Gabonsa Pavilion: A Circular Design for Temporary Spaces













Innovation in Temporary Architecture: Rethinking Festival Spaces
Students Lead the Way in Sustainable Pavilion Design and Construction
The Gabonsa Pavilion, a collaborative effort by students from Kaiserslautern University of Applied Sciences and the collectives Gans Anders and Bonanza, stands as a testament to innovative and sustainable architectural practices. This temporary installation, erected for the Gabonsa Music Festival at Innsbruck's Rossau Recreation Center in Austria, was envisioned as a living laboratory for circular construction. The design thoughtfully combines basic timber elements with connections that allow for complete disassembly, alongside standard construction materials. The core objective was to investigate methodologies for creating versatile public spaces using minimal resources, showcasing a forward-thinking approach to temporary infrastructure.
Reactivating Public Space: The Pavilion's Multifaceted Role
This project is an integral part of a larger strategy aimed at revitalizing a former municipal landfill site through vibrant cultural events. Strategically positioned between the main stage and the workshop area of the festival, the pavilion transcends a single function. It operates simultaneously as a tiered seating area, an elevated viewing platform, a communal gathering point, and a prominent visual landmark. Its terraced form, developed through close cooperation with festival organizers and responsive to the site's natural topography atop a small hill, offers expansive views of the surrounding landscape while providing diverse nooks for relaxation, interaction, and observation.
Principles of Simplicity and Reversibility in Construction
The construction methodology of the Gabonsa Pavilion is deeply rooted in principles of simplicity, the ability to reverse processes, and the efficient use of materials. The entire structure is composed exclusively of four-meter timber beams, joined together using screw connections. This deliberate choice avoids the use of adhesives and other permanent bonding agents, ensuring that the pavilion can be fully dismantled once the festival concludes. Furthermore, timber components were only cut when absolutely necessary for structural integrity, allowing the majority of elements to be repurposed in their original dimensions for future projects, thereby closing the loop on material usage.
Transforming Standard Materials into Architectural Elements for Flexible Use
Beyond its timber framework, the project ingeniously re-imagines conventional construction materials as integral architectural features. A striking semi-circular volume, enveloped in reflective construction foil, mirrors the sky and mountain landscape, creating an illusion of spatial expansion while establishing the pavilion as a distinctive landmark within the festival grounds. An aluminum vapor barrier forms a lightweight overhead structure, offering shade and shelter. Beneath this, an orange construction safety net is ingeniously repurposed into a comfortable hammock, transforming a utilitarian material into a space for respite. Red-painted bracing elements visibly articulate the structural system, making the construction logic transparent. Ground screws and red tension straps securely anchor the pavilion, minimizing site impact and further facilitating its complete and easy disassembly.
An Adaptable Framework for Diverse Festival Activities
The pavilion, meticulously crafted by students from Kaiserslautern University of Applied Sciences, is designed to cater to a variety of uses throughout the festival. Its orientation towards the main stage allows it to function as a grandstand, providing tiered seating for performances. Conversely, the side facing the workshop area offers a more secluded environment, suitable for quieter activities. Rather than enclosing a space, the design establishes an open, adaptable spatial framework that skillfully navigates the interplay between the natural landscape, festival attendees, and ongoing activities, all through its flexible structure, economical use of materials, and completely reversible construction system.