Studying Surface and Canopy Layer Urban Heat Island at Micro-Scale Using Multi-Sensor Data in Geographic Information Systems

Bakul Budhiraja, P. Pathak, D. Acharya
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引用次数: 1

Abstract

Variations of Urban Heat Island (UHI) effect within urban areas cannot be studied in detail using traditional combination of satellite images with thermal infrared (IR) bands and local weather station data due to their limited spatio-temporal scale. In this article, a system has been built to supplement the current infrastructure and enhance the high spatio-temporal scale. The article progresses from initially traversing through the city of Greater Noida to continuous manual data collection on an academic campus and later by automating it with integrated sensors on a microcontroller while achieving the objective of the collection of continuous high spatio-temporal scale data. Geographic information systems (GISs) were used to integrate and visualize these data with land surface temperature (LST) and air temperature data. The system provided the diurnal cycle of urban materials and insights into nighttime UHI at micro-scale. Overall the low-cost sensing technology presented has the potential to monitor citywide UHI.
基于地理信息系统多传感器数据的微尺度地表和冠层城市热岛研究
传统的热红外卫星影像与当地气象站资料相结合,由于其时空尺度有限,无法对城市热岛效应的变化进行详细研究。本文建立了一个系统,以补充现有的基础设施,提高高时空尺度。本文从最初穿越大诺伊达市到在一个学术校园内进行连续的人工数据采集,然后通过微控制器上的集成传感器实现自动化,同时实现连续高时空尺度数据的采集。利用地理信息系统(gis)将这些数据与地表温度(LST)和气温数据进行整合和可视化。该系统提供了城市材料的昼夜循环,并在微观尺度上深入了解夜间的热岛指数。总的来说,提出的低成本传感技术具有监测全市热岛的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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