Learning From Europe And Canada’s Timber Building Industry

Learning From Europe And Canada’s Timber Building Industry

 

If the steady stream of newly announced mass wood projects is any indication, mass timber building technologies are poised to take the American construction and design industries by storm over the next few years. As products like cross-laminated timber (CLT), nail-laminated timber (NLT), glue-laminated timber (glulam), and dowel-laminated timber (DLT) begin to make their way into widespread use, designers, engineers, and builders alike are searching for the best—and sometimes, most extreme—applications for mass timber technologies. But rather than reinvent the wheel, American designers can look to experienced mass timber designers in Europe and Canada for key lessons as they begin to test the limits of these materials in the United States.

European and Canadian architects and researchers have long been at the forefront of mass timber design, starting with early experiments in the 1970s. By the 1990s, researchers like Julius K. Natterer at the Federal Institute of Technology in Lausanne, Switzerland, were developing initial CLT prototypes. Natterer’s work has been buttressed by that of many others, including research performed at the Norwegian Institute of Wood Technology under Thomas Orskaug and experiments conducted at the Technical University of Munich under Stefan Winter.

One key lesson European timber projects teach is that when it comes to structural systems, weight matters. On average, mass timber assemblies weigh between one-third and one-fifth as much as concrete structures, despite equivalent structural capacities. As a result, mass timber buildings are much lighter than concrete ones, a positive for building in tricky urban situations, for example—where underground rail yards, subway tunnels, and municipal utilities place limits on how heavy and tall buildings can be.

London-based Waugh Thistleton Architects (WTA), for example, recently completed work on Dalston Lane, a 121-unit CLT midrise complex located above a tunnel serving the Eurostar train line in the city’s Hackney neighborhood.

For the project, the architects worked with timber-engineering specialists Ramboll to develop a stepped tower cluster rising between five and ten stories tall. CLT panels are used for the external, party, and core walls of the building, as well as the stairs and the building’s floors. The variegated massing is due directly to the architect’s use of CLT construction, which resulted in a lighter building that allowed the designers to build taller without more extensive foundations. The resulting building, with its staggered massing, better maximizes daylight infiltration into apartment units. The added height allowed the architects to add 50 more units to the project than originally permitted, a testament to just how light CLT can be.

From The Architects Newspaper: archpaper.com

 

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California Company Combines Wood Technology And Modular Construction

Silicon Valley design-build firm Katerra is using a technology-driven and full-services approach to creating prefabricated structures at a large scale. Based in Menlo Park, California, Katerra was started in 2015 by Michael Marks, Jim Davidson and Fritz H Wolff. Combined, the three men have decades of experience in the technology, manufacturing, real estate and private equity industries. In 2007, Marks served as the interim CEO at Tesla.

The design-build startup – which describes itself as a technology company – has about 60 architects on staff, along with 10 interior designers. The team is led by architect Craig Curtis, who formerly was a partner at The Miller Hull Partnership, a prominent Seattle firm.

Katerra’s overarching mission is to streamline the design and construction process while still providing good architecture. “Our goal is to remove unnecessary time and costs from the building process while also providing world-class design,” said the firm, which is one of the investors in Architizer’s online marketplace for architectural products.

Katerra believes it stands apart from other design-build firms because of its focus on utilizing technology and modular components to create large-scale multifamily, commercial and institutional projects. It also handles all steps of the building process, including site development, schematic design, fabrication of parts and onsite construction. “Through curating our own high-quality supply chain we can provide a fully coordinated design, much like what you would expect when buying a car,” the firm said. “By working within one fully integrated service model, clients no longer need to depend on multiple partners and vendors.”

The firm generally uses wood frame construction, with several upcoming projects featuring cross-laminated timber (CLT). “Katerra is aggressively pursuing CLT, with plans to help North America start using the material on scale with Europe,” the company stated.

From Dezeen: https://www.dezeen.com/2017/07/19/katerra-combines-technology-modular-construction-large-scale-prefabricated-buildings/

Veneer Technologies Craftsman’s Challenge Selects Judges For 2017

Veneer Technologies has announced the 2017 panel that will decide this international design competition highlighting achievement in the use of natural wood veneer products. The judges for this year are Karen Koenig, editor of Woodworking Network’s special publications and projects, including the Red Book resource guide; Stephen Latta, professor of cabinetmaking and wood technology at Thaddeus Stevens College of Technology, and a contributing editor for Fine Woodworking; and Mike Taylor, president and CEO of States Industries, manufacturer of hardwood plywood veneer panels.

“Our competition is unique in that we recognize the entire supply chain, from the material source to the distributor to the designer/craftsperson,” explains Veneer Tech’s Alan Hubbard, face veneer sales manager. “Our judge panel also reflects a cross section of industry experts, drawn from educators, hands-on woodworkers, trade media, and manufacturers.”

Veneer Tech Craftsman’s Challenge entries are being accepted now through May 31, 2017. Competition categories include Architectural Woodworking, Cabinetry, Furniture, Marquetry, Specialty Products and Student Design. Entry forms are available online through www.veneertech.com. There is no entry fee. Material does not need to have been sourced through Veneer Tech to be eligible.

A cash award of $3000 will be made to the creator of the grand prize winning entry. The distributor of the veneer for the grand prize winning entry will receive $2000, and the corresponding distributor salesperson will receive $1000. Category winning entries receive $1000 each. There is also an additional $1000 award to the grand prizewinner for early entry by March 31, 2017. Awards will be announced at AWFS Las Vegas, July 19-22, 2017.

From Woodworking Network: https://www.woodworkingnetwork.com/news/woodworking-industry-news/veneer-tech-craftsman%E2%80%99s-challenge-selects-judges-2017

Timber’s Transformation: An Old Building Material Is Reborn

We ask: If the 19th century modern building material technology was associated with steel and the 20th century with concrete, could the 21st be the century of “MCT,” mass construction timber? Wood, one of the world’s oldest (and greenest) building materials, was the de facto construction material in American cities for over two centuries, falling out of favor when non-combustible materials capable of building high and wide emerged.

Today, highly engineered timber, sized to compete with these structural systems, is making a comeback in Europe, especially in Germany and in Austria, where the world’s first 8-story “ply-scraper” was recently completed. Stateside, the Boston Society of Architects recently featured Urban Timber, an exhibit showcasing innovative developments in wood technology and construction, and the U.S. Department of Agriculture is sponsoring a $2M ideas competition for the design of tall wood buildings. Given all of this hoopla, one could assume that we are on the verge of a global timber revolution, yet the U.S. is lagging far behind our European neighbors. In fact, to date, neither the U.S. nor Canadian building codes explicitly recognize mass timber structural systems.

Deeply committed to sustainability, we made the choice to dive feet first into connecting with the past to build the future by employing MCT for the primary structural system of our University of Massachusetts Amherst Design Building. Designed with Equilibrium Consultants, one of the world’s foremost timber engineers, the building will house the university’s Departments of Architecture, Landscape Architecture, Regional Planning, and Building Construction Technology, and is now under construction. Permitted through a variance application using the “alternative” method provisions of the building code, our 87,000-square-foot building furthers the university’s educational mission by incorporating examples of the inherent departments’ design practices. Targeting LEED Gold, it will be among the first MCT structures in the region when completed in 2017.

Laminated technologies, first developed in Europe in the 1980s, are allowing us to fabricate fairly massive timber components for the Design Building using small diameter trees sustainably harvested from managed forests. Our selected timber, black spruce, was sourced from Canada’s Boreal forest region, an area that constitutes the world’s largest land based biome. It is constituted to stand up to fire and maintain its structural integrity.

From Metropolis Magazine: https://www.metropolismag.com/Point-of-View/August-2015/Timbers-Transformation-An-Old-Building-Material-is-Reborn/