flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Sealing the deal: An easier way to dike air leaks in buildings

Energy Efficiency

Sealing the deal: An easier way to dike air leaks in buildings

An aerosol product injected into ductwork allowed Hyundai to open its new U.S. HQs on time.


By John Caulfield, Senior Editor | March 19, 2015
Sealing the deal: An easier way to dike air leaks in buildings

This image shows how the sealant is injected into the shafts. Photo courtesy Hyundai

Energy efficiency has become such a common goal for new construction these days that it’s easy to forget that not every building is perfectly made, and that fixing problems that reduce a building’s efficiency after the construction work is mostly completed can be an expensive, lengthy process.

The Department of Energy estimates that hat 85% of buildings in the U.S. lose 30% to 40% of treated air through duct leaks, which can result in sizable energy costs, ventilation systems that don’t work, and mold and mildew problems.

Hyundai faced this very issue only weeks before the January 2014 scheduled opening of its $200 million, 500,000-sf, six-story U.S. headquarters in Fountain Valley, Calif. That opening was in danger of being delayed for months when excessive leaks were discovered in the structure’s four smoke evacuation shafts and outside air shaft.

Brian Berg, an associate principal with Glumac, the project’s Engineer of Record, notes that the building’s design posed some major challenges. The architect, Gensler, had specified that it didn’t want structural beams in any of the building’s usable space. So where to put those beams was left to the mechanical engineering team.

The decision was made to run beams and conduit through the building’s 8- by 6-foot shafts, which doubled as the building’s air ventilation system because the structure had been designed with no sheet-metal air ducts.

However, all of that metal running through the shafts inevitably poked some holes in them. In addition, not all of the joints in the shafts had been sealed properly. Testing determined that 14,861 cubic-feet-per-minute of air was leaking, or about 20%, well in excess of the 5% limit allowed by building codes.

“The supervisor on the Building Team was pretty tough,” wasn’t going to sign off on this project until the leakage problem was rectified, recalls Bob Evans, Hyundai’s Senior Project Manager. (Hyundai Amco America was the project’s GC.)

 

Hyundai shows how the sealant is injected into the shafts. Photo courtesy Hyundai

 

One solution considered was to build scaffolding inside each shaft in order to seal visible leaks in the interior fiberglass drywall by spraying those walls with rubberized foam. However, that process would have cost up to $1 million and would take months to complete.

Berg says he reached out to Glumac’s other offices around the country, and heard back from its Las Vegas office, which had just solved a leakage problem in a new city center it was working on by using a technology called aeroseal, which seals leaks from the inside of pressurized ductwork.

This product has been around since the mid 1990s, and its development funding had been sponsored by the Department of Energy. Evans says he had heard about it, but thought it was “like snake oil; you know, too good to be true.” But he did some research and found that aeroseal had been effective in sealing bricks and mortar buildings.

AWC, a certified aeroseal contractor, came on board and took a couple of weeks to complete the shafts, at a cost that Evans estimates was less than $150,000. The Building Team opened walls on at least one floor to conduct testing, and found that the leakage had fallen to 808 CFM, or less than 1.1%. A bonus, says Evans, is that the aeroseal sealed around the electrical plates and boxes, too.

The headquarters building was completed on time and opened on schedule. Berg says he’s been recommending aeroseal for other projects ever since, especially for existing buildings that can have a lot of leakage over time but would be difficult to fix.

 

 

This is what the shafts look like after the sealant is injected. Photo courtesy Hyundai

 

A tool measuring the air leakage after the shafts were sealed (less than 1%). Photo courtesy Hyundai

Related Stories

| Jan 2, 2013

Recent books take on net-zero energy,‘transformational thought’

We’re not in the habit of recommending books in these pages, but we could not ignore two recent noteworthy publications.

| Dec 13, 2012

Survey: energy-efficient building technologies to drive long-term energy savings

Greater adoption of existing efficiency technologies, enabled by chemistry, could lower energy use in buildings by 41% by 2050, according to new report.

| Nov 14, 2012

U.S. Green Building Council partners with Pearson

Partnership will help further USGBC’s mission by advancing green building education

| Nov 14, 2012

USGBC's Greenbuild International Conference and Expo kicks off in San Francisco

7,000 members of the green building industry convene for opening plenary headlined by "Morning Joe" co-hosts Mika Brzezinksi and Joe Scarborough

| Nov 13, 2012

Turner Construction’s green building Market Barometer reveals new findings on green building and certification

Respondents indicated a widespread commitment to sustainable practices

| Nov 12, 2012

Legrand Shares New Energy Savings Resources Aimed at Promoting Better Energy Management

Company Announces the First in a Set of Comprehensive Resources to Help Companies Take Steps to Improve Energy Performance

| Sep 11, 2012

New York City releases first energy benchmarking data for private buildings

City is first in U.S. to disclose private-sector building energy data from a mandatory benchmarking policy.

| Jul 12, 2012

Chicago Public Schools names Lend Lease team as construction manager

Under this Capital Improvement Program, the Lend Lease team will be responsible for renovation and life safety work at over 100 Chicago Public Schools across the City.

boombox1
boombox2
native1

More In Category



Government Buildings

One of the country’s first all-electric fire stations will use no outside energy sources

Charlotte, N.C.’s new Fire Station #30 will be one of the country’s first all-electric fire stations, using no outside energy sources other than diesel fuel for one or two of the fire trucks. Multiple energy sources will power the station, including solar roof panels and geothermal wells. The two-story building features three truck bays, two fire poles, dispatch area, contamination room, and gear storage.


Geothermal Technology

Rochester, Minn., plans extensive geothermal network

The city of Rochester, Minn., home of the famed Mayo Clinic, is going big on geothermal networks. The city is constructing Thermal Energy Networks (TENs) that consist of ambient pipe loops connecting multiple buildings and delivering thermal heating and cooling energy via water-source heat pumps.

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