flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Channel glass illuminates science at the University of San Francisco

Sponsored Content

Channel glass illuminates science at the University of San Francisco

In implementing the design vision, one challenge was to create an attention-grabbing, garden-level façade that satisfies acoustic and thermal performance demands. 


By Technical Glass Products | July 7, 2014
Channel glass exterior faade. Photo: Technical Glass Products/NBBJ
Channel glass exterior faade. Photo: Technical Glass Products/NBBJ

Project: University of San Francisco, John Lo Schiavo, S.J. Center for Science and Innovation
Location: San Francisco
Architect: NBBJ
Glass: Pilkington Profilit™ translucent channel glass system with Lumira® aerogel insulation
Glass Supplier: Technical Glass Products

 

The University of San Francisco’s new John Lo Schiavo Center for Science and Innovation (CSI) brings science to the forefront of academic life. Its glossy, three-story exterior invites students into the facility, and then flows sleekly down into the hillside where below-grade laboratories and classrooms make efficient use of space on the landlocked campus. 

For NBBJ architects, the inspiration for the new building came from the faculty’s desire to bring passion to the study of science within the USF academic curriculum. “A key driver behind the CSI was to put science on display and create buzz within the student body,” says Lilian Asperin-Clyman, principal at NBBJ. 

To meet functional demands and generate the desired interest in the science facility, the design team looked to high-performance materials. A curtain wall with fritted glass and flexible shades provides students with views to informal learning areas and outdoor spaces to encourage scientific discovery.

Skylights and glazed teaching walls with a writable surface and visual connectivity help bathe lower, “garden level” education areas in sunlight to blur the boundary between above- and below-grade. Sloped walkways promote seamless circulation between the building’s main campus and garden-level spaces.

 


Glazed channel glass corridor uses borrowed light. Photo: Technical Glass Products/NBBJ

 

In implementing the design vision, one challenge was to create an attention-grabbing, garden-level façade that satisfies acoustic and thermal performance demands. NBBJ found their solution with Pilkington Profilit™ channel glass from Technical Glass Products (TGP). 

The linear, “U”-shaped, cast-glass channels are self-supporting and mounted in an extruded metal perimeter frame. In the case of CSI, they were installed vertically, forming tight radii as they animate and follow the curve of the building’s adjacent walkway. The combination of raked and curved channel glass heads and sills make the size and positioning of each channel glass piece unique, and allow the façade to transition between curved and straight sections. The lighting strategy where channel glass is used creates a dramatic “lantern” effect that contributes to the character of the exterior spaces after dark.  

At the CSI’s main-level entrance, a second layer of channel glass mirrors a portion of the exterior channel glass façade to create a glazed corridor. Its clear channel glass interior and translucent channel glass exterior combine to create what San Francisco Chronicle architecture critic John King hailed as the building’s “most potent architectural treat.” 

“The glazed hallway adds dynamism to the building by highlighting the silhouette of students walking inside,” adds Asperin-Clyman. “It also improves safety on campus by allowing borrowed light to spill out from the building on to an area frequently traversed by students, faculty and visitors.” The sloped walkway complies with ADA accessibility requirements and connects the entrance lobby to the entry to the main lecture hall.

Both the exterior façade and glazed channel glass hallway help the design team meet thermal and acoustic performance goals. The design incorporates clear channel glass with a low-emissivity coating in a custom painted thermally improved frame with head receptor. In select locations, the use of Lumira® aerogel in the enclosed space between the channels helps enhance energy performance and reduce sound transmission.

“By using unique, structurally sound and high-performing materials like Pilkington Profilit channel glass, we were able to experiment with geometry, layering and lighting to create spaces that not only attract students, but also satisfy the facility’s highest functional requirements,” concludes Asperin-Clyman. 

Today, the innovative CSI building embodies the university’s mission to bring science and discovery into the everyday lives of students. It is designed to LEED Gold standards. 

For more information on Pilkington Profilit, along with TGP’s other specialty architectural glass and framing products, visit tgpamerica.com

Technical Glass Products
800.426.0279
800.451.9857 – fax
sales@tgpamerica.com
tgpamerica.com 

Related Stories

| Sep 9, 2011

Kauffman Center for the Performing Arts in Kansas City opens this month

Theatre Projects played the lead role in theatre design and planning as well as in engineering the customized theatre equipment. BNIM in Kansas City served as the executive architect.

| Sep 9, 2011

$22 million investment made in energy efficient building maker

The buildings use at least 25% less energy than the strictest building codes in the U.S., and as much as 80% less energy in certain parts of the country. 

| Sep 8, 2011

Two promoted at ajc architects

ajc architects announced the promotion of Joshua W. Greene, AIA, NCARB, LEED Green Associate to Associate Principal of the firm. The firm also announced that Kent Rigby, AIA, has been promoted to Associate Architect.

| Sep 7, 2011

KSS Architects wins AIA NJ design award

The project was one of three to win the award in the category of Architectural/Non-Residential. 

| Sep 7, 2011

Administration, Maintenance and Operations Facility in South Bend achieves LEED Platinum

The facility achieved 52 LEED points, including those for site selection, energy, materials and resources and innovation.

| Sep 6, 2011

Construction on Beijing's tallest building starts next week

The 108 floor mixed-use skyscraper consists of offices, apartments, hotels and shopping malls on the lower floors.

| Aug 31, 2011

Sebastopol, Cailf., invites designers to submit ideas for renewing city center

The goal of The Core Project is to explore how the physical presence of Sebastopol can become a more economically thriving and aesthetically vibrant place, reflecting the naturally beauty of the region and the character of the community. 

| Aug 31, 2011

Wythe Confectionary renovation in Brooklyn completed

Renovation retains architectural heritage while reflecting a modern urban lifestyle.

| Aug 24, 2011

Deadline Extended: 2012 "Best AEC Firms to Work For” Awards

We’re looking for firms that create truly positive workplaces for their AEC professionals and support staff. In other words, this awards program will recognize those AEC firms that nurture and develop their most valuable asset—their people.

boombox1
boombox2
native1

More In Category

Healthcare Facilities

Watch on-demand: Key Trends in the Healthcare Facilities Market for 2024-2025

Join the Building Design+Construction editorial team for this on-demand webinar on key trends, innovations, and opportunities in the $65 billion U.S. healthcare buildings market. A panel of healthcare design and construction experts present their latest projects, trends, innovations, opportunities, and data/research on key healthcare facilities sub-sectors. A 2024-2025 U.S. healthcare facilities market outlook is also presented.




halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021