flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Purdue, industry partners test light steel framing for seismic safety

Purdue, industry partners test light steel framing for seismic safety

Reasearch will conclude with shake table testing of structural and non-structural components.


By Purdue University | June 14, 2013
A view of the two-story test building. Photo: Kara Peterman
A view of the two-story test building. The completed structure is armored with 23,000 pounds of 1/2-inch steel plate. Photo: Kara Peterman

WEST LAFAYETTE, Ind. - A partnership of leading earthquake engineering researchers from top U.S. and Canadian universities and design professionals from the steel industry have begun the final phase of a three-year project to increase the seismic safety of buildings that use lightweight cold-formed steel for their primary beams and columns. 

Funded by a grant from the George E. Brown, Jr. Network for Earthquake Engineering Simulation Network (NEES), the researchers have already developed a series of computational models to determine how a complete building structure will perform during an earthquake. 

Headquartered at Purdue's Discovery Park, NEES is a collaborative, 14-site research initiative that aims to improve structural seismic design and reduce the damaging effects of earthquakes and tsunamis. NEES is funded by a $105 million National Science Foundation grant. NEEScomm is the operations unit at Purdue. 

The initial stage in the testing involved the construction of a two-story structure and then testing on a "shake table" at the University of Buffalo. The building will undergo the rigors of a controlled earthquake to determine how it performs. There will be two phases to the shake table testing: Phase One is taking place June 12-14 and will test only the structural components, which include the cold-formed steel skeleton and the OSB (oriented strand board) sheathing for the floor diaphragm and roof; Phase Two will add non-structural components like stairs, gypsum sheathing and interior partitions. The objective is to advance cold-formed steel light-frame design in buildings to the next level and equip engineers to implement these performance-based seismic designs in their projects. 

The data from the research is published on NEEShub, the cyberinfrastructure component of the NEES network. The NEEShub platform is powered by Purdue's HUBzero software. 

The research team is led by Benjamin Schafer of the Department of Civil Engineering at Johns Hopkins University and a longtime member of two standards-developing committees of the American Iron and Steel Institute (AISI) - the Committee on Specifications and the Committee on Framing Standards. Schafer's team includes additional researchers from Johns Hopkins and Bucknell University, with input from colleagues at the University of North Texas, Virginia Tech and McGill University in Montreal, Canada. 

Several steel industry partners are participating in the project, providing technical expertise, donated materials and additional funding. The steel industry partners include the American Iron and Steel Institute, Bentley Systems Inc., ClarkDietrich Building Systems, Devco Engineering Inc., DSi Engineering, Mader Construction Co. Inc., Simpson Strong-Tie Co. Inc., the Steel Framing Industry Association, and the Steel Stud Manufacturers Association. 

"We appreciate the valuable technical and economic input that our industry partners have provided," said Schafer, the project's principal investigator. 

"This project has already resulted in several innovations that will immediately impact seismic cold-formed steel design standards, making buildings safer," Schafer said. "Now comes the fun part - getting to see how all the research plays out on the shake table. One of the important deliverables from this project will be the transfer of our research results into an open-source software framework. The data will then be made available to engineers, allowing them to see how their structural system designs will respond to an earthquake before they are constructed. This software will create cost efficiencies and potentially save lives."

In fact, project data is already on NEEShub. Preliminary testing conducted on building components (shear walls in particular) have been posted for engineers to examine. Initial uploading of the test data happens immediately after the tests. Fully curated data will happen over the course of this summer. 

Schafer said Johns Hopkins graduate student Kara Peterman is on site at the University of Buffalo Structural Engineering and Earthquake Simulation Laboratory (SEESL) and is providing updates on the structure's construction and blog entries at the CFS NEES blog.

Project Background

The award is an outcome of the National Science Foundation 09-524 program solicitation for the George E. Brown, Jr. Network for Earthquake Engineering Simulation Research competition. The title of the project is "NEES-CR: Enabling Performance-Based Seismic Design of Multi-Story Cold-Formed Steel Structures," award number 1041578. 

The analysis and initial testing for the project began in late 2010 and took place at John Hopkins University and the University of North Texas. The focus has now moved to the University of Buffalo, where construction of the two-story test building was recently completed. Full-scale shake-table testing is expected to take place in the summer.

About the George E. Brown, Jr. Network for Earthquake Engineering Simulation Network (NEES) at Purdue

Since Oct. 1, 2009, the NEES operations and cyberinfrastructure headquarters has been at Purdue University's Discovery Park, the result of National Science Foundation cooperative agreement #CMMI-0927178. The 14 participating universities hosting NEES laboratories include Cornell University; Lehigh University; Oregon State University; Rensselaer Polytechnic Institute; University at Buffalo, SUNY; University of California, Berkeley; University of California, Davis; University of California, Los Angeles; University of California San Diego; University of California Santa Barbara; University of Illinois, Urbana-Champaign; University of Minnesota; University of Nevada, Reno; and University of Texas, Austin. In addition, 5 institutions involved as administrative partners include: San Jose State University, University of Washington, University of Kansas, University of South Carolina, and the Fermi National Laboratory.

Related Stories

Architects | Aug 5, 2021

Lord Aeck Sargent's post-Katerra future, with LAS President Joe Greco

After three years under the ownership of Katerra, which closed its North American operations last May, the architecture firm Lord Aeck Sargent is re-establishing itself as an independent company, with an eye toward strengthening its eight practices and regional presence in the U.S.

Office Buildings | Aug 4, 2021

‘Lighthouse’ office tower will be new headquarters for A2A in Milan

The tower, dubbed Torre Faro, reimagines the company’s office spaces to adapt to people’s ever-changing needs at work.

Multifamily Housing | Jul 30, 2021

Multifamily housing for a post-COVID world

A trio of multifamily design experts presents concepts for post-pandemic apartment developments.

Architects | Jul 23, 2021

NCARB releases demographic breakdown of licensing exam pass rates

The organization is launching initiatives to figure out what’s causing disparities among candidate groups.

Wood | Jul 16, 2021

The future of mass timber construction, with Swinerton's Timberlab

In this exclusive for HorizonTV, BD+C's John Caulfield sat down with three Timberlab leaders to discuss the launch of the firm and what factors will lead to greater mass timber demand.

Multifamily Housing | Jul 15, 2021

Economic rebound leads to record increase in multifamily asking rents

Across the country, multifamily rents have skyrocketed. Year-over-year rents are up by double digits in nine of the top 30 markets, while national YoY rent growth is up 6.3%. Emerging from the pandemic, a perfect storm of migration, enhanced government stimulus and a hot housing market, among other factors, has enabled this extremely strong growth.

AEC Business Innovation | Jul 11, 2021

Staffing, office changes at SCB, SmithGroup, RKTB, Ryan Cos., Jacobsen, Boldt, and Adolfson & Peterson

AEC firms take strategic action as construction picks up steam with Covid openings.

K-12 Schools | Jul 9, 2021

LPA Architects' STEM high school post-occupancy evaluation

LPA Architects conducted a post-occupancy evaluation, or POE, of the eSTEM Academy, a new high school specializing in health/medical and design/engineering Career Technical Education, in Eastvale, Calif. The POE helped LPA, the Riverside County Office of Education, and the Corona-Norco Unified School District gain a better understanding of which design innovations—such as movable walls, flex furniture, collaborative spaces, indoor-outdoor activity areas, and a student union—enhanced the education program, and how well students and teachers used these innovations.

Multifamily Housing | Jul 7, 2021

Make sure to get your multifamily amenities mix right

​One of the hardest decisions multifamily developers and their design teams have to make is what mix of amenities they’re going to put into each project. A lot of squiggly factors go into that decision: the type of community, the geographic market, local recreation preferences, climate/weather conditions, physical parameters, and of course the budget. The permutations are mind-boggling.

Industrial Facilities | Jul 2, 2021

A new approach to cold storage buildings

 Cameron Trefry and Kate Lyle of Ware Malcomb talk about their firm's cold storage building prototype that is serving a market that is rapidly expanding across the supply chain.

boombox1
boombox2
native1

More In Category



Urban Planning

The magic of L.A.’s Melrose Mile

Great streets are generally not initially curated or willed into being. Rather, they emerge organically from unintentional synergies of commercial, business, cultural and economic drivers. L.A.’s Melrose Avenue is a prime example. 


Curtain Wall

7 steps to investigating curtain wall leaks

It is common for significant curtain wall leakage to involve multiple variables. Therefore, a comprehensive multi-faceted investigation is required to determine the origin of leakage, according to building enclosure consultants Richard Aeck and John A. Rudisill with Rimkus. 

halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021