This work explores the double effect of urban compactness on building energy performance in a Mediterranean climate, namely the increase of urban heat island (UHI) intensity and the decrease of solar radiation availability on building fa ades. The energy demand of a test apartment has been calculated under varying conditions of UHI intensity and solar radiation for different urban textures. Results show robust relationships between the energy demand and the 'site coverage ratio' of the buildings. This demonstrates that compact urban textures are more energy efficient than less dense urban patterns in a Mediterranean climat
Urban heat island effect is almost always neglected in building energy simulations, due to difficult...
The link between urban form and building energy demand is a complex balance of morphological, constr...
Contrarily to what happens in northern European countries, buildings in the Mediterranean region are...
This work explores the double effect of urban compactness on building energy performance in a Medite...
Cities in the Mediterranean basin are characterised by compact and dense urban fabric, leading to a ...
The combined effects of urban heat island (UHI), urban population growth and energy overexploitation...
The combined effects of urban heat island (UHI), urban population growth and energy overexploitation...
The relationship between morphology, climate and energy has always influenced deeply the development...
Nowadays energy and energetic fluxes can be considered as main drivers of building regeneration with...
The Urban Heat Island (UHI) effect is particularly concerning in Mediterranean zone, as climate chan...
The link between urban form and building energy demand is a complex balance of morphological, constr...
The link between urban form and building energy demand is a complex balance of morphological, const...
The link between urban form and building energy demand is a complex balance of morphological, constr...
Urban heat island effect is almost always neglected in building energy simulations, due to difficult...
The causal relation among building typology and building energy demand is a complex balance of clima...
Urban heat island effect is almost always neglected in building energy simulations, due to difficult...
The link between urban form and building energy demand is a complex balance of morphological, constr...
Contrarily to what happens in northern European countries, buildings in the Mediterranean region are...
This work explores the double effect of urban compactness on building energy performance in a Medite...
Cities in the Mediterranean basin are characterised by compact and dense urban fabric, leading to a ...
The combined effects of urban heat island (UHI), urban population growth and energy overexploitation...
The combined effects of urban heat island (UHI), urban population growth and energy overexploitation...
The relationship between morphology, climate and energy has always influenced deeply the development...
Nowadays energy and energetic fluxes can be considered as main drivers of building regeneration with...
The Urban Heat Island (UHI) effect is particularly concerning in Mediterranean zone, as climate chan...
The link between urban form and building energy demand is a complex balance of morphological, constr...
The link between urban form and building energy demand is a complex balance of morphological, const...
The link between urban form and building energy demand is a complex balance of morphological, constr...
Urban heat island effect is almost always neglected in building energy simulations, due to difficult...
The causal relation among building typology and building energy demand is a complex balance of clima...
Urban heat island effect is almost always neglected in building energy simulations, due to difficult...
The link between urban form and building energy demand is a complex balance of morphological, constr...
Contrarily to what happens in northern European countries, buildings in the Mediterranean region are...