开放空间的热舒适条件评估:对印度大学校园的横向实地调查

Pub Date : 2021-01-01 DOI:10.11113/ijbes.v8.n3.786
Pardeep Kumar, A. Sharma
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引用次数: 7

摘要

室外热舒适(OTC)促进了公共场所的使用频率、娱乐活动和人们的福祉。尽管近十年来人们对OTC研究的兴趣日益浓厚,但对寒区尤其是干旱区OTC研究的关注却很少。本研究调查了干旱地区校园开放空间的OTC条件。研究采用主观调查(问卷)和现场监测(小气候参数)相结合的方法进行。这项研究是在2019年的寒冷季节在印度哈里亚纳邦穆尔塔尔的Deenbandhu Chhotu Ram科技大学校园进行的。调查时间在9:00至17:00之间。作者对185份有效问卷进行了处理,分析了OTC的情况。只有8.6%的受访者认为自己的感知感觉是“中性的”。对被调查者的热感觉与小气候参数进行回归分析,建立经验热感觉模型。气温是影响被调查者感觉的最主要参数。经验模型表明,随着气温、相对湿度和太阳辐射的增加,热感觉也会增加,而风速则相反。采用生理等效温度(PET)评价OTC条件;中性PET范围为18.42 ~ 25.37℃,中性温度为21.89℃。Probit分析优选温度为21.99℃。这项研究的发现可以为印度干旱地区的教育机构设计和规划户外空间提供有价值的信息
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Assessing The Thermal Comfort Conditions In Open Spaces: A Transversal Field Survey On The University Campus In India
Outdoor thermal comfort (OTC) promotes the usage frequency of public places, recreational activities, and people's wellbeing. Despite the increased interest in OTC research in the past decade, less attention has been paid to OTC research in cold weather, especially in arid regions. The present study investigates the OTC conditions in open spaces at the campus area in the arid region. The study was conducted by using subjective surveys(questionnaire) and onsite monitoring (microclimate parameters). The study was conducted at the Deenbandhu Chhotu Ram University of Science and Technology, Murthal, Haryana-India campus during the cold season of 2019. The timings of surveys were between 9:00 and 17:00 hours. The authors processed the 185 valid questionnaire responses of the respondents to analyze OTC conditions. Only 8.6% of the respondents marked their perceived sensation "Neutral." Regression analysis was applied between respondents' thermal sensations and microclimate parameters to develop the empirical thermal sensation model. The air temperature was the most dominant parameter affecting the sensations of the respondents. The empirical model indicated that by increasing air temperature, relative humidity, and solar radiation, the thermal sensations also increased while wind speed had an opposite effect. Physiological equivalent temperature (PET) was applied for assessing the OTC conditions; the neutral PET range was found to be 18.42-25.37°C with a neutral temperature of 21.89°C. The preferred temperature was 21.99 °C by applying Probit analysis. The study's findings could provide valuable information in designing and planning outdoor spaces for educational institutions in India's arid regions
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