flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

'Virtually indestructible': Utah architect applies thin-shell dome concept for safer schools

'Virtually indestructible': Utah architect applies thin-shell dome concept for safer schools

At $94 a square foot and "virtually indestructible," some school districts in Utah are opting to build concrete dome schools in lieu of traditional structures. 


By BD+C Staff | May 15, 2014
Salt Lake City, Utah-based Leland A. Gray Architects is adapting the concrete th
Salt Lake City, Utah-based Leland A. Gray Architects is adapting the concrete thinshell structural approach for K-12 schools in

In the wake of natural disasters and school shooting incidents, education professionals across the country are looking for innovative ways to better protect children while they learn. A new building approach from Salt Lake City, Utah-based Leland A. Gray Architects is designed to contribute to that goal.

The firm is adapting the concrete thinshell structural approach for K-12 schools in Utah, according to a report by KSL.

The domed building, which the architect calls "virtually indestructible," uses an air-formed thin-shell concrete dome, along with a concrete stem wall. The system was created for assembly buildings such as schools, churches, and arenas, but some school disctricts are finding that it works well for K-12 school buildings, as well.  

To build one of these structures, the roofing membrane is formed into a dome shape with a 31-ounce PVC material. A concrete ring on the stem wall is attached to an air form, and the membrane is inflated by air pressure to the size of the dome. Then, the underside of the membrane is sprayed with a urethane insulation to a depth of 3 inches over the entire surface of the membrane. 

Steel reinforcing bars are then placed in an interlocking pattern across the dome's underside. Finally, according to Leland Gray's website: "The reinforcing steel is built up to 4 feet high around the base of the dome and sprayed with shot-crete. This process continues in 4-foot-wide bands from the base to the top of the dome. The concrete will be 8 to 10 inches thick at the base, tapering to 3 to 4 inches thick at the top."

Schools like this have already been built in Utah and in other places across the country, in part, because they are relatively inexpensive to build and they can save school districts money in utilities.

According to KSL, which did a story on dome schools in Locust Grove, Utah, "both the elementary and the high school in Locust Grove cost $94 a square foot to build. That's a deal, considering the price for school construction in the U.S. ranges from $150-$250 a square foot." In addition, the superintendent of the district told reporters that these buildings cut utility costs by 40%.

Read the full KSL story here. 

Check out the video below to see what goes into a concrete thinshell dome, and what one looks like from the inside.

Related Stories

| Nov 2, 2010

Energy Analysis No Longer a Luxury

Back in the halcyon days of 2006, energy analysis of building design and performance was a luxury. Sure, many forward-thinking AEC firms ran their designs through services such as Autodesk’s Green Building Studio and IES’s Virtual Environment, and some facility managers used Honeywell’s Energy Manager and other monitoring software. Today, however, knowing exactly how much energy your building will produce and use is survival of the fittest as energy costs and green design requirements demand precision.

| Nov 2, 2010

Yudelson: ‘If It Doesn’t Perform, It Can’t Be Green’

Jerry Yudelson, prolific author and veteran green building expert, challenges Building Teams to think big when it comes to controlling energy use and reducing carbon emissions in buildings.

| Nov 2, 2010

Historic changes to commercial building energy codes drive energy efficiency, emissions reductions

Revisions to the commercial section of the 2012 International Energy Conservation Code (IECC)  represent the largest single-step efficiency increase in the history of the national, model energy. The changes mean that new and renovated buildings constructed in jurisdictions that follow the 2012 IECC will use 30% less energy than those built to current standards.

| Nov 1, 2010

Sustainable, mixed-income housing to revitalize community

The $41 million Arlington Grove mixed-use development in St. Louis is viewed as a major step in revitalizing the community. Developed by McCormack Baron Salazar with KAI Design & Build (architect, MEP, GC), the project will add 112 new and renovated mixed-income rental units (market rate, low-income, and public housing) totaling 162,000 sf, plus 5,000 sf of commercial/retail space.

| Nov 1, 2010

John Pearce: First thing I tell designers: Do your homework!

John Pearce, FAIA, University Architect at Duke University, Durham, N.C., tells BD+C’s Robert Cassidy  about the school’s construction plans and sustainability efforts, how to land work at Duke, and why he’s proceeding with caution when it comes to BIM.

| Nov 1, 2010

Vancouver’s former Olympic Village shoots for Gold

The first tenants of the Millennium Water development in Vancouver, B.C., were Olympic athletes competing in the 2010 Winter Games. Now the former Olympic Village, located on a 17-acre brownfield site, is being transformed into a residential neighborhood targeting LEED ND Gold. The buildings are expected to consume 30-70% less energy than comparable structures.

| Oct 27, 2010

Grid-neutral education complex to serve students, community

MVE Institutional designed the Downtown Educational Complex in Oakland, Calif., to serve as an educational facility, community center, and grid-neutral green building. The 123,000-sf complex, now under construction on a 5.5-acre site in the city’s Lake Merritt neighborhood, will be built in two phases, the first expected to be completed in spring 2012 and the second in fall 2014.

| Oct 21, 2010

GSA confirms new LEED Gold requirement

The General Services Administration has increased its sustainability requirements and now mandates LEED Gold for its projects.

| Oct 18, 2010

World’s first zero-carbon city on track in Abu Dhabi

Masdar City, the world’s only zero-carbon city, is on track to be built in Abu Dhabi, with completion expected as early as 2020. Foster + Partners developed the $22 billion city’s master plan, with Adrian Smith + Gordon Gill Architecture, Aedas, and Lava Architects designing buildings for the project’s first phase, which is on track to be ready for occupancy by 2015.

boombox1
boombox2
native1

More In Category


Urban Planning

Bridging the gap: How early architect involvement can revolutionize a city’s capital improvement plans

Capital Improvement Plans (CIPs) typically span three to five years and outline future city projects and their costs. While they set the stage, the design and construction of these projects often extend beyond the CIP window, leading to a disconnect between the initial budget and evolving project scope. This can result in financial shortfalls, forcing cities to cut back on critical project features.



Libraries

Reasons to reinvent the Midcentury academic library

DLR Group's Interior Design Leader Gretchen Holy, Assoc. IIDA, shares the idea that a designer's responsibility to embrace a library’s history, respect its past, and create an environment that will serve student populations for the next 100 years.

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