A pavilion at Design Museum Holon built from robotic earth bricks, providing a dynamic microclimate around an olive tree.

Robotic Earth Bricks Create Dynamic Microclimate Pavilion at Design Museum Holon

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Written by Seth Sebastian

2026-10-08

Beneath the industrial ambiance of the Design Museum Holon, a remarkable architectural innovation, the robotic earth bricks pavilion, takes shape. Named BUSTAN, this full-scale earthen pavilion envelops a living olive tree with an intricate assembly of 178 robotically 3D printed earth bricks. Developed by the Material Topology Research Lab (MTRL) at the Technion – Israel Institute of Technology and Weizmann Tree Lab, this structure forms a unique microclimatic shell around the tree, attending to its ecological needs.

Earth bricks form a habitat structure around an olive tree, with unique textures.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 1

Blending Tradition with Cutting-edge Technology

The design of BUSTAN is deeply rooted in the agricultural wisdom of the Eastern Mediterranean and Middle East, where local materials have long been used to craft protective environments. This project translates these traditional practices into the digital age with computational design and robotic fabrication. The result is an extrudable earth paste, which a robotic arm layers meticulously to form bricks with specialized roles—providing shade, facilitating airflow, and supporting habitat formation.

To explore how tradition meets innovation, discover futuristic designs by a Thai visionary architect blending myth and technology.

Close-up view of 3D printed earth bricks encircling an olive tree in pavilion.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 2

The earth bricks, composed of local soil mixed with plant fibers and mineral binders, are digitally crafted to deliver various ecological functions. The skin of the structure orchestrates a play of shade and light, regulates heat, and supports a self-sustaining ecosystem. This 3d printed structure features openings in the walls that enhance natural ventilation while retaining moisture through a unique soil profile, nurturing the olive tree at its heart. Bespoke niches within the pavilion’s walls offer homes for a variety of species, fostering a rich habitat for insects, birds, and small mammals.

Pavilion's earth bricks partly cover the olive tree, allowing sunlight to filter through.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 8

Innovative Fabrication at the Technion Advanced Construction Center

Constructed at the Technion Advanced Construction Center, it showcases the potential of robotic fabrication in architectural ecological design. As part of MTRL’s ongoing exploration of material ecology, this 3d printed structure serves as a prototype examining how computational tools and sustainable local resources can redefine agricultural landscapes. The collaboration behind this innovative project includes contributions from Ofer Asaf as research leader and Dr. Lior Skoury leading computations, alongside principal investigators from Technion and the Weizmann Institute of Science.

Detailed view of earth brick textures surrounding a central olive tree.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 9

Every brick follows a unique toolpath, crafting varied textures and forms crucial for the pavilion’s ecological roles. The integration of fibers within the earth paste enhances structural integrity while minimizing weight, showcasing the marriage of material science and environmental architecture. This approach highlights the potential of earth architecture in modern design.

This shift in structural design resonates with minimalist treehouse workspaces that redefine architectural integration with nature.

Partial brick structure wrapping around tree, exhibiting detailed patterns.
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Project Insight and Collaborative Forces

The project is illustrated with rich images captured by photographer Edo Asoulin, and the construction is echoed in the dynamic footage by Tamir Faingold. The exhibition, part of ‘The Circle’ at Design Museum Holon, opens avenues for future architectural designs where structures like BUSTAN are seen not as static feats but as components of a thriving ecosystem.

Cross-section showcasing the arrangement of earth bricks near an olive tree.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 3

This effort is supported by an array of institutions, including the Technion’s Faculty of Architecture and Town Planning, the Technion Sustainability Frontier, and the Azrieli Foundation, alongside notable contributions from the European Innovation Council (EIC) and the Design Museum Holon. MTRL’s journey into sustainable, robotic-built habitats marks a transformative step in ecological architecture through projects like this innovative pavilion.

Stacked bricks create a protective barrier around an olive tree trunk.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 4
Earth bricks' intricate designs support a nature-integrated habitat concept.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 5
Segment of pavilion displays layered earth bricks and foliage interaction.
robotically 3d printed earth bricks wrap a multispecies habitat around an olive tree 6
3D printed bricks wrap the base of an olive tree within the pavilion.
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Concentric brick pattern focuses around an olive tree's trunk.
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Earth and fiber paste blended for creating robotic 3D printed bricks.
local earth and natural fibers are mixed into a paste designed for robotic 3D printing filament
Varied earth bricks sorted and stacked on pallets, awaiting assembly.
differentiated bricks stacked on pallets before assembly
A pavilion at Design Museum Holon built from robotic earth bricks, providing a dynamic microclimate around an olive tree.

Sources & Links

Source: designboom.com

Frequently asked questions

What is the purpose of the BUSTAN pavilion?

The BUSTAN pavilion forms a unique microclimatic shell around a living olive tree, attending to its ecological needs. It serves as a prototype to examine how computational tools and sustainable local resources can redefine agricultural landscapes.

How are the earth bricks for the pavilion made?

The earth bricks are composed of local soil mixed with plant fibers and mineral binders. They are robotically 3D printed and crafted to deliver various ecological functions, including providing shade, facilitating airflow, and supporting habitat formation.

What unique features does the BUSTAN pavilion have?

The pavilion features openings in the walls that enhance natural ventilation and retain moisture. It also has bespoke niches within its walls to offer homes for a variety of species, fostering a rich habitat for insects, birds, and small mammals.