Increasing surface reflectivity in urban areas can decrease ambient temperature, resulting in reducing photochemical reaction rates, reducing cooling energy demands and thus improving air quality and human health. The weather research and forecasting model with chemistry (WRF-Chem) is coupled with the multi-layer of the urban canopy model (ML-UCM) to investigate the effects of surface modification on urban climate in a two-way nested approach over North America focusing on Sacramento, Houston, and Chicago during the 2011 heat wave period. This approach decreases the uncertainties associated with scale separation and grid resolution and equip us with an integrated simulation setup to capture the full impacts of meteorological and photochemic...
To identify and characterize localized urban heat- and cool-island signals embedded within the tempe...
The Urban Heat Island (UHI) is a well-known phenomenon concerning an increasing percentage of the wo...
The ability of a climate model to accurately simulate the urban cooling effect of raising street alb...
Solar reflective cool roofs and walls can be used to mitigate the urban heat island effect. While ma...
Solar reflective cool roofs and walls can be used to mitigate the urban heat island effect. While ma...
The authors combine urban and soil–vegetation surface parameterization schemes with one-dimensional ...
The study described in this report is part of a project sponsored by the Toronto Atmospheric Fund, ...
The study described in this report is part of a project sponsored by the Toronto Atmospheric Fund, p...
This report investigates the air pollution reduction benefits associated with mitigating urban heat ...
Modeling the climate of urban areas is of interest for studying urban heat islands (UHIs). Reliable ...
Solar reflective “cool pavements” have been proposed as a potential heat mitigation strategy for cit...
AbstractThis study presents numerical simulations analysing the effect of urban heat island (UHI) mi...
Climate change can exacerbate future regional air pollution events by making conditions more favorab...
To identify and characterize localized urban heat- and cool-island signals embedded within the tempe...
The installation of roofing materials with increased solar reflectance (i.e., "cool roofs") can miti...
To identify and characterize localized urban heat- and cool-island signals embedded within the tempe...
The Urban Heat Island (UHI) is a well-known phenomenon concerning an increasing percentage of the wo...
The ability of a climate model to accurately simulate the urban cooling effect of raising street alb...
Solar reflective cool roofs and walls can be used to mitigate the urban heat island effect. While ma...
Solar reflective cool roofs and walls can be used to mitigate the urban heat island effect. While ma...
The authors combine urban and soil–vegetation surface parameterization schemes with one-dimensional ...
The study described in this report is part of a project sponsored by the Toronto Atmospheric Fund, ...
The study described in this report is part of a project sponsored by the Toronto Atmospheric Fund, p...
This report investigates the air pollution reduction benefits associated with mitigating urban heat ...
Modeling the climate of urban areas is of interest for studying urban heat islands (UHIs). Reliable ...
Solar reflective “cool pavements” have been proposed as a potential heat mitigation strategy for cit...
AbstractThis study presents numerical simulations analysing the effect of urban heat island (UHI) mi...
Climate change can exacerbate future regional air pollution events by making conditions more favorab...
To identify and characterize localized urban heat- and cool-island signals embedded within the tempe...
The installation of roofing materials with increased solar reflectance (i.e., "cool roofs") can miti...
To identify and characterize localized urban heat- and cool-island signals embedded within the tempe...
The Urban Heat Island (UHI) is a well-known phenomenon concerning an increasing percentage of the wo...
The ability of a climate model to accurately simulate the urban cooling effect of raising street alb...