In the last six years, the University of Arkansas for Medical Sciences, in Little Rock, has experienced unprecedented growth, including the development of more than $425 million in new or expanded facilities. UAMS is Arkansas’s only comprehensive academic health center, with five colleges, a graduate school, a new 550,000-sf hospital tower (completed in 2009), six centers of excellence, and a statewide network of regional centers. It’s also the state’s largest public employer, providing jobs to more than 10,000 Arkansas healthcare professionals.
But by 2009 all of that growth was taking its toll on the campus’s existing data centers, which had to securely store most of the hospital system’s sensitive medical records.
“In the last five years we’ve had about 35% growth,” said Mark Kenneday, UAMS’s Vice Chancellor of Campus Operations. “Our old main data center was pretty crude, a reflection of the growth we experienced.” The medical center’s IT infrastructure program, he explained, was being developed around the idea of a three-legged stool, with redundancies in all three data centers; if any single location were to go down, another of the centers could pick up the slack.
However, only two of the data center “legs” were in place. Clearly, a new primary data center was needed. That’s when building information modeling came into play.
Rather than just plan and construct another building to house massive racks of servers for a quick fix, Kenneday and the operations team at UAMS looked at the new data center as an opportunity to expand the university’s BIM design standards and create a building that would efficiently serve the UAMS campus for at least the next hundred years.
Even before Kenneday arrived at UAMS in 2007, the medical center required Building Teams to submit designs in Autodesk’s Revit BIM platform. But the Primary Data Center project expanded the 3D BIM requirement in its contracts and bid documents to the entire Building Team. All general contractors had to bid the project as a BIM carry-through. BIM precertification was also required of every architect and engineer on the project.
“We really pushed them into a corner so they would take the responsibility,” Kenneday said. “We already had all of our schematic designs done in BIM. A more profound delivery was a very natural next step. When you realize you have this giant data repository you don’t know what to do with, the BIM model allows you to put some of that information into data knowledge for decision-making down the road.”
MEP and structural design engineer TME Engineering, Little Rock, led the design team for the $4.9 million, 15,000-sf PDC with Kirchner Architecture, also of Little Rock, providing the architectural design. Kenneday said that, notwithstanding the importance of the architectural aspects of the building, it was the information stored inside the PDC that was “vitally important” to the university, which is why the engineers were given primacy on the design team.
In addition to requiring an efficient power usage efficiency (PUE) rating of 4.0 for the project, UAMS further demanded that the Building Team turn over its completed models for use in managing the facility management and providing emergency first response once the building was completed.
“When they deliver their BIM model, it becomes a UAMS product,” Kenneday said. “It becomes a part of our OEM delivery. We’ve just now started to get a repository of BIM information for our latest projects. We have a unique position here in Little Rock, in that we’re the big dog when it comes to healthcare construction, so we can do that.”
TME and Kirchner delivered a design that featured a portfolio of engineering systems: variable volume air handling units to condition the air in the Primary Data Center’s raised floor area, hot aisle enclosures to minimize cold air bypass, a dedicated ventilation unit to provide humidity control, and a chilled water system—in fact, a variable primary low-flow, high-delta-T chilled water system with energy-efficient water-cooled chillers. The heat from the data center’s raised floor area is transferred from the chilled water system to the heating water system using a heat pump chiller/heater; it then is used to heat other buildings on campus.
“We were going for a high energy rating and part of that was helped by the BIM process,” said Mark Mergenschroer, BIM development coordinator at TME. “Architectural, MEP, and structural models were all done in Revit, and it was a learning process for some of the team, since this was the first full BIM project in Arkansas. Was our model perfect all of the time? No, but the team effort and the process was.”
General contractor Vratsinas Construction Co., Little Rock, worked with its subcontractors to provide detailed shop drawings based on information from the Revit models. Project stakeholders and Building Team members could virtually walk through the planned data center and comment on the design thanks to a virtual model made in the Unity 2 gaming engine. (To try the walk-through, go to: http://www.tmecorp.com/unity2.)
The project was completed on schedule and opened last October, 18% under budget. TME was able to beat the university’s PUE target of 4.0, bringing the project in with a PUE rating of 1.36. More importantly, the data center can increase its storage capacity as UAMS continues to grow. The initial buildout uses only about 50% of its server capacity, with the ability to add another 50% as IT services are expanded. The final Revit models are being used for facilities management and planning new UAMS infrastructure.
That capacity will be needed, as the period of growth has not finished at UAMS. Construction started last year on a four-floor expansion to the Donald W. Reynolds Institute on Aging, an existing, four-story Alzheimer’s disease research and treatment facility on the Little Rock campus. Planning is also under way to renovate 24,000 sf in the former main hospital building for the new UAMS Center for Clinical and Translational Research. Both projects use the same BIM requirements used on the Primary Data Center.
“I would prefer for our campus to take a lead position when it comes to BIM,” Kenneday said. “We want to be on the front of the train, rather than on the back. Or under it.” BD+C
Be sure to catch the latest blog from Jeff (“BIMBoy”) Yoders at: www.BDCnetwork.com.
Related Stories
| Feb 11, 2011
Iowa surgery center addresses both inpatient and outpatient care
The 12,000-person community of Carroll, Iowa, has a new $28 million surgery center to provide both inpatient and outpatient care. Minneapolis-based healthcare design firm Horty Elving headed up the four-story, 120,000-sf project for St. Anthony’s Regional Hospital. The center’s layout is based on a circular process flow, and includes four 800-sf operating rooms with poured rubber floors to reduce leg fatigue for surgeons and support staff, two substerile rooms between each pair of operating rooms, and two endoscopy rooms adjacent to the outpatient prep and recovery rooms. Recovery rooms are clustered in groups of four. The large family lounge (left) has expansive windows with views of the countryside, and television monitors that display coded information on patient status so loved ones can follow a patient’s progress.
| Feb 11, 2011
Grocery store anchors shopping center in Miami arts/entertainment district
18Biscayne is a 57,200-sf urban retail center being developed in downtown Miami by commercial real estate firm Stiles. Construction on the three-story center is being fast-tracked for completion in early 2012. The project is anchored by a 49,200-sf Publix market with bakery, pharmacy, and café with outdoor seating. An additional 8,000 sf of retail space will front Biscayne Boulevard. The complex is in close proximity to the Adrienne Arsht Center for the Performing Arts, the downtown Miami entertainment district, and the Omni neighborhood, one of the city’s fast-growing residential areas.
| Feb 11, 2011
Chicago architecture firm planning one of China’s tallest towers
Chicago-based Goettsch Partners was commissioned by developer Guangzhou R&F Properties Co. Ltd. to design a new 294,570-sm mixed-use tower in Tianjin, China. The Tianjin R&F Guangdong Tower will be located within the city’s newly planned business district, and at 439 meters it will be one of China’s tallest buildings. The massive complex will feature 134,900 sm of Class A office space, a 400-key, five-star hotel, 55 condominiums, and 8,550 sm of retail space. The architects are designing the tower with multi-story atriums and a high-performance curtain wall to bring daylight deep into the building, thereby creating deeper lease spans. The project is currently finishing design.
| Feb 11, 2011
Two projects seek to reinvigorate Los Angeles County medical center
HMC Architects designed two new buildings for the Los Angeles County Martin Luther King, Jr., Medical Center as part of a $360 million plan to reinvigorate the campus. The buildings include a 120-bed hospital, which involves renovation of an existing tower and several support buildings, and the construction of a new multi-service ambulatory care center. The new facilities will have large expanses of glass at all waiting and public areas for unobstructed views of downtown Los Angeles. A curved glass entrance canopy will unite the two buildings. When both projects are completed—the hospital in 2012 and the ambulatory care center in 2013—the campus will have added more than 460,000 sf of space. The hospital will seek LEED certification, while the ambulatory care center is targeting LEED Silver.
| Feb 11, 2011
Sustainable community center to serve Angelinos in need
Harbor Interfaith Services, a nonprofit serving the homeless and working poor in the Harbor Area and South Bay communities of Los Angeles, engaged Withee Malcolm Architects to design a new 15,000-sf family resource center. The architects, who are working pro bono for the initial phase, created a family-centered design that consolidates all programs into a single building. The new three-story space will house a resource center, food pantry, nursery and pre-school, and administrative offices, plus indoor and outdoor play spaces and underground parking. The building’s scale and setbacks will help it blend with its residential neighbors, while its low-flow fixtures, low-VOC and recycled materials, and energy-efficient mechanical equipment and appliances will help it earn LEED certification.
| Feb 11, 2011
Texas megachurch inspired by yesteryear’s materials, today’s design vocabulary
The third phase of The First Baptist Church of Pasadena, Texas, involves construction of a new 115,000-sf worship center addition. Currently in design by Zeigler Cooper, the project will include a 2,500-seat worship center (with circular layout and space for a 50-person orchestra and 200-person choir), a 500-seat chapel (for weddings, funerals, and special events), and a prayer room. The addition will connect to the existing church and create a Christian Commons for education, administration, music, and fellowship. The church asked for a modern design that uses traditional materials, such as stone, brick, and stained glass. Construction is scheduled to begin this summer.
| Feb 11, 2011
Apartment complex caters to University of Minnesota students
Twin Cities firm Elness Swenson Graham Architects designed the new Stadium Village Flats, in the University of Minnesota’s East Bank Campus, with students in mind. The $30 million, six-story residential/retail complex will include 120 furnished apartments with fitness rooms and lounges on each floor. More than 5,000 sf of first-floor retail space and two levels of below-ground parking will complete the complex. Opus AE Group Inc., based in Minneapolis, will provide structural engineering services.
| Feb 11, 2011
Four-story library at Salem State will hold half a million—get this—books!
Salem State University in Massachusetts broke ground on a new library and learning center in December. The new four-story library will include instructional labs, group study rooms, and a testing center. The modern, 124,000-sf design by Boston-based Shepley Bulfinch includes space for 500,000 books and study space for up to a thousand students. Sustainable features include geothermal heating and cooling, rainwater harvesting, and low-flow plumbing fixtures.
| Feb 11, 2011
Green design, white snow at Egyptian desert retail complex
The Mall of Egypt will be a 135,000-sm retail and entertainment complex in Cairo’s modern 6th of October district. The two-story center is divided into three themed zones—The City, which is arranged as a series of streets lined with retail and public spaces; The Desert Valley, which contains upscale department stores, international retailers, and a central courtyard for music and other cultural events; and The Crystal, which will include leisure and entertainment venues, including a cinema and indoor snow park. RTKL is designing the massive complex to LEED Silver standards.
| Feb 10, 2011
7 Things to Know About Impact Glazing and Fire-rated Glass
Back-to-basics answers to seven common questions about impact glazing and fire-rated glass.