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Architects: Francisco Mangado
- Area: 11142 m²
- Year: 2014
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Manufacturers: panoramah!®, Dynamobel, Saint-Gobain, Parquets ROMAN, Plaka, +2
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Professionals: SEDES S.A.



The world of architecture and construction has observed, with increasing attention, technological innovations involving wood. Although it is a material that has been widely used for thousands of years, recent research involving industrial manufacturing and machining technologies has provided even greater quality control and an increased diversity of uses, causing it to be described by many as the material of the future. To this end, common myths including wood's lack of resistance to fire and the implausibility of using it to structure tall buildings have been debunked.




In California, the Governor’s Forest Management Task Force and the Office of Planning and Research announced the winners of their first-ever competition designed to highlight a category of engineered wood products known as mass timber. As the need for forest, wildfire, climate, and housing solutions grows, California is moving to expand the use of these innovative wood products, which have the potential to sequester carbon, drive healthy forest management, and increase affordable housing in California.

This article was originally published on The Architect's Newspaper as "Architects apply the latest in fabrication, design, and visualization to age-old timber."
Every so often, the field of architecture is presented with what is hailed as the next “miracle building material.” Concrete enabled the expansion of the Roman Empire, steel densified cities to previously unthinkable heights, and plastic reconstituted the architectural interior and the building economy along with it.
But it would be reasonable to question why and how, in the 21st century, timber was accorded a miracle status on the tail-end of a timeline several millennia-long. Though its rough-hewn surface and the puzzle-like assembly it engenders might seem antithetical to the current global demand for exponential building development, it is timber’s durability, renewability, and capacity for sequestering carbon—rather than release it—that inspires the building industry to heavily invest in its future.



Grafton Architects was selected as the winning firm to design the Anthony Timberlands Center for Design and Materials Innovation at the University of Arkansas. In collaboration with Modus Studio for the planned campus design research center, the design on the project is scheduled to begin this summer.

Vincent Callebaut Architectures has imagined The Rainbow Tree, a modular mass timber condominium tower in Cebu City, Philippines. Revealing the cultural and natural Filipino heritage, the project, named after an iconic and colorful tree from the Philippines the Rainbow Eucalyptus, was entirely conceived in a way to reduce the carbon footprint of the building.

It may sound like a silly rhyme, but it’s true: wood is good. As a construction material, wood is beautiful, practical, and versatile. The great strength, light weight, and excellent insulating properties of wood make it ideal for many applications, especially at a time when timber is delivering efficient solutions at different scales. Despite these benefits, wood is highly susceptible to decay, especially when used outdoors.

In this short video, Jens Thomas Arnfred and Søren Nielsen from the Danish office Vandkunsten Architects talk about wood and the many reasons why it makes for such excellent building material. The two architects discuss the sustainability advantages of using timber and reflect on its influence on our senses and mind, on our feeling of wellbeing.


Is wood the future of construction?
The history etched into Spain's wooden houses has many lessons to teach us about the role of wood in creating everything from light-weight and mobile modular homes to interior and exterior finishes. What's more, these lessons are not limited to new constructions. They apply to everything from furniture to remodels.