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Large humidity effects on urban heat exposure and cooling challenges under climate change
Joyce Yang,
Lei Zhao
, Keith Oleson
Civil and Environmental Engineering
National Center for Supercomputing Applications (NCSA)
Institute for Sustainability, Energy, and Environment
Research output
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peer-review
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Keyphrases
Climate Change
100%
Humidity Effect
100%
Humid Heat
100%
Urban Heat Exposure
100%
Heat Stress
66%
Heat Adaptation
33%
Adaptation
16%
Humidity
16%
Air Temperature
16%
Increased Temperature
16%
Urban Areas
16%
Contrast Effect
16%
Accurate Assessment
16%
High Emission
16%
Urbanization Impact
16%
Urbanization
16%
Combined Impact
16%
Heat Exposure
16%
Use Simulation
16%
Water Restriction
16%
Climate-driven
16%
Effects on Humans
16%
Earth System Model
16%
Stress Exposure
16%
Change Driven
16%
Urban Population
16%
Cooling Strategies
16%
Specific Humidity
16%
Green Infrastructure
16%
Rural Landscape
16%
Long-term Cooling
16%
Urban Climate
16%
Projected Trends
16%
Stress Adaptation
16%
Urban Greenery
16%
Equatorial Area
16%
Earth and Planetary Sciences
Climate Change
100%
Emissions
25%
Relative Humidity
25%
Air Temperature
25%
Urban Population
25%
Green Infrastructure
25%
Urban Climate
25%
Rural Landscape
25%