How do living organisms capture, convert, store and process energy, water and sunlight? How does nature cool down, heat up, provide shade, and control light? Adaptability, the ability of a system to act in response to variations in environmental conditions often plays a key role in this context. Unlike living organisms, buildings are typically conceived as static, inanimate objects. Because a building’s surroundings and internal conditions are constantly changing, there is a lot to learn about how inspiration from nature can foster more adaptability of the façade for enhanced building performance. After highlighting the need for more adaptability in the built environment, this chapter reviews state-of-the-art examples of research concepts a...
p. 598-610The research will demonstrate new strategies and concepts for building envelopes based on ...
Today, buildings with excessive energy consumption for heating, cooling, and lighting of indoor spac...
The literature shows that translating the thermal adaptation mechanisms of biological organisms to b...
How do living organisms capture, convert, store and process energy, water and sunlight? How does nat...
The building envelope has an important role in regulating the energy exchanges between the internal ...
Building envelopes can manage light, heat gains or losses, and ventilation and, as such, play a key ...
The building envelope has an important role in regulating the energy exchanges between the internal ...
This study explores the application of biomimicry and adaptation lessons from biology in the design ...
Living envelopes, such as biological skins and structures built by animals, are functional and susta...
This paper provides an overview of the design of biomimetic building skins. Many types of smart and ...
© 2017 Elsevier Ltd This paper provides an overview of the design of biomimetic building skins. Many...
Copyright © NCEUB 2017.One of the key considerations in designing energy-efficient buildings is thei...
Nowadays, and under the global warming circumstances we are facing, particularly those resulting fro...
p. 2430-2438Various design drivers influence the architectural engineering design process, such as ...
How can architecture respond to sustainability issues where buildings will behave in built environme...
p. 598-610The research will demonstrate new strategies and concepts for building envelopes based on ...
Today, buildings with excessive energy consumption for heating, cooling, and lighting of indoor spac...
The literature shows that translating the thermal adaptation mechanisms of biological organisms to b...
How do living organisms capture, convert, store and process energy, water and sunlight? How does nat...
The building envelope has an important role in regulating the energy exchanges between the internal ...
Building envelopes can manage light, heat gains or losses, and ventilation and, as such, play a key ...
The building envelope has an important role in regulating the energy exchanges between the internal ...
This study explores the application of biomimicry and adaptation lessons from biology in the design ...
Living envelopes, such as biological skins and structures built by animals, are functional and susta...
This paper provides an overview of the design of biomimetic building skins. Many types of smart and ...
© 2017 Elsevier Ltd This paper provides an overview of the design of biomimetic building skins. Many...
Copyright © NCEUB 2017.One of the key considerations in designing energy-efficient buildings is thei...
Nowadays, and under the global warming circumstances we are facing, particularly those resulting fro...
p. 2430-2438Various design drivers influence the architectural engineering design process, such as ...
How can architecture respond to sustainability issues where buildings will behave in built environme...
p. 598-610The research will demonstrate new strategies and concepts for building envelopes based on ...
Today, buildings with excessive energy consumption for heating, cooling, and lighting of indoor spac...
The literature shows that translating the thermal adaptation mechanisms of biological organisms to b...