The relocation of Guayaquil’s international airport has created a unique opportunity for urban regeneration through the development of New Guayaquil, a large-scale masterplan intended to transform the former airport site into a new mixed-use district. Within this context, this thesis explores the design of a climate-responsive mixed-use building that responds to the urban, environmental, and technical conditions of the site. Guayaquil’s hot-humid tropical climate presents significant challenges for contemporary architecture due to high temperatures, persistent humidity, intense solar radiation, and a strong dependence on mechanical cooling systems. The research investigates how passive design strategies can improve thermal comfort and reduce cooling demand while supporting the broader objectives of the masterplan. The methodology combines urban and site analysis, climate assessment, case study research, architectural design development, environmental simulations, and preliminary structural design. Through an iterative design process, the proposal is evaluated in terms of environmental performance, urban integration, and technical feasibility. The final project reinterprets selected principles of Guayaquil’s vernacular architecture within a contemporary mixed-use building designed for the future development of New Guayaquil. The research demonstrates how integrated design approaches can contribute to more climate-responsive, connected, and resilient urban environments while reducing dependence on mechanical cooling systems.
La delocalizzazione dell’aeroporto internazionale di Guayaquil ha creato un’opportunità unica di rigenerazione urbana attraverso lo sviluppo di New Guayaquil, un masterplan su larga scala finalizzato alla trasformazione dell’ex area aeroportuale in un nuovo distretto a uso misto. In questo contesto, la presente tesi esplora la progettazione di un edificio mixed-use climate-responsive in grado di rispondere alle condizioni urbane, ambientali e tecniche del sito. Il clima tropicale caldo-umido di Guayaquil presenta sfide significative per l’architettura contemporanea a causa delle elevate temperature, dell’umidità persistente, dell’intensa radiazione solare e della forte dipendenza dai sistemi di raffrescamento meccanico. La ricerca indaga come le strategie passive possano migliorare il comfort termico e ridurre il fabbisogno di raffrescamento, contribuendo al contempo agli obiettivi più ampi del masterplan. La metodologia combina analisi urbana e del sito, studio delle condizioni climatiche, analisi di casi studio, sviluppo del progetto architettonico, simulazioni ambientali e una progettazione strutturale preliminare. Attraverso un processo progettuale iterativo, la proposta viene valutata in termini di prestazioni ambientali, integrazione urbana e fattibilità tecnica. Il progetto finale reinterpreta alcuni principi dell’architettura vernacolare di Guayaquil all’interno di un edificio contemporaneo a uso misto pensato per il futuro sviluppo di New Guayaquil. La ricerca dimostra come un approccio progettuale integrato possa contribuire alla realizzazione di ambienti urbani più resilienti, connessi e sensibili alle condizioni climatiche, riducendo al contempo la dipendenza dai sistemi di raffrescamento meccanico.
A climate-responsive building for the new guayaquil: integrated enviromental design
Ortega Mendoza, Ivana Denisse
2025/2026
Abstract
The relocation of Guayaquil’s international airport has created a unique opportunity for urban regeneration through the development of New Guayaquil, a large-scale masterplan intended to transform the former airport site into a new mixed-use district. Within this context, this thesis explores the design of a climate-responsive mixed-use building that responds to the urban, environmental, and technical conditions of the site. Guayaquil’s hot-humid tropical climate presents significant challenges for contemporary architecture due to high temperatures, persistent humidity, intense solar radiation, and a strong dependence on mechanical cooling systems. The research investigates how passive design strategies can improve thermal comfort and reduce cooling demand while supporting the broader objectives of the masterplan. The methodology combines urban and site analysis, climate assessment, case study research, architectural design development, environmental simulations, and preliminary structural design. Through an iterative design process, the proposal is evaluated in terms of environmental performance, urban integration, and technical feasibility. The final project reinterprets selected principles of Guayaquil’s vernacular architecture within a contemporary mixed-use building designed for the future development of New Guayaquil. The research demonstrates how integrated design approaches can contribute to more climate-responsive, connected, and resilient urban environments while reducing dependence on mechanical cooling systems.| File | Dimensione | Formato | |
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https://hdl.handle.net/10589/260435