The Vermont Department of Health and the University of Vermont in late October held ribbon-cutting ceremonies for a 60,000-sf public health laboratory that is nearly twice the size of the 62-year-old lab it replaces. The laboratory will be used to perform a wide range of analyses to detect biological, toxicological, chemical, and radiological threats to the health of the population, from testing for rabies, West Nile, pertussis and salmonella to water and food contaminants.
The new $31 million facility, located at the Colchester Business and Technology Park, took 18 months from its notice to proceed to its completion. It is distinguished by highly specialized Biosafety Level 3 and Animal Biosafety Level 3 (BSL-3 and ABSL-3) laboratories, as well as high-performance building enclosure, mechanical, electrical, plumbing and fire suppression systems to conduct specialized laboratory work.
That mechanical system accounted for about 40% of the project’s total cost, and posed the biggest installation challenge for Vermont-based PC Construction, the contractor on this project, according to Matt Cooke, PC’s senior project manager. “The building’s ‘penthouse’ is all mechanical, and the facility is jammed-packed with air recovery and exchange equipment.
He says that “to make everything fit,” PC and the Building Team did extensive BIM modeling That team consisted of HDR (architectural design), Scott & Partners (exterior envelope), Krebs & Lansing (civil engineering), Zero by Design (energy consultation), as well as the State of Vermont Department of Building and General Services and the university (owners).
Westphalen Photography
PC Construction has built a number “clean rooms” in the past, but nothing as elaborate as this facility, which includes one of the few BSL3 labs in the country, says Cooke. He notes that some of the lab space requires zero leakage, so everything—including the electrical boxes and windows—needed to be sealed. Cooke adds that what also makes the facility unique are its “systems and automated controls” for the anterooms and air exchange machinery.
The building sits on a foundation supported by 180 H-piles that are driven to depths of between 70 and 90 feet. The original plans called for piles that would only need to be 60 to 65 feet deep. “But once we got out there and started drilling,” Cooke says PC found that the geological survey hadn’t sufficiently taken into account the location of underground rocks, which dictated far-deeper piles.
The facility design called for its six flue-gas stacks to be 75 feet above ground, which required FAA approval and a non-reflective coating due to their height and proximity to Burlington International Airport.
Westphalen Photography
PC Construction
PC Construction
PC Construction
Related Stories
| Nov 18, 2014
New tool helps developers, contractors identify geographic risk for construction
The new interactive tool from Aon Risk Solutions provides real-time updates pertaining to the risk climate of municipalities across the U.S.
| Nov 18, 2014
5 big trends changing the world of academic medicine
Things are changing in healthcare. Within academic medicine alone, there is a global shortage of healthcare professionals, a changing policy landscape within the U..S., and new view and techniques in both pedagogy and practice, writes Perkins+Will’s Pat Bosch.
| Nov 18, 2014
Grimshaw releases newest designs for world’s largest airport
The airport is expected to serve 90 million passengers a year on the opening of the first phase, and more than 150 million annually after project completion in 2018.
| Nov 17, 2014
Nearly two years after Sandy Hook, the bloodshed continues
It’s been almost two years since 20 first-graders were shot and killed at Sandy Hook Elementary School in Newtown, Conn., but these incidents, both planned and random, keep occurring, writes BD+C's Robert Cassidy.
| Nov 17, 2014
Hospitality at the workplace: 5 ways hotels are transforming the office
During the past five years, the worlds of hospitality and corporate real estate have undergone an incredible transformation. The traditional approach toward real estate asset management has shifted to a focus on offerings that accommodate mobility, changing demographics, and technology, writes HOK's Eva Garza.
| Nov 17, 2014
Developments in 3D printing can assist architecture in the smallest details
Researchers at the Department of Energy’s Oak Ridge National Laboratory (ORNL) have developed a way for 3D printed metals to be produced with an unprecedented degree of precision.
| Nov 17, 2014
'Folded facade' proposal wins cultural arts center competition in South Korea
The winning scheme by Seoul-based Designcamp Moonpark features a dramatic folded facade that takes visual cues from the landscape.
| Nov 17, 2014
Workplace pilot programs: A new tool for creating workspaces employees love
In a recent article for Fast Company, CannonDesign's Meg Osman details how insurance giant Zurich used a workplace pilot program to empower its employees in the creation of its new North American headquarters.
| Nov 17, 2014
Mastering natural ventilation: 5 crucial lessons from design experts
By harnessing natural ventilation, Building Teams can achieve a tremendous reduction in energy use and increase in occupant comfort. Engineers from SOM offer lessons from the firm’s recent work.