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Ralph S· O’Connor 工程与科学大楼丨美国丨Skidmore,Owings & Merrill

2024/01/19 12:39:12
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Architects:Skidmore, Owings & Merrill
Area:251400ft²
Year:2023
Photographs:Dave Burk,Lucas Blair Simpson
Main Contractor:Anslow Bryant Construction LTD
Structural Engineer:IMEG Corp.
Landscape Architecture:OJB Landscape Architecture
Sustainability Consultant:SOM
Acoustics:Salter
MEP engineer:Wylie
Vertical Transportation:Edgett Williams Consulting Group
Lighting Design:Loisos + Ubbelohde
Geotechnical:Ulrich Engineers, Inc.
Local Architect, Programmer, Laboratory Planner:Scientia Architects
Lab Consultant:Jacobs Engineering Group, Inc.
Commissioning Agent:AEI
Civil Engineer:Walter P. Moore
Wayfinding:Ulrich Diederich Design
Fire Protection:Wylie
Av/Acoustics/Security Consultant:Stanton Engineering Group, LLC
City:Houston
Country:United States
Ralph S· O’Connor 工程与科学大楼丨美国丨Skidmore,Owings & Merrill-22
Text description provided by the architects. The newest and largest research facility in Rice University’s historic core campus — the Ralph S. O’Connor Building for Engineering and Science is now open. The 250,000-square-foot O’Connor Building provides students and researchers with technology-rich facilities that align with the University’s goal to stay at the forefront of scientific discovery and to recruit the country’s best scientific and engineering minds. Located on a 300-acre forested campus in Houston, Texas, Rice is consistently ranked among the nation’s top 20 universities by U.S. News & World Report and the O’Connor Building will only elevate this standing.
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An epicenter for interdisciplinary collaboration, the new high-performance facility includes state-of-the-art laboratories, classrooms, offices, a cafe, as well as many interactive gathering spaces. A multi-purpose event space with an outdoor terrace sits at the top level with views of the campus and the Houston skyline.
The design activates the adjacent Engineering Quad and extends the vitality of the campus into the building, where a five-story central atrium creates a hub of activity, connecting to seminar rooms, break areas, and informal gathering spaces. A transparent glass facade at the atrium’s ground level showcases this activity to the campus at large. At the building’s main entrance, a cantilevered sculptural stair is framed by brick walls and a fritted glass wall.
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The O’Connor Building was designed by SOM with a deliberate focus on fostering collaboration in four key research areas: advanced materials, quantum science and computing, urban research and innovation, and the energy transition. To promote this interaction, the stair tower and the central hub connect a series of stepped double-height collaboration areas on different levels. Intimate conference rooms and break areas with warm, natural materials provide further opportunities for informal learning and connection.
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Circulation through and around the building is encouraged, reinforcing the campus’s well-established pedestrian arcade network. A robust art program incorporates new works from world-recognized artists and the iconic bas-relief sculpture Energy by sculptor William McVey that was preserved from the original Abercrombie Engineering building.
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Maintaining the identifiable aesthetics of the historic campus, the facade of the O’Connor Building features a composition of brick and punched windows articulated by a series of angled brick pilasters and fins. The covered arcade along the western edge is shaded by a delicate brick and stone veil that modulates sunlight for thermal and visual comfort. The arcade veil is composed of alternating bands of brick and cast-stone modules, spaced apart with rotated bricks in between, allowing light to filter between the gaps.
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A commitment to sustainability and reducing the building's carbon footprint was achieved through both passive and active design strategies, including maximizing daylight, strategic placement of angled pilasters and vertical fins, and the use of skylights to soften the strong Texas sun. Thanks to these passive design strategies and an energy-efficient HVAC and lighting system, the laboratories use 50 percent less energy than a comparable research space.
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Project gallery
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Project location
Address:Campanile Rd, Houston, TX 77005, United States
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