract

Recently, studies suggest that the average indoor temperature is typically >30°C and that the maximum temperature can reach 37.5°C in hot-humid areas. However, the effects caused by increasing the humidity at high indoor temperatures are not clear. In this study, twelve female and twelve male subjects were exposed to different operative temperature (26.6, 30.6, and 37.4°C) and relative humidity (50% and 70%) in a climate chamber. Data concerning thermal sensation, perceived air quality, and Sick Building Syndrome (SBS) were collected during 190-min-long exposure to each thermal condition. Heart rate, respiration rate, respiratory ventilation rate, mean skin temperature, and eardrum temperature were measured. It was found that increasing the relative humidity from 50% to 70% at 26 and 30°C had no significant effects on the physiological responses, thermal comfort, perceived air quality, or SBS symptoms of the subjects. However, when the temperature was elevated to 37°C, the heart rate, respiration rate, respiratory ventilation rate, mean skin temperature, and eardrum temperature increased significantly as a result of the increase in the relative humidity from 50% to 70%. The subjects felt hotter and more uncomfortable, and they found indoor air quality was more difficult to accept. The subjects are acclimatized to hot environments and more tolerant to heat. Therefore, the results are applicable to the acclimated people living in hot-humid climate.
© 2020 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  gender difference; high relative humidity; high temperature; physiological response; subjective sensation; thermal comfort

Year:  2020        PMID: 32886843     DOI: 10.1111/ina.12739

Source DB:  PubMed          Journal:  Indoor Air        ISSN: 0905-6947            Impact factor:   5.770


  2 in total

1.  Physiological comfort evaluation under different airflow directions in a heating environment.

Authors:  Kaori Tamura; Sayaka Matsumoto; Yu Hsuan Tseng; Takayuki Kobayashi; Jun'ichi Miwa; Ken'ichi Miyazawa; Soichiro Matsumoto; Seiji Hiramatsu; Hiroyuki Otake; Tsuyoshi Okamoto
Journal:  J Physiol Anthropol       Date:  2022-04-15       Impact factor: 2.509

2.  Autonomic thermoregulatory responses and subjective thermal perceptions upon the initiation of thermal behavior among resting humans in hot and humid environment.

Authors:  Keneth B Sedilla; Takafumi Maeda
Journal:  J Physiol Anthropol       Date:  2022-10-10       Impact factor: 2.509

  2 in total

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