Quantification of heat mitigation by urban green spaces using InVEST model—a scenario analysis of Nagpur City, India

被引:18
|
作者
Kadaverugu R. [1 ,2 ]
Gurav C. [1 ]
Rai A. [1 ]
Sharma A. [1 ]
Matli C. [2 ]
Biniwale R. [1 ]
机构
[1] Cleaner Technology and Modeling Division, Council of Scientific and Industrial Research-National Environmental Engineering Research Institute, Nagpur, 440020, Maharashtra
[2] Department of Civil Engineering, National Institute of Technology, Warangal, 506004, Telangana
关键词
Heat mitigation; InVEST model; Nagpur City; Scenario analysis; Space cooling; Urban green spaces;
D O I
10.1007/s12517-020-06380-w
中图分类号
学科分类号
摘要
Urban green spaces (UGS) are known for providing a cooling effect by evapotranspiration, shade, and by altering the albedo. Heat mitigation by UGS reduces the space cooling demand, provides comfort, and enhances productivity. Rapid urbanization in developing countries has resulted in dwindling green spaces and their protective role is often neglected. We have quantified the heat mitigation by UGS using the InVEST model (Integrated Valuation of Ecosystem Services and Trade-offs) for present and future scenarios of Nagpur City which is situated in a heatwave-affected zone. Four future plausible scenarios were generated with a combination of drivers—economic development and commitment to promoting UGS, using the two-axis scenario analysis method. The simulated UGS in each future scenario (by allowing 10% variation in the land use) is utilized for quantification of heat mitigation and energy conserved. In comparison with the present situation, 21–29% less space cooling energy is conserved in scenarios driven by economic development (least commitment to UGS), whereas 17% more energy is conserved when UGS are promoted. In similar lines, the average temperature is increased by 0.5–0.7 °C when UGS are neglected, while the temperature dropped by 0.5 °C when UGS are promoted in Nagpur City. The methodology presents an integration of scenario analysis with heat mitigation modeling which can enable urban planners and researchers to improve their understanding of the ecological structure of urban centers and can aid in appreciating the potential of UGS in heat mitigation for human wellbeing. © 2021, Saudi Society for Geosciences.
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