ANALYZING LAND USE TYPES’ EFFECTS ON LST USING THE GWR MODEL AND CASE STUDIES IN BEIJING

Author:

Yao Zigang1,Liu Liyan2,Li Wenmo3,Shahraki Abdol Aziz4ORCID,Pang Yan2

Affiliation:

1. School of Art Design and Media, East China University of Science and Technology, Shanghai, China

2. Shanghai Tongzeng Planning & Architectural Design Co., Shanghai, China

3. School of Architecture and Environmental Arts, Shanghai Urban Construction Vocational College, Shanghai, China

4. The Royal Institute of Technology, KTH, The School of Architecture and Built Environment, Stockholm, Sweden

Abstract

The development of urbanization and the transformation of green lands into impermeable land increase temperature and create urban heat islands (UHIs). Our observations with remote sensing instruments of Landsat platforms show considerable changes in land use types in Beijing city with the shrinking of green lands, expansion of built environments, and a slight increase in the temperature during the recent four decades. Using remote sensing instruments of Landsat platforms and registered data from two meteorological stations in Beijing, this study finds the relationship between land surface temperature (LST) and the increasing conversion of cultivated lands into built-up areas. This article presents innovative research that shows the mutual correlation well and recommends revisions in the land use policies for better weather. The geographically weighted regression model (GWR) with a Gaussian weighting kernel function analyzes the impact of various urban land use types on the LST and the increase UHIs. In Beijing city, green lands show fewer standard deviations (SD) in the average temperatures equal to 0.109, while the industrial spaces exhibit a high SD equal to 0.212. The outcomes of this paper contribute to finding optimal land use policies everywhere in the world with the increasing urbanization through simulating its model for a more comfortable life.

Publisher

Vilnius Gediminas Technical University

Subject

Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Environmental Engineering

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