flexiblefullpage -
billboard - default
interstitial1 - interstitial
catfish1 - bottom
Currently Reading

SOM’s Salt Lake City skyscraper uses innovative structural system to suspend itself over a neighboring building

High-rise Construction

SOM’s Salt Lake City skyscraper uses innovative structural system to suspend itself over a neighboring building

The hat truss-supported office tower was topped off in January, rising 25 stories above the Salt Lake City streets.


By BD+C Editors | March 28, 2016

Rendering © Skidmore, Owings & Merrill LLP

Located in the heart of downtown Salt Lake City, 111 Main is the freshest face on the Crossroads of the West’s skyline. The building, whose roof hat truss structure was just topped off in January, transferred its loads from a temporary shoring support system to the permanent structural system during a 12-hour period.

The building’s architect and structural engineer, Skidmore Owings & Merrill, had to find a solution to a complex problem brought on by the building site's location: how to suspend a portion of the building over an adjacent structure.

111 Main is on a contiguous parcel with the new Salt Lake County Center for the Arts’ George S. and Dolores Doré Eccles Theater, which overlaps on the lower four stories and basement level of the tower footprint. To accommodate the Eccles Theater under the southern portion of 111 Main’s tower, a structural system was required that did not extend columns below the fifth level of the tower on the south side.

SOM designed the penthouse roof level of the 387-foot-tall building to be comprised of a balanced two-way steel hat truss system that supports the office tower’s 18 perimeter columns in an integrated load-balanced structure. The central reinforced concrete core walls provide the only connection of the tower to its foundation and resist all gravity loads, as well as wind and seismic vertical and lateral loads. In fact, 111 Main was designed and built to withstand a 2,500-year earthquake event.

 

Photo: City Creek Reserve, Inc.; Rendering: SOM 

 

Conventional long-span, composite-steel floor framing construction connects the central core walls to the perimeter steel frame and suspended columns, providing open office spaces free of interior columns and a completely column-free lobby at the tower’s base.

111 Main is looking to achieve LEED Gold certification by using less energy and water and reducing greenhouse gas emissions. Building operation is targeted to operate 15% below Utah’s energy codes and will utilize fully automated, under-floor energy conserving HVAC systems with 16-inch raised floors.

The aforementioned lobby will consist of 35-foot-tall clear glass and span 5,876 sf. Overall, there will be approximately 440,000 sf available to rent.

Because of the unique hat truss structural system that allows for a column-free floor design throughout, the use of floor-to-ceiling glass offices stands out even more. One of the more unique amenities is the building lobby’s connection to the Eccles Theater Grand Lobby, the building that 111 Main hovers over and fits with like a Tetris piece.

A combination of five low-rise elevators, four high-rise elevators, and one freight elevator will be used to get people where they need to go within the structure. 111 Main will feature state-of-the-art fiber infrastructure, redundant data feeds, and electricity sourced from two substations.

Joining SOM on the Building Team is Oakland Construction (GC) and City Creek Reserve (Developer).

The anticipated completion date for 111 Main is August 2016.

Related Stories

High-rise Construction | Nov 1, 2016

The world’s 100 tallest buildings: Which wind consultants have worked on the most?

The top firm has worked on almost half of the world’s 100 tallest buildings.

High-rise Construction | Nov 1, 2016

LEGOLAND Dubai unveils the Brick Khalifa, the world’s tallest LEGO replica building

The model is on display at the newly opened LEGOLAND Dubai.

High-rise Construction | Nov 1, 2016

Winthrop Square will give rise to Boston’s second tallest building

The building will become the tallest residential tower in the city.

Building Team | Oct 31, 2016

The world’s 100 tallest buildings: Who owns and has developed the most?

All but four owners/developers on the list are located in the United Arab Emirates, China, or Hong Kong.

High-rise Construction | Oct 28, 2016

The world’s 100 tallest buildings: Which contractors have worked on the most?

Only one firm has worked on more than 10 of the world’s 100 tallest buildings.

High-rise Construction | Oct 27, 2016

The world’s 100 tallest buildings: Which MEP engineers have worked on the most?

The top firm worked on over three times as many of the tallest buildings as the second place firm on the list.

High-rise Construction | Oct 26, 2016

The world’s 100 tallest buildings: Which structural engineers have worked on the most?

The top firm has worked on almost one-fifth of the 100 tallest buildings in the world.

High-rise Construction | Oct 25, 2016

That sinking feeling: Millennium Tower San Francisco is beginning to worry residents with its sinking, leaning [Updated]

Residents are beginning to question if the tower, which exists in a major earthquake fault zone, is safe.

High-rise Construction | Oct 21, 2016

The world’s 100 tallest buildings: Which architects have designed the most?

Two firms stand well above the others when it comes to the number of tall buildings they have designed.

High-rise Construction | Oct 14, 2016

Perkins+Will-designed residential towers would transform the Seattle skyline

The towers thrive on ‘creative tension’ and lean farther away from each other the higher they climb.

boombox1 - default
boombox2 -
native1 -

More In Category




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