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Urban heat island impacted by fine particles in Nanjing, China
Hao Wu
, Tijian Wang
,
Nicole Riemer
, Pulong Chen
, Mengmeng Li
, Shu Li
Climate, Meteorology and Atmospheric Sciences
Civil and Environmental Engineering
National Center for Supercomputing Applications (NCSA)
Research output
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peer-review
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Keyphrases
China
100%
Fine Particles
100%
Nanjing
100%
Urban Heat Island
100%
Urban Heat Island Intensity
100%
Particulate Matter 2.5 (PM2.5)
60%
Urban Areas
40%
PM2.5 Concentration
40%
Numerical Simulation Results
20%
Observational Data
20%
Numerical Modeling
20%
Daily Range
20%
Aerodynamic Diameter
20%
Data-driven Modeling
20%
Radiative Effect
20%
Atmospheric Aerosol
20%
Suburban Area
20%
Air Pollution
20%
Surface Energy Balance
20%
Surface Air Temperature
20%
Atmospheric Heating
20%
Heavily Polluted
20%
Urban Climate
20%
Heat Island Reduction
20%
Engineering
Particular Matter 2.5
100%
Urban Heat Island Effect
100%
Heat Island Intensity
100%
Simulation Result
20%
Heating Rate
20%
Atmospheric Aerosol
20%
Numerical Modeling
20%
Aerodynamic Diameter
20%
Heat Island Reduction
20%
Air Pollution
20%
Interfacial Energy
20%
Earth and Planetary Sciences
China
100%
Urban Heat Island Effect
100%
Particular Matter 2.5
71%
Air Pollution
14%
Energy Balance
14%
Numerical Modeling
14%
Air Temperature
14%
Suburban Areas
14%
Atmospheric Heating
14%
Urban Climate
14%
Urban Region
14%
Heat Island Reduction
14%
Aerodynamics
14%
Suspended Particulate Matter
14%
Interfacial Energy
14%