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Geodesic Home Crafted From Eucalyptus Wood With Solar Panels Emphasizing Sustainable Living

Authors:
Romina Larrosa, Giuliana Pozzi
Geodesic Home Crafted From Eucalyptus Wood With Solar Panels Emphasizing Sustainable Living

Project in-detail

Crafted with a geodesic structure of Eucalyptus wood and equipped with solar panels, this microhome seamlessly integrates sustainable living with thoughtful design, offering a unique habitat that encourages a deep connection to nature.
5 key facts about this project
01
The structure utilizes a geodesic dome shape, enhancing structural stability while reducing material waste.
02
Eucalyptus wood is sourced locally, providing an environmentally sustainable building material.
03
Solar panels integrated into the design promote renewable energy use, supporting off-grid living.
04
The net loft space offers a unique perspective on the surrounding environment while maximizing vertical living area.
05
Triangular window sections enhance natural light and panoramic views, creating a seamless indoor-outdoor experience.
Sky Spy is an architectural project that embodies the principles of minimalism and adaptability, designed to meet the contemporary demands of living within a compact structure. This microhome stands as a response to the challenges associated with urbanization and the growing desire for sustainable lifestyles. It represents a commitment to creating living spaces that foster a connection with nature while maintaining practical functionality for residents.

The primary function of Sky Spy is to provide a flexible and functional living environment that encourages occupants to engage intimately with their surroundings, particularly the sky and natural landscape. The design emphasizes an open floor plan that maximizes the perceived space within the compact footprint. By employing a layout that integrates various living functions without the constraints of traditional compartmentalization, the architecture promotes a sense of freedom and mobility for its inhabitants.

A notable aspect of the design is its structural integrity, achieved through the use of prefabricated components that are both lightweight and easy to assemble. The materials chosen for this project include sustainable eucalyptus wood, mezzanine plywood, photovoltaic panels, insulation panels, and glass, every decision imbued with the goal of minimizing environmental impact while enhancing the aesthetic value. The use of eucalyptus wood not only provides a robust structural element but also aligns with a commitment to local sourcing and sustainability.

The architectural form of Sky Spy features a series of interconnected triangular panels that create a distinctive geodesic dome shape. This innovative geometry not only contributes to the stability of the structure but also offers an engaging visual experience. The triangular window sections are strategically placed to flood the interior with natural light while allowing residents to enjoy panoramic views of the outside world, reinforcing the connection between the indoor environment and the cosmos. The design encourages the occupant to perceive their home not just as a physical shelter but as a platform for exploration and engagement with the natural world.

A standout element of Sky Spy is its incorporation of vertical space, exemplified by a net-style loft which provides an alternative perspective on living areas. This loft is more than just an additional sleeping area; it also enhances the living experience by presenting a unique vantage point from which to appreciate the surroundings. The flexibility of the furnishings, which are designed to be modular and easily movable, further contributes to the adaptable nature of the home, enabling residents to customize their space as needed.

In crafting this architectural project, the designers have intentionally focused on environmental sustainability, integrating features that minimize ecological footprints. The elevated base of the structure allows for natural ventilation, improving the thermal comfort of the occupants, while the photovoltaic panels are a proactive measure for encouraging renewable energy use. This design sets an important precedent for future architectural endeavors that seek to harmonize modern living with ecological responsibility.

Sky Spy serves as a demonstration of how architectural ideas can embrace both innovation and practicality, allowing for contemporary living that remains deeply connected to its environment. Those interested in exploring architectural plans, sections, designs, and ideas that underpin this project are encouraged to delve deeper into the details of Sky Spy. Through further exploration, one can appreciate the careful thought that has shaped this unique living space and the contemporary design principles that it exemplifies.
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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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