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

| May 15, 2013

Schneider Electric announces Global Xperience Efficiency Events for 2013

Schneider Electric’s Xperience Efficiency series will begin with events in the United States, China, Colombia, Brazil and Russia.

| May 15, 2013

Center for Green Schools, Architecture for Humanity release new tool for green schools

The 70-page guide demystifies the processes of identifying building improvement opportunities and finance and implementation strategies.

| May 14, 2013

Paints and coatings: The latest trends in sustainability

When it comes to durability, a 50-year building design ideally should include 50-year coatings. Many building products consume substantial amounts of energy, water, and petrochemicals during manufacture, but they can make up for it in the operations phase. The same should be expected from architectural coatings.

| May 14, 2013

Advanced turbines generate 6X more energy than conventional models

US-based wind energy company SheerWind just unveiled the INVELOX – a tunnel-based wind turbine that can produce up to 600% more power than traditional wind turbines.

| May 14, 2013

Raymond Clark joins HOK’s Chicago Practice as Management Principal

HOK announced today that Raymond Clark, AIA, LEED AP, has joined its leadership team in Chicago as senior vice president and management principal.

| May 14, 2013

Easy net-zero energy buildings [infographic]

"Be a Zero Hero" infographic educates building industry professionals on ultra energy-efficient structural insulated panel construction

| May 9, 2013

10 high-efficiency plumbing fixtures

From a "no sweat" toilet to a deep-well lavatory, here's a round up of the latest high-efficiency plumbing fixtures.

| May 9, 2013

Post-tornado Greensburg, Kan., leads world in LEED-certified buildings per capita

Six years after a tornado virtually wiped out the town, Greensburg, Kan., is the world's leading community in LEED-certified buildings per capita.

| May 8, 2013

Preventable curtain wall failures - AIA/CES course

In many cases, curtain wall failures are caused by fairly simple errors that occur during the fabrication and installation process. This presentation will highlight common errors and when they typically occur.

boombox1
boombox2
native1

More In Category

Warehouses

California bill would limit where distribution centers can be built

A bill that passed the California legislature would limit where distribution centers can be located and impose other rules aimed at reducing air pollution and traffic. Assembly Bill 98 would tighten building standards for new warehouses and ban heavy diesel truck traffic next to sensitive sites including homes, schools, parks and nursing homes.




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