Houston’s Rice University has opened the largest research facility on its core campus: the $152 million Ralph S. O’Connor Building for Engineering and Science.
Designed by Skidmore, Owings & Merrill (SOM), the 251,400-sf, five-story O’Connor Building provides students and researchers with state-of-the-art laboratories, classrooms, offices, and a cafe, in addition to multiple gathering spaces. On the top level, a multipurpose event space with an outdoor terrace offers views of the campus and the Houston skyline.
A five-story central atrium serves as an activity hub, connecting to seminar rooms, break areas, and informal gathering spaces. On the atrium’s ground level, a transparent glass façade displays this activity to the larger campus. At the building’s main entrance, brick walls and a fritted glass wall frame a cantilevered sculptural stair.
Passive and Active Design Strategies for Research Facilities
SOM’s design intends to foster collaboration in four research areas: advanced materials, quantum science and computing, urban research and innovation, and the energy transition. Promoting this interaction, the stair tower and the central hub connect a series of stepped double-height collaboration areas on different levels. Conference rooms and break areas offer more opportunities for informal learning and connection.
In line with the historic campus’s aesthetics, the O’Connor Building’s façade features brick and punched windows with angled brick pilasters and fins. Along the western edge, a covered arcade is shaded by a brick and stone veil. The arcade veil comprises alternating bands of brick and cast-stone modules, with rotated bricks in between, so light can enter between the gaps.
Both passive and active design strategies include maximizing daylight, strategic placement of the angled pilasters and vertical fins, and the use of skylights to soften the strong Texas sun. As a result of the passive design strategies, as well as an energy-efficient HVAC and lighting system, the laboratories use 50% less energy than a comparable research space.
On the Building Team:
Architect: Skidmore, Owings & Merrill
Structural engineer: IMEG Corp.
Local architect, programmer, laboratory planner: Scientia Architects
Lab consultant: Jacobs Engineering Group, Inc.
Civil engineering: Walter P Moore
Mechanical, electrical, plumbing: Wylie
Landscape: OJB Landscape Architecture
Contractor: Anslow-Bryant Construction
Related Stories
| May 10, 2014
How your firm can gain an edge on university projects
Top administrators from five major universities describe how they are optimizing value on capital expenditures, financing, and design trends—and how their AEC partners can better serve them and other academic clients.
| May 1, 2014
First look: Cal State San Marcos's posh student union complex
The new 89,000-sf University Student Union at CSUSM features a massive, open-air amphitheater, student activity center with a game lounge, rooftop garden and patio, and ballroom space.
| Apr 29, 2014
USGBC launches real-time green building data dashboard
The online data visualization resource highlights green building data for each state and Washington, D.C.
Smart Buildings | Apr 28, 2014
Cities Alive: Arup report examines latest trends in urban green spaces
From vertical farming to glowing trees (yes, glowing trees), Arup engineers imagine the future of green infrastructure in cities across the world.
| Apr 16, 2014
Upgrading windows: repair, refurbish, or retrofit [AIA course]
Building Teams must focus on a number of key decisions in order to arrive at the optimal solution: repair the windows in place, remove and refurbish them, or opt for full replacement.
| Apr 9, 2014
Steel decks: 11 tips for their proper use | BD+C
Building Teams have been using steel decks with proven success for 75 years. Building Design+Construction consulted with technical experts from the Steel Deck Institute and the deck manufacturing industry for their advice on how best to use steel decking.
| Apr 8, 2014
Science, engineering find common ground on the Northeastern University campus [slideshow]
The new Interdisciplinary Science and Engineering Building is designed to maximize potential of serendipitous meetings between researchers.
| Apr 2, 2014
8 tips for avoiding thermal bridges in window applications
Aligning thermal breaks and applying air barriers are among the top design and installation tricks recommended by building enclosure experts.
| Mar 26, 2014
Callison launches sustainable design tool with 84 proven strategies
Hybrid ventilation, nighttime cooling, and fuel cell technology are among the dozens of sustainable design techniques profiled by Callison on its new website, Matrix.Callison.com.
| Mar 20, 2014
Common EIFS failures, and how to prevent them
Poor workmanship, impact damage, building movement, and incompatible or unsound substrate are among the major culprits of EIFS problems.