flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Streamline Design-build with BIM

Streamline Design-build with BIM

How construction manager Barton Malow utilized BIM and design-build to deliver a quick turnaround for Georgia Tech’s new practice facility.


By By Jeff Yoders, Contributing Editor | November 11, 2011
The John and Mary Brock Football Facility at Georgia Tech in Atlanta was designed and constructed in just 40 weeks using a combi
This article first appeared in the November 2011 issue of BD+C.

Last fall, the design-build team for Georgia Tech’s new indoor football practice facility was given just 40 weeks to design and construct the John and Mary Brock Football Facility in Atlanta. The design-build team led by project management firm Barton Malow won the job on October 15, 2010, and the 88,000-sf facility had to be ready by August 1, 2011 in time for the new season of Yellow Jackets’ Football. The $9.75 million new practice facility would also have to be accessible to Georgia Tech officials, boosters, and recruits considering committing to the program the summer before it opened.

“Our sole focus was minimizing risk to deliver the project on schedule,” said Jason McFadden, project manager for Barton Malow. “We weren’t using BIM to show clash detection or make a pretty model.”

At the kickoff meeting last October, Barton Malow and other members of the Building Team—architect Knight Architects of Atlanta, structural engineer Walter P Moore, and owner representatives from Georgia Tech and construction partner May Moeller Purcell—signed memos that committed each discipline to specific completion dates for the various phases of the project. They also set up a workflow where the entire team had to go through the BIM model together on a weekly basis. Most important, the team agreed on a set of tools to model in, collaborate, and deliver closeout documents—a combination of Tekla Engineer and Detailing packages and Tekla for Construction Management to manage and track project status, including submittals, RFIs, and scheduling. Subsequently, TeklaBIMsight for collaboration was added.

At that initial meeting, the Building Team decided that designing a building that was mostly structural steel (rather than a prefabricated metal building) would be the only way to deliver on the tight schedule. Shortly thereafter, Barton Malow published an RFP for steel fabricators challenging them to explain how their system would most benefit the project. The Atlanta office of SteelFab won the project and committed to using Tekla for direct design-to-fabrication as outlined in the RFP.

Walter P Moore started development of the steel model in Tekla Structures in early December. By December 8, 2010, the first model was out to the Steelfab team. The process ran smoothly from that initial model exchange, since both the engineer and fabricator were using native Tekla Structures files. The final, fully detailed design model was approved by Walter P Moore on January 8, 2011. Only 12 weeks separated the start of steel design to the start of steel erection.

Truss sections were determined by what could be shipped and built on the tight site on Georgia Tech’s campus. Each 228-foot truss was divided into six equal sections, which were delivered and bolted together on the ground at the site. The stair tower and camera platform, including rails, were all fully modeled in Tekla.

“The key was continuous back-and-forth information exchange,” McFadden said. Steelfab suggested several fabrication techniques that really allowed us to achieve our schedule goals.

The Tekla Model Reviewer was used early in the steel design, but once TeklaBIMSight was released last February, the Building Team quickly adopted it as its collaboration tool. Ambassador Steel of Waukesha, Wis., was chosen as the concrete rebar fabricator; however, the concrete foundation design was delayed because a geotechnical report was not delivered until December 7. That cut the team’s schedule to three weeks for completion of concrete design and one week to complete the reinforcing bar detail shop drawings.

“We gambled a little bit with publishing approved rebar shop drawings prior to the concrete subcontract award,” McFadden said. “That’s not yet very common in the eastern part of the country but Ambassador Steel really came through.”

Ambassador and Walter P Moore delivered a full rebar model for the foundation by December 30. It took only eight days from the time the concrete subcontract was awarded to get rebar on site. The structural engineer modeled all concrete reinforcement and shared it with Ambassador Steel in Tekla to streamline the rebar detailing process. Ambassador also produced reinforcing bend diagrams directly from the model. The concrete model was integrated with the steel and electrical model by late January. By that time TeklaBIMsight was being used as the collaboration tool and model viewer of choice. Tekla BIMsight was also taken out into the field in tablet computers to match up the model to work in the field. With both rebar and steel design, the model exported directly to the fabricator’s production equipment.

The integrated models were used for scheduling and erection planning sequencing with Tekla’s Construction Management solution, which also provided a tool to evaluate erection plan and sequence.

CREATING A VISUAL REPRESENTATION
To coordinate the schedule, the Barton Malow team used model-based color-coded timelines for scheduling and just-in-time delivery. The Suretrak schedule was integrated with the Tekla task manager to provide a visual representation of all completed and upcoming construction tasks. Custom reports were created using the BIM model to streamline a two-week look-ahead for installation of each component of the building. No paper approval documents were used on the project until file record copies were needed. 

The Tekla Model Reviewer and BIMsight from tablets and computers in the field were used to document and discuss all construction problems in the field. Thanks to the weekly meetings and detailed project memos from design to construction there were no clashes at any point in construction. Last August 1, the new practice facility opened on time and on budget.

“We’re not necessarily trying to have every project engineer or project manager or superintendent having to learn a particular BIM software, but for every project team to be using BIM technology in the way that’s right for their job,” said Phil Kirby, Barton Malow’s senior vice president. “We don’t have a one-size-fits-all solution because every job is different. What we have found is that prefabrication can be applied to most jobs, and choosing the right tool to enable that is what worked at Georgia Tech.” BD+C
--

Contributing Editor Jeff “BIMBoy” Yoders blogs on BIM and related IT topics at www.BDCnetwork.com.

Related Stories

Market Data | Nov 27, 2023

Number of employees returning to the office varies significantly by city

While the return-to-the-office trend is felt across the country, the percentage of employees moving back to their offices varies significantly according to geography, according to Eptura’s Q3 Workplace Index.

Resiliency | Nov 27, 2023

All levels of government need to act to cope with climate-driven flooding and sea level rise

The latest National Climate Assessment highlights the need for local, state, and federal governments to adopt policies to mitigate the effects of climate-driven flooding and sea level rise, according to a policy expert with the National Resources Defense Council.

Data Centers | Nov 22, 2023

How is artificial intelligence impacting data center design?

As AI is reshaping how we interact with machines and the world around us, the design of data centers needs to adapt to this fast-changing landscape. So, Page pairs expert thinking with high-performing solutions to meet the needs of rapidly advancing technologies.

Cultural Facilities | Nov 21, 2023

Arizona’s Water Education Center will teach visitors about water conservation and reuse strategies

Phoenix-based architecture firm Jones Studio will design the Water Education Center for Central Arizona Project (CAP)—a 336-mile aqueduct system that delivers Colorado River water to almost 6 million people, more than 80% of the state’s population. The Center will allow the public to explore CAP’s history, operations, and impact on Arizona.

MFPRO+ New Projects | Nov 21, 2023

An 'eco-obsessed' multifamily housing project takes advantage of downtown Austin’s small lots

In downtown Austin, Tex., architecture firm McKinney York says it built Capitol Quarters to be “eco-obsessed, not just eco-minded.” With airtight walls, better insulation, and super-efficient VRF (variable refrigerant flow) systems, Capitol Quarters uses 30% less energy than other living spaces in Austin, according to a statement from McKinney York. 

MFPRO+ News | Nov 21, 2023

California building electrification laws could prompt more evictions and rent increases

California laws requiring apartment owners to ditch appliances that use fossil fuels could prompt more evictions and rent increases in the state, according to a report from the nonprofit Strategic Actions for a Just Economy. The law could spur more evictions if landlords undertake major renovations to comply with the electrification rule. 

Codes and Standards | Nov 21, 2023

Austin becomes largest U.S. city to waive minimum parking requirements

Austin, Texas recently became the largest city in the United States to stop requiring new developments to set a minimum amount of parking. The Austin City Council voted 8-2 earlier this month to eliminate parking requirements in an effort to fight climate change and spur more housing construction as Texas’s capitol grapples with a housing affordability crisis.

MFPRO+ News | Nov 21, 2023

Underused strip malls offer great potential for conversions to residential use

Replacing moribund strip malls with multifamily housing could make a notable dent in the housing shortage and revitalize under-used properties across the country, according to a report from housing nonprofit Enterprise Community Partners.

Giants 400 | Nov 16, 2023

Top 100 Science + Technology Facility Architecture Firms for 2023

Gensler, HDR, Page Southerland Page, Flad Architects, and DGA top BD+C's ranking of the nation's largest science and technology (S+T) facility architecture and architecture/engineering (AE) firms for 2023, as reported in Building Design+Construction's 2023 Giants 400 Report. Note: This ranking factors revenue from all science and technology (S+T) buildings work, including laboratories, research buildings, technology/innovation buildings, pharmaceutical production facilities, and semiconductor production facilities.

Resiliency | Nov 16, 2023

How inclusive design supports resilience and climate preparedness

Gail Napell, AIA, LEED AP BD+C, shares five tips and examples of inclusive design across a variety of building sectors.

boombox1
boombox2
native1

More In Category

Healthcare Facilities

Watch on-demand: Key Trends in the Healthcare Facilities Market for 2024-2025

Join the Building Design+Construction editorial team for this on-demand webinar on key trends, innovations, and opportunities in the $65 billion U.S. healthcare buildings market. A panel of healthcare design and construction experts present their latest projects, trends, innovations, opportunities, and data/research on key healthcare facilities sub-sectors. A 2024-2025 U.S. healthcare facilities market outlook is also presented.




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