Learning from the biology of evolution: exaptation as a design strategy for future cities

Author:

Melis Alessandro,Lara-Hernandez Jose AntonioORCID,Melis Barbora

Abstract

PurposeThis paper highlights the importance of transdisciplinary studies in times of crisis. In the first part, the study shows the benefits of the introduction of literature on biology to better understand the evolutionary dynamics of architecture.Design/methodology/approachThe focus of the research concerns architectural exaptation. In biology, exaptation is a functional shift of a structure that already had a prior but different function. We will also learn that, in biology, all creative systems are redundant and involve variability and diversity.FindingsAs a conclusion, through the comparison between biology and architecture, we will, therefore, try to build an architectural taxonomy that demonstrates how indeterminism is not a subcategory of design. Instead, design paradigms in which redundancy and variable diversity of structures reflect functionalism constitute an equivalent and essential complement with respect to design determinism.Originality/valueIt demonstrates how architectural exaptation, intended as an indeterministic and radical mode of design, can contribute to overcoming the current global crisis because structural redundancy is frequently functional, mostly in ever-changing and unstable environments. For instance, the failure of a planned function of a city can be an opportunity to re-use a structure designed for an obsolete function to respond to unexpected constraints.

Publisher

Emerald

Subject

Urban Studies,Building and Construction,Renewable Energy, Sustainability and the Environment,Civil and Structural Engineering,Architecture,Cultural Studies

Reference52 articles.

1. Modular exaptation: a missing link in the synthesis of artificial form;Research Policy,2014

2. The use of adaptive characters in avian classification,1967

3. The definition and recognition of biological adaptation;American Zoologist,1980

4. Adaptation and the form-function complex;Evolution,1965

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