斋浦尔热力动力学:利用原位和遥感数据分析城市热岛效应

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Cogent Engineering Pub Date : 2023-11-02 DOI:10.1080/23311916.2023.2269654
Aneesh Mathew, P. Sarwesh, Sumit Khandelwal, Padala Raja Shekar, Joseph Omeiza Alao, Hazem Ghassan Abdo, Hussein Almohamad, Ahmed Abdullah Al Dughairi
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引用次数: 0

摘要

城市热岛效应是一种现象,城市地区的温度高于周围的农村地区。在这些问题中,空气或地表温度的升高是导致热岛现象的主要问题之一。在本文中,我们对印度斋浦尔市和斋浦尔周边地区的日热岛效应进行了研究。为了更好地了解和评价地表热岛效应(SUHI)和大气热岛效应(AUHI)的影响,以及评价斋浦尔不同地表的热剖面,在7个分散地点进行了现场温度监测。利用卫星资料,确定了上午10时30分至晚上10时30分之间的超级高铁和超级高铁强度。观察结果指出,正AUHI强度(AUHII)存在于许多地点,而与时间无关。白天多处为负强度,夜间多处为正强度。根据我们的观测,AUHI和SUHI在夜间呈直接相关,而在白天呈负相关或负相关。也就是说,AUHI在白天和晚上都是活跃的。不同的陆地表面在对比日热岛效应中起着重要的作用。本研究评估了遥感数据在监测城市热岛效应方面的潜力,并为城市规划者和决策者提供建议,以减轻斋浦尔市的城市热岛效应。
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Thermal dynamics of Jaipur: Analyzing urban heat island effects using in-situ and remotely sensed data
The Urban Heat Island (UHI) effect is a phenomenon where urban areas experience higher temperatures than surrounding rural areas. In these issues, enhanced air or surface temperature is one of the major issues that led to the UHI phenomenon. In this article, we come up with a study on the diurnal UHI effect caused in Jaipur city, India, and surrounding areas of Jaipur. In-situ temperature monitoring has been carried out at seven dispersed locations to properly understand and evaluate the effects of surface UHI (SUHI) and atmospheric UHI (AUHI), as well as to assess the thermal profile of diverse land surfaces in Jaipur. With the use of satellite data, the intensity of AUHI and SUHI has been determined between 10.30 a.m. and 10.30 p.m. The observations point out that positive AUHI intensity (AUHII) exists at many locations, irrespective of time periods. During the day period, negative SUHI intensity (SUHII) was noticed at many locations, whereas during the night period, positive SUHII was noticed. According to our observations, AUHI and SUHI have a direct correlation at night but a negative or inverse correlation during the day. That is, AUHI was active both during the day and at night. Various land surfaces play a significant role in contrasting the diurnal UHI effect. This study evaluates the potential of remotely sensed data in monitoring the UHI effect and provides recommendations for urban planners and policymakers to mitigate the UHI effect in the city of Jaipur.
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来源期刊
Cogent Engineering
Cogent Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.00
自引率
5.30%
发文量
213
审稿时长
13 weeks
期刊介绍: One of the largest, multidisciplinary open access engineering journals of peer-reviewed research, Cogent Engineering, part of the Taylor & Francis Group, covers all areas of engineering and technology, from chemical engineering to computer science, and mechanical to materials engineering. Cogent Engineering encourages interdisciplinary research and also accepts negative results, software article, replication studies and reviews.
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