A street-level temperature and humidity dataset with high resolution spatial and temporal components has been created for the island of Manhattan, suitable for use by the urban health and modelling communities. It consists of a set of pedestrian measurements over the course of two summers converted into anomaly maps, and a set of ten light-post mounted installations measuring temperature, relative humidity, and illumination at three minute intervals over three months. The quality control and data reduction used to produce the anomaly maps is described, and the relationships between spatial and temporal variability are investigated. The data sets are available for download via the project website
Today, more than half of the world’s population lives in urban areas and the proportion is projected...
This study was conceptualized to investigate differences in surface temperature profile of Local Cli...
Numerous research studies have been conducted on the modification of weather and local climate by th...
A street-level temperature and humidity dataset, with high resolution spatial and temporal component...
Densely populated cities are experiencing Urban Heat Island (UHI) effects and localized hotspots. Ci...
The urban heat island (UHI) effect is created by a series of man-made surface modifications in urban...
Along with urbanization, sealing of vegetated land and evaporation surfaces by impermeable materials...
Rapid urbanization has resulted in temperature differences between the urban area and its surroundin...
Urban areas have very complex spatial structures. These spatial structures are primarily composed of...
More than half of the world\u27s current population resides in urban areas, and cities account for r...
Extreme heat is a leading cause of weather-related human mortality. The urban heat island (UHI) can ...
This study models the spatiotemporal change of Birmingham’s urban heat island (UHI) using air temper...
This study aims to characterize the seasonality of New York City thermal environment using Landsat s...
With 69% of the world’s population predicted to live in cities by 2050, modification to local climat...
Cities are frequently experiencing artificial heat stress, known as the Urban Heat Island (UHI) effe...
Today, more than half of the world’s population lives in urban areas and the proportion is projected...
This study was conceptualized to investigate differences in surface temperature profile of Local Cli...
Numerous research studies have been conducted on the modification of weather and local climate by th...
A street-level temperature and humidity dataset, with high resolution spatial and temporal component...
Densely populated cities are experiencing Urban Heat Island (UHI) effects and localized hotspots. Ci...
The urban heat island (UHI) effect is created by a series of man-made surface modifications in urban...
Along with urbanization, sealing of vegetated land and evaporation surfaces by impermeable materials...
Rapid urbanization has resulted in temperature differences between the urban area and its surroundin...
Urban areas have very complex spatial structures. These spatial structures are primarily composed of...
More than half of the world\u27s current population resides in urban areas, and cities account for r...
Extreme heat is a leading cause of weather-related human mortality. The urban heat island (UHI) can ...
This study models the spatiotemporal change of Birmingham’s urban heat island (UHI) using air temper...
This study aims to characterize the seasonality of New York City thermal environment using Landsat s...
With 69% of the world’s population predicted to live in cities by 2050, modification to local climat...
Cities are frequently experiencing artificial heat stress, known as the Urban Heat Island (UHI) effe...
Today, more than half of the world’s population lives in urban areas and the proportion is projected...
This study was conceptualized to investigate differences in surface temperature profile of Local Cli...
Numerous research studies have been conducted on the modification of weather and local climate by th...