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高原气候区不同活动强度下大学生户外热舒适研究。

Study on the outdoor thermal comfort of college students under different activity intensities in a high-altitude climate zone.

机构信息

School of Architecture, Southwest Jiaotong University, Chengdu, China.

出版信息

Front Public Health. 2024 Mar 18;12:1365470. doi: 10.3389/fpubh.2024.1365470. eCollection 2024.

Abstract

INTRODUCTION

Research on the outdoor thermal comfort (OTC) of a university campus is beneficial to the physical and mental health of college students.

METHODS

In this study, the OTC of students attending Tibet University in Lhasa, which experiences high-altitude cold climate conditions, under different activity intensities was studied using field measurements and a questionnaire survey.

RESULTS

With the increase in activity intensity, the comfort physiologically equivalent temperature (PET) value gradually increased in summer, while the comfortable PET value gradually decreased in winter. The most comfortable PET value is 17.6°C in summer and 11.5°C in winter. The neutral PET of Tibetan college students during outdoor activities in summer was 16.3°C, and the neutral PET of outdoor activities in winter was 12.1°C. Gender and ethnicity had different effects on thermal sensation under different activity intensities. Under vigorous-intensity activities, PET in winter and summer had the greatest influence on thermal sensation. The situation was different under moderate-intensity activity. PET had the greatest influence on thermal sensation in summer, and Tmrt had the greatest influence on thermal sensation in winter.

DISCUSSION

These findings provide a basis for an improved design of the outdoor environment under different outdoor activity intensities in high-altitude areas.

摘要

简介

研究大学校园户外热舒适(OTC)有益于大学生的身心健康。

方法

本研究采用现场测量和问卷调查的方法,对在高海拔寒冷气候条件下的拉萨西藏大学的学生在不同活动强度下的 OTC 进行了研究。

结果

随着活动强度的增加,夏季的舒适生理等效温度(PET)值逐渐升高,而冬季的舒适 PET 值逐渐降低。夏季最舒适的 PET 值为 17.6°C,冬季为 11.5°C。夏季户外活动中藏族大学生的中性 PET 为 16.3°C,冬季户外活动的中性 PET 为 12.1°C。性别和种族对不同活动强度下的热感觉有不同的影响。在剧烈活动强度下,冬季和夏季的 PET 对热感觉的影响最大。在中等活动强度下情况则不同,夏季 PET 对热感觉的影响最大,冬季 Tmrt 对热感觉的影响最大。

讨论

这些发现为在高海拔地区不同户外活动强度下改善户外环境设计提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62d6/10982489/84cbab4d55eb/fpubh-12-1365470-g001.jpg

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