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  4. Optimizing urban greening and densification in the context of outdoor heat: Opportunities for AI-supported urban adaptation
 
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2026
Journal Article
Title

Optimizing urban greening and densification in the context of outdoor heat: Opportunities for AI-supported urban adaptation

Abstract
Confronted with increasing urban heat stress risks, local governments need to reconcile expanding green infrastructure for urban cooling with urban densification goals. However, the impacts of incremental urban development in established neighborhoods on urban heat stress risks remain poorly understood. We demonstrate how decision support tools using Artificial Intelligence (AI) can assist complex urban land use and climate adaptation planning. Our findings are based on an inter- and transdisciplinary research project that developed and combined novel AI-supported simulation and prediction methods, namely 3D semantic models, AI-based outdoor thermal comfort models, and optimization and scenario-based AI models. Tool development was combined with transdisciplinary research to assess the real-world application potentials of AI-supported approaches in the City of Freiburg, Germany. The article demonstrates how AI-supported methods can aide and expedite urban land use and adaptation planning to support complex decision-making that needs to balance different strategic goals and interests.
Author(s)
Fünfgeld, Hartmut
Christen, Andreas
Briegel, Ferdinand
Schrodi, Simon
Speidel, Alexandra
Felder, Christiane
Sustainability Center Freiburg
Hoffmann, Jasper
Irscheid, Lina
Merkle, Dominik  
Fraunhofer-Institut für Physikalische Messtechnik IPM  
Meyer, Johannes
Schindler, Dirk
Wehrle, Jonas
Zengerling, Cathrin
Journal
Landscape and Urban Planning  
Open Access
File(s)
Download (21.27 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1016/j.landurbplan.2025.105574
10.24406/publica-7087
Additional link
Full text
Language
English
Fraunhofer-Institut für Physikalische Messtechnik IPM  
Keyword(s)
  • Artificial intelligence

  • Urban development

  • Scenario-based planning

  • Urban heat

  • Climate change adaptation

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