The ability of cool roofs and vegetation to reduce urban temperatures and improve human thermal stress during heat wave conditions is investigated for the city of Melbourne, Australia. The Weather Research and Forecasting Model coupled to the Princeton Urban Canopy Model is employed to simulate 11 scenarios of cool roof uptake across the city, increased vegetation cover across the city, and a combination of these strategies. Cool roofs reduce urban temperatures during the day, and, if they are installed across enough rooftops, their cooling effect extends to the night. In contrast, increasing vegetation coverage reduces nighttime temperatures but results in minimal cooling during the hottest part of the day. The combination of cool roofs an...
The city of Melbourne in southeast Australia is planning to expand urban areas substantially by the ...
Abstract Cool materials and rooftop vegetation help achieve urban heating mitigation as they can red...
abstract: The City of Phoenix (Arizona, USA) developed a Tree and Shade Master Plan and a Cool Roofs...
The ability of cool roofs and vegetation to reduce urban temperatures and improve human thermal stre...
The summer cooling potential of urban vegetation is investigated using an urban climate model for th...
Heat island effects raise the ambient air temperature in metropolitan areas by 4–5 degrees Celsius a...
The city of Melbourne in southeast Australia experiences frequent heatwaves and their frequency, int...
This thesis looks at how much the city of Melbourne can be cooled during heatwaves. This is because ...
In October 2013, ''Plan Melbourne" was released by the Victorian government to outlin...
Guiding urban planners on the cooling returns of different configurations of urban vegetation config...
abstract: Warming associated with urban development will be exacerbated in future years by temperatu...
The urban heat island (UHI) has a negative impact on the health of urban residents by increasing ave...
Melbourne, the second most populous city in Australia, is growing rapidly. To accommodate this growt...
Warming associated with urban development will be exacerbated in future years by temperature increas...
The urban heat island (UHI) effect is one of the main weather phenomena to affect urban areas. The m...
The city of Melbourne in southeast Australia is planning to expand urban areas substantially by the ...
Abstract Cool materials and rooftop vegetation help achieve urban heating mitigation as they can red...
abstract: The City of Phoenix (Arizona, USA) developed a Tree and Shade Master Plan and a Cool Roofs...
The ability of cool roofs and vegetation to reduce urban temperatures and improve human thermal stre...
The summer cooling potential of urban vegetation is investigated using an urban climate model for th...
Heat island effects raise the ambient air temperature in metropolitan areas by 4–5 degrees Celsius a...
The city of Melbourne in southeast Australia experiences frequent heatwaves and their frequency, int...
This thesis looks at how much the city of Melbourne can be cooled during heatwaves. This is because ...
In October 2013, ''Plan Melbourne" was released by the Victorian government to outlin...
Guiding urban planners on the cooling returns of different configurations of urban vegetation config...
abstract: Warming associated with urban development will be exacerbated in future years by temperatu...
The urban heat island (UHI) has a negative impact on the health of urban residents by increasing ave...
Melbourne, the second most populous city in Australia, is growing rapidly. To accommodate this growt...
Warming associated with urban development will be exacerbated in future years by temperature increas...
The urban heat island (UHI) effect is one of the main weather phenomena to affect urban areas. The m...
The city of Melbourne in southeast Australia is planning to expand urban areas substantially by the ...
Abstract Cool materials and rooftop vegetation help achieve urban heating mitigation as they can red...
abstract: The City of Phoenix (Arizona, USA) developed a Tree and Shade Master Plan and a Cool Roofs...