The increase in built surfaces constitutes the main reason for the formation of the Urban Heat Island (UHI), that is a metropolitan area significantly warmer than its surrounding rural areas. The urban heat islands and other urban-induced climate feedbacks may amplify heat stress and urban flooding under climate change and therefore to predict them correctly has become essential. Currently in the COSMO model, cities are represented by natural land surfaces with an increased surface roughness length and a reduced vegetation cover, but this approach is unable to correctly reproduce the UHI effect. By increasing the model resolution, a representation of the main physical processes that characterize the urban local meteorology should be address...
The urban heat island (UHI) is a critical issue in most urbanised areas. Spatial variation of urban ...
An urban canopy layer model based on four energy balance equations at ground level and at building l...
Urban morphology and increasing building density play a key role in the overall use of energy and pr...
The increase in built surfaces constitutes the main reason for the formation of the Urban Heat Islan...
The recent implementation of TERRA URB (TU) in COSMO represented an important step towards an impro...
In order to account for urban climate at the regional scales, a new efficient urban land-surface par...
For the last 200 years, the global population has increased sevenfold resulting in a strong urban ex...
Urban canopy parameters (UCPs) are essential in order to accurately model the complex interplay betw...
This paper presents the Semi-empirical URban canopY parametrization (SURY) v1.0, which bridges the g...
There exists a large discrepancy between rural and urban land cover types in terms of water-, aerody...
Outdoor thermal comfort is essential to our health and that of the environment. For the last 200 ye...
Street trees are more and more regarded as an effective measure to reduce excessive heat in urban ar...
Evaporation from the urban impervious surface could have a considerable impact on the surface energ...
This paper presents the Semi-empirical URban canopY parametrization (SURY) v1.0, which bridges the g...
There exists a large discrepancy between the rural and urban land cover in terms of soil water, aero...
The urban heat island (UHI) is a critical issue in most urbanised areas. Spatial variation of urban ...
An urban canopy layer model based on four energy balance equations at ground level and at building l...
Urban morphology and increasing building density play a key role in the overall use of energy and pr...
The increase in built surfaces constitutes the main reason for the formation of the Urban Heat Islan...
The recent implementation of TERRA URB (TU) in COSMO represented an important step towards an impro...
In order to account for urban climate at the regional scales, a new efficient urban land-surface par...
For the last 200 years, the global population has increased sevenfold resulting in a strong urban ex...
Urban canopy parameters (UCPs) are essential in order to accurately model the complex interplay betw...
This paper presents the Semi-empirical URban canopY parametrization (SURY) v1.0, which bridges the g...
There exists a large discrepancy between rural and urban land cover types in terms of water-, aerody...
Outdoor thermal comfort is essential to our health and that of the environment. For the last 200 ye...
Street trees are more and more regarded as an effective measure to reduce excessive heat in urban ar...
Evaporation from the urban impervious surface could have a considerable impact on the surface energ...
This paper presents the Semi-empirical URban canopY parametrization (SURY) v1.0, which bridges the g...
There exists a large discrepancy between the rural and urban land cover in terms of soil water, aero...
The urban heat island (UHI) is a critical issue in most urbanised areas. Spatial variation of urban ...
An urban canopy layer model based on four energy balance equations at ground level and at building l...
Urban morphology and increasing building density play a key role in the overall use of energy and pr...