In early September, the Hong Kong University of Science and Technology (HKUST) officially opened its new, KPF-designed campus in Nansha, Guangzhou (GZ). The carbon-neutral-ready campus was planned, designed, and built in three years’ time, with a project team comprising over 70 architects and planners across KPF offices in New York, Shanghai, Hong Kong, and Singapore.
The project’s first phase includes nearly 6 million square feet (about 550,000 square meters) for over 4,000 graduate students and 400 faculty members. It provides research facilities for subjects such as robotics and autonomous systems, smart manufacturing and transportation, microelectronics, and atmosphere and ocean systems.
Rather than following a traditional academic structure based on schools and disciplines, HKUST(GZ) centers around a project-based learning model that encourages multi-disciplinary interactions. The campus features eight research and lab buildings, connected by shaded arcades, and a full range of teaching spaces, including seminar classrooms, labs, large lecture halls, maker spaces, and collaborative workspaces.
“Landscape and building spaces come together to create an atmosphere where scientists will be energized and inspired to innovate,” James von Klemperer, KPF president, said in a statement.
From day one, HKUST(GZ) achieves a 54 percent reduction of carbon emissions, with a goal of reaching carbon neutrality before 2060. The plan’s environmental and resiliency measures have been designed for Guangzhou’s hot, humid climate and the rapidly urbanizing area’s flooding, seismic, and climate change risks.
When complete, the campus will accommodate more than 10,000 students and faculty. And it will integrate teaching and learning facilities with housing, neighborhood and campus retail, student life programs, administration, hotel, office and incubator spaces, and athletics facilities.
The HKUST(GZ) campus adds to KPF’s portfolio of research, innovation, and academic facilities around the world, including the CUNY Advanced Science Research Centers in New York City, the University of Michigan’s Detroit Center for Innovation, and NYU’s new Qiantan campus in Shanghai.
On the Building Team:
Owner: Hong Kong University of Science and Technology
Design architect: Kohn Pedersen Fox (KPF)
Architect of record: SCAD (Architectural Design & Research Institute of South China University of Technology Co.)
MEP engineer: ARUP
Structural engineer: ARUP
Landscape design: James Corner Field Operations
General contractor/construction manager: central hub: China Railway First Group Co. and China Railway Guangzhou Engineering Group Co.; other areas:
Canton One Construction Group Co. and Guangzhou Construction Engineering Co.
Related Stories
| Jun 12, 2014
Tod Williams Billie Tsien Architects' design selected for new UCSC facility
The planned site is a natural landscape among redwood trees with views over Monterey Bay, a site that the architects have called “one of the most beautiful they have ever worked on.”
| Jun 12, 2014
Austrian university develops 'inflatable' concrete dome method
Constructing a concrete dome is a costly process, but this may change soon. A team from the Vienna University of Technology has developed a method that allows concrete domes to form with the use of air and steel cables instead of expensive, timber supporting structures.
| Jun 11, 2014
5 ways Herman Miller's new office concept rethinks the traditional workplace
Today's technologies allow us to work anywhere. So why come to an office at all? Herman Miller has an answer.
| Jun 9, 2014
6 design strategies for integrating living and learning on campus
Higher education is rapidly evolving. As we use planning and design to help our clients navigate major shifts in culture, technology, and funding, it is essential to focus on strategies that help foster an education that is relevant after graduation. One way to promote relevance is to strengthen the bond between academic disciplines and the campus residential life experience.
| May 29, 2014
7 cost-effective ways to make U.S. infrastructure more resilient
Moving critical elements to higher ground and designing for longer lifespans are just some of the ways cities and governments can make infrastructure more resilient to natural disasters and climate change, writes Richard Cavallaro, President of Skanska USA Civil.
Sponsored | | May 27, 2014
Grim Hall opens the door to fire safety with fire-rated ceramic glass
For the renovation of Lincoln University’s Grim Hall life sciences building into a state-of-the-art computer facility, Tevebaugh Associates worked to provide students and faculty with improved life safety protection. Updating the 1925-era facility's fire-rated doors was an important component of the project.
| May 20, 2014
Kinetic Architecture: New book explores innovations in active façades
The book, co-authored by Arup's Russell Fortmeyer, illustrates the various ways architects, consultants, and engineers approach energy and comfort by manipulating air, water, and light through the layers of passive and active building envelope systems.
| May 19, 2014
What can architects learn from nature’s 3.8 billion years of experience?
In a new report, HOK and Biomimicry 3.8 partnered to study how lessons from the temperate broadleaf forest biome, which houses many of the world’s largest population centers, can inform the design of the built environment.
| May 13, 2014
19 industry groups team to promote resilient planning and building materials
The industry associations, with more than 700,000 members generating almost $1 trillion in GDP, have issued a joint statement on resilience, pushing design and building solutions for disaster mitigation.
| May 11, 2014
Final call for entries: 2014 Giants 300 survey
BD+C's 2014 Giants 300 survey forms are due Wednesday, May 21. Survey results will be published in our July 2014 issue. The annual Giants 300 Report ranks the top AEC firms in commercial construction, by revenue.