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Bamboo Structure with PVC Cladding Supporting Flexible Community Engagement

Author:
Andrew Glicksberg
Bamboo Structure with PVC Cladding Supporting Flexible Community Engagement

Project in-detail

Constructed with a lightweight bamboo frame and wrapped in durable PVC cladding, the facility offers a flexible space designed to foster community engagement and collaboration.
5 key facts about this project
01
Constructed using a lightweight bamboo frame that reduces material usage and environmental impact.
02
The facility features PVC tensile fabric cladding for enhanced natural light and ventilation.
03
Elevated structure design minimizes land disturbance and improves drainage management.
04
Incorporates an adaptable floor plan to support a wide range of community activities.
05
Utilizes renewable energy systems, including solar panels, to promote sustainability.
The Sacred Community Center stands as an architectural project designed to enhance community engagement in a natural setting, utilizing local resources and sustainable practices. This facility serves as a central hub for various communal activities, fostering social interaction and collaboration within the community. The design is characterized by a unique structural approach and intersects with ecological sensitivity, establishing a space that resonates with its environment and users alike.

Structural and Material Innovations

A significant aspect of the Sacred Community Center is its innovative digrid structural system, which optimizes spatial efficiency by eliminating interior columns. This strategy creates an expansive, unobstructed gathering area that can adapt to a variety of uses, from workshops to communal dining. The dome shape serves both aesthetic and functional purposes, derived from principles of sacred geometry. The use of lightweight materials, specifically bamboo, supports the structural integrity while minimizing environmental impact. Bamboo, an invasive species in the region, has been chosen for its rapid growth and strength, contributing to the project's sustainability goals.

The cladding of the building employs PVC tensile fabric, which offers flexibility and durability while ensuring thermal comfort through natural ventilation. This material choice supports the design’s focus on low maintenance requirements and local material utilization, integral for a project rooted in community needs. The combination of these materials with careful research into their local availability demonstrates a commitment to ecological sustainability while providing functional benefits.

Interior Space and User Experience

The interior layout emphasizes modular flexibility, catering to diverse community activities. It includes designated zones for storage, restrooms, and kitchen facilities, all strategically placed to keep the main gathering area open and accessible. This configuration enhances user experience, allowing for seamless transitions between different activities within the center. Furthermore, natural light is maximized through the translucent cladding, promoting a bright and welcoming atmosphere as well as reducing energy consumption.

A notable design detail is the structure's elevation, which minimizes land disturbance and enables efficient water drainage. This consideration not only safeguards local ecosystems but also provides a sustainable approach to managing rainwater. Furthermore, systems for renewable energy integration, such as solar panels linked to a battery setup, ensure operational independence while adhering to sustainable practices.

The Sacred Community Center showcases a pragmatic combination of architectural ideas and innovative design methodologies focused on community engagement and environmental stewardship. For those interested in exploring the full potential of this architectural project, individual elements such as architectural plans, architectural sections, and architectural designs provide deeper insights into its functionality and aesthetic values. Exploring these components will present an opportunity to appreciate the careful thought and planning that underpin this community-focused design.
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MICROHOME
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100,000 € Prize Fund / Kingpsan Edition #10
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100,000€ Prize / 2025

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

Competition organisers

The 10th edition of the MICROHOME architecture competition invites architects and designers from around the world to explore the possibilities of compact, sustainable living. Hosted by Buildner in collaboration with Kingspan and Hapi Homes, this special edition challenges participants to design an off-grid, modular microhome for a young professional couple, with a maximum floor area of 25 m². Designs should prioritize innovation, efficiency, and real-world feasibility. 

A total prize fund of 100,000 € will be awarded, including three main prizes, the Kingspan Award, and the Hapi Homes Award, which will grant 15,000 € and lead to the construction of the selected design. The final registration deadline is September 25, 2025, and winners will be announced on Decebmer 9, 2025. For full competition details and submission guidelines, visit microhome.info.

Microhome

Design a new small-scale home concept in the 10th edition of MICROHOME — 100,000 € prize + construction

100,000 € PRIZE FUND / KINGPSAN EDITION #10 IDEAS COMPETITION
Prize 100,000 € + Potential realisation
Eligibility Open to all
Early bird registration deadline 22 May 2025
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