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Piezoelectric Facade Incorporating Fiberglass and Concrete for Community Engagement

Authors:
Bradley Edwards, Laurence Mcmahon, Matthew Wilson
Piezoelectric Facade Incorporating Fiberglass and Concrete for Community Engagement

Project in-detail

Incorporating piezoelectric materials and translucent fiberglass within a landscape-integrated structure, the facility enhances community interaction while providing versatile spaces for exhibitions and public engagement.
5 key facts about this project
01
Incorporates piezoelectric technology to generate energy from building movement.
02
Utilizes fiberglass materials for maximum light transmission and structural efficiency.
03
Features a bent A-frame design that enhances spatial dynamics and aesthetic appeal.
04
Integrates flexible exhibition spaces designed for adaptive community use.
05
Employs landscape-integrated strategies to minimize visual impact and enhance natural connections.
The FIELD project represents a contemporary architectural endeavor that harmonizes with its natural landscape. This facility is designed to provide multipurpose spaces that cater to various community needs while fostering a connection with the environment. Emphasizing transparency and lightness, the architecture encourages interaction between the interior and exterior, inviting visitors to engage with both the building and its surroundings.

The architectural design comprises an elongated form, pronounced by vertical elements that define its silhouette. The use of transparent materials for the façade allows for an abundance of natural light, contributing to energy efficiency and creating a bright, welcoming atmosphere. The strategic arrangement of spaces includes a multipurpose exhibition hall, an information center, office areas, and service facilities, supporting a range of functions tailored to community engagement and usability.

Unique Design Approaches in FIELD

The FIELD project distinguishes itself through its innovative approach to materiality. By utilizing advanced transparent and fiberglass composites, the design achieves a lightweight structure that blends seamlessly into the landscape. These materials not only enhance the visual appeal but also allow for significant light transmission, reducing reliance on artificial lighting.

A notable aspect of the project is the incorporation of piezoelectric materials, which convert mechanical stress into electrical energy. This design feature underscores a commitment to sustainability by utilizing the building's own movement and use to generate power, integrating functionality with eco-consciousness.

Spatial organization plays a vital role in FIELD’s design. The entrance level features a flexible exhibition space that accommodates various events and dynamic displays, while the upper level includes office spaces and a café that facilitates social interaction. The basement houses essential service areas and a multimedia exhibition space, creating a well-rounded facility that addresses both functional and community-oriented needs.

Exploring Architectural Details

For those interested in a deeper understanding of FIELD, examining the architectural plans and sections will provide insights into the meticulous detailing and planning that underpin the project. The interplay between light and space is a crucial design element, and the architectural section documents how these components work together to enhance the visitor experience. The thoughtful integration of materials and technology in this project exemplifies contemporary architectural ideas, making it a compelling case study for those in the field.

Readers are encouraged to explore the project presentation for a comprehensive look at the architectural designs and innovative concepts that define FIELD.
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MICROHOME
MICROHOME
100,000 € Prize Fund / Kingpsan Edition #10
Kinderspace
Kinderspace
Architecture for Children’s Development #3
Buildner's Unbuilt Award 2025
Buildner's Unbuilt Award 2025
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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