Integrated effects of land cover, topography, urban morphology, and PM2.5 on land surface temperature. [PDF]
Ma S +6 more
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Urban Warming of the Two Most Populated Cities in the Canadian Province of Alberta, and Its Influencing Factors. [PDF]
Ejiagha IR +5 more
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Hybrid Bayesian deep learning model for predicting urban heat island intensity in African cities. [PDF]
Lynda D +3 more
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Climatology of Tehran surface heat Island: a satellite-based spatial analysis. [PDF]
Zargari M +3 more
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Exploring the land-use urban heat island nexus under climate change conditions using machine learning approach: A spatio-temporal analysis of remotely sensed data. [PDF]
Rao P, Tassinari P, Torreggiani D.
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Urban heat above and below ground: towards improved understanding, modelling, mitigation and adaptation. [PDF]
Rotta Loria AF, Carmeliet J, Zhao Y.
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Comparison of mediating effects of air pollutants on urban morphology and urban heat Island intensity at block scale. [PDF]
Fan J, Chen X, Zhang W, Zhao M, Yang X.
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Vegetation-Specific Cooling Responses to Compact Urban Development: Evidence from a Landscape-Based Analysis in Nanjing, China. [PDF]
Sun Q, Li D, Tang X, Ren Y.
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Planning cooler cities through integration of UAV thermal imagery and GIS in local climate zone studies. [PDF]
Sütçüoğlu GG, Kalaycı A.
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Surface Urban Heat Islands Changes Analysis Considering the Effects of Covid-19 Locked down
Nojavan M, Mahmoudi FT.
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