Administrators at the University of Connecticut Health Center in Farmington didn’t think much of the 1970s building they planned to turn into the school’s Cell and Genome Sciences Building. It’s not that the former toxicology research facility was in such terrible shape, but the 117,800-sf structure had almost no windows and its interior was dark and chopped up.
Enter the Building Team of Goody Clancy (architect) and FIP Construction (GC), who worked with the university to create an open, bright, and sustainable home (targeting LEED Silver) for three major research programs: UConn Stem Cell Institute, the R.D. Berlin Center for Cell Analysis and Modeling, and the Department of Genetics and Developmental Biology.
But how to get daylight deep into the lab spaces? Fortunately, the one-story framework allowed light to be brought in from above. The Building Team ran a 464-foot-long skylight the length of the main corridor, and clerestory windows were installed above the “Crossroads,” a central gathering and eating space that features a newly raised roof.
Additional daylighting comes from 56 new windows installed in exterior walls—not an easy task, given the building’s concrete panel construction. The team calculated the maximum window size allowable without compromising the panels and then standardized all windows to that size. Louvered sunshades were added above each of these.
Interior walls were also punched through with window openings to further distribute daylight. Leaving interior walls largely in place also kept construction costs down, to $259/sf (inclusive of site work). Also helping the budget: refurbishing and reconfiguring existing metal casework in research labs, which were extensively upgraded to modern research and safety standards, and finishing the new 100-seat auditorium in wood paneling left over from another campus project.
The facility’s wetlands site was carefully reconfigured to accommodate extra parking, and a bioretention pond was added to control runoff and keep stormwater out of the town’s sewer system. Also, because the existing building lacked a recognizable “front door,” a proper front entrance was added.
“It’s very difficult to do these types of buildings, and this one was very well done,” said David Callan, SVP, Environmental Systems Design, Chicago. “Excellent job on a low budget.” BD+C
PROJECT SUMMARY
Building Team
Submitting firm: Goody Clancy (architect)
Owner/developer: University of Connecticut Health Center
CM: FIP Construction
Structural engineer: LeMessurier Consultants Inc.
M/E engineer: Cosentini Associates
Plumbing engineer: BVH Integrated Services
General Information
Size: 117,813 gsf
Construction cost: $30.53 million
Construction time: September 2008 to June 2010
Delivery method: CM at risk
Related Stories
| Jan 13, 2014
Custom exterior fabricator A. Zahner unveils free façade design software for architects
The web-based tool uses the company's factory floor like "a massive rapid prototype machine,” allowing designers to manipulate designs on the fly based on cost and other factors, according to CEO/President Bill Zahner.
| Jan 13, 2014
AEC professionals weigh in on school security
An exclusive survey reveals that Building Teams are doing their part to make the nation’s schools safer in the aftermath of the Sandy Hook tragedy.
| Jan 13, 2014
6 legislative actions to ignite the construction economy
The American Institute of Architects announced its “punch list” for Congress that, if completed, will ignite the construction economy by spurring much needed improvements in energy efficiency, infrastructure, and resiliency, and create jobs for small business.
| Jan 12, 2014
CES showcases innovations: Can any of these help you do your job better?
The Consumer Electronics Show took place this past week in Las Vegas. Known for launching new products and technologies, many of the products showcased there set the bar for future innovators. The show also signals trends to watch in technology applicable to the design and building industry.
| Jan 12, 2014
The ‘fuzz factor’ in engineering: when continuous improvement is neither
The biggest threat to human life in a building isn’t the potential of natural disasters, but the threat of human error. I believe it’s a reality that increases in probability every time a code or standard change is proposed.
| Jan 12, 2014
5 ways virtual modeling can improve facilities management
Improved space management, streamlined maintenance, and economical retrofits are among the ways building owners and facility managers can benefit from building information modeling.
| Jan 11, 2014
Getting to net-zero energy with brick masonry construction [AIA course]
When targeting net-zero energy performance, AEC professionals are advised to tackle energy demand first. This AIA course covers brick masonry's role in reducing energy consumption in buildings.
| Jan 10, 2014
What the states should do to prevent more school shootings
To tell the truth, I didn’t want to write about the terrible events of December 14, 2012, when 20 children and six adults were gunned down at Sandy Hook Elementary School in Newtown, Conn. I figured other media would provide ample coverage, and anything we did would look cheap or inappropriate. But two things turned me around.
| Jan 10, 2014
Special Report: K-12 school security in the wake of Sandy Hook
BD+C's exclusive five-part report on K-12 school security offers proven design advice, technology recommendations, and thoughtful commentary on how Building Teams can help school districts prevent, or at least mitigate, a Sandy Hook on their turf.
| Jan 10, 2014
Resiliency, material health among top AEC focuses for 2014: Perkins+Will survey
Architectural giant Perkins+Will recently surveyed its staff of 1,500 design pros to forcast hot trends in the AEC field for 2014. The resulting Design + Insights Survey reflects a global perspective.