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From waste-wood to load-bearing feature, a simple calculation could change the way we use misfit wood

Urging industry to make better use of wood that is wasted or burned for energy, researchers have released the first structural tests of non-straight, forked, and double-curved roundwood logs used as columns.
Dark wooden room with a pale log pillar and narrow window framing a misty pine tree outside
Architect Jaakko 罢辞谤惫颈苍别苍鈥檚 Puusauna utilises waste wood that would otherwise be discarded. Photo: P盲ivi Tuovinen

In his mission to normalise the use of 鈥榤isfit wood鈥, Aalto University architect and researcher Jaakko Torvinen has shown how standard, business-as-usual calculation methods can predict load-bearing capacity for organically shaped logs. It鈥檚 actually a pretty simple equation that can be used to gauge its load-bearing capacity, says Torvinen. What鈥檚 surprising is that nobody has done this earlier.

According to Torvinen, the timber and construction industries have for centuries been tied to the assumption that the best material is used for saw logs. 鈥榃e鈥檙e so used to thinking in terms of standardised planks or beams,鈥 he says. 鈥楾his explains why nobody has ever looked at a tree trunk and come up with an algorithm to gauge its strength.鈥

The result is a level of material wastage that Torvinen finds shocking. 鈥業f it鈥檚 not suitable as saw logs, it goes to pulpwood or energy wood,鈥 he explains. 鈥楤ut our assumption that 鈥榞eneric is best鈥 is old-school thinking 鈥撯 and we鈥檙e wasting way too much good wood.鈥

罢辞谤惫颈苍别苍鈥檚 is one step towards helping cut the millions of tonnes of imperfect wood that go to the scrap heap, instead of into use as functional, economically viable and aesthetically desirable options in construction. In presenting the first-ever load tests on organically shaped roundwood columns (curved, double-curved or forked, raw wood) from trees that would usually be deemed unfit for dressing, the study initially shows that current, typical methods can be used also for calculating their load-bearing capacity.

Combined with digital design and fabrication methods, such studies open up opportunities to utilise overlooked materials in new ways, says Torvinen. The end goal is to reduce the obstacles to mass-customisation being a realistic and financially viable option for the industry.

鈥楿sing standard timber only is something that cash-strapped consumers are ready to abandon. So I want to clear the path to industry embracing the possibilities of misfit wood too,鈥 he says.

罢辞谤惫颈苍别苍鈥檚 high profile list of recent projects is testament to the visual appeal of using knotty, forked, or charred misfit pillars and whole-tree elements. The architect was responsible for the hauntingly beautiful outlines of Helsinki鈥檚 temporary Pikku Finlandia building and his architecturally atmospheric testament to slow-living, , earned a prestigious 2026 .

He hopes that his latest paper complements these stunning examples of misfit wood鈥檚 aesthetic potential by providing the first practical calculations to take us one step closer to recognising its viability in construction.

鈥業n future projects, when a designer or client wants misfit wood in a building, it won鈥檛 be laughed at as an icebreaker, but considered as a legitimate design proposal like any other,鈥 says Torvinen.

Jaakko 罢辞谤惫颈苍别苍鈥檚 Puusauna is part of Aalto University鈥檚 Designs for a Cooler Planet 2026 exhibition in Helsinki from 1 Sept 鈥 30 Oct 2026.

Contact: Jaakko Torvinen, Doctoral Researcher, jaakko.torvinen@aalto.fi

Read the full study: Torvinen Jaakko, T枚pler Janusch, Fink Gerhard & Kuittinen Matti, (2026). 鈥楽tructural Potential of Curved and Bifurcated Misfit Wood Logs鈥. Wood Material Science and Engineering

Lab setup with a long metal rod in compression, bent upward, on a grid with labelled deformation arrows and axes
The basic shape and curvature deviation (bow-imperfection) of the wood were measured with manual tools and image processing. Compressive load and wood deformation during compression were measured using draw wire sensors.
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