Quantifying Urban Spatial Morphology Indicators on the Green Areas Cooling Effect: The Case of Changsha, China, a Subtropical City

Author:

Li Jiang123ORCID,Wang Hao123,Cai Xiaoxi4ORCID,Liu Shaobo123,Lai Wenbo5,Chang Yating123,Qi Jialing123,Zhu Gexuan123,Zhang Chuyu123,Liu Yudan123

Affiliation:

1. School of Architecture and Art, Central South University, Changsha 410083, China

2. Hunan Provincial Key Laboratory of Low Carbon Healthy Building, Central South University, Changsha 410083, China

3. Key Laboratory of Ecology and Energy Saving Study of Dense Habitat, Ministry of Education, Shanghai 200092, China

4. School of Art and Design, Hunan First Normal University, Changsha 410205, China

5. School of Architecture, South China University of Technology, Guangzhou 510006, China

Abstract

Green city areas are crucial in mitigating the Urban Heat Island Effect (UHI). However, the cooling effect of green city areas can be influenced by the surrounding complex urban spatial environment. This study focuses on Changsha, a subtropical city in China, where 40 green city areas were screened and analyzed. The study aims to quantify the specific impact of urban spatial morphology on the cooling effect of green city areas. Through statistical correlation and regression analysis, this study focused on six urban spatial morphology indicators: building density (BD), building floor area ratio (BFR), building volume density (BVD), building evenness index (BEI), building average height (BH), and building height standard deviation (BSD). The results indicate that the cooling effect of green city areas could be influenced by urban spatial morphology. Factors such as BD, BFR, BH, and BSD were found to be significantly correlated with the cooling effect of green city areas, with BH showing the strongest influence. BD and BFR were negatively correlated, while BH and BSD were positively correlated. The range values of BD, BFR, BH, and BSD were determined to achieve the optimal conditions for the cooling effect of green city areas. Additionally, the relative position of the green city areas in the neighboring urban areas affects the cooling effect of the green city areas. The cooling effect is most pronounced in the urban area situated to the south of the green city areas. These findings provide a solid foundation for urban planning around green city spaces and offer scientifically sound evidence for mitigating the UHI.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province, China

Humanities and Social Science Fund of Ministry of Education of China

Publisher

MDPI AG

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