Pennsylvania State University Engineering Collaborative Research & Education Building

The new Engineering Collaborative Research & Education Building (ECoRE) on the West Campus of The Pennsylvania State University (PSU) is a 5-story, 280,000 SF facility housing a comprehensive research and teaching program. The ECoRE Building features specialized research laboratories, active-learning classrooms, faculty offices, departmental headhouses, and administrative support space.  An atrium provides vertical connectivity between levels with natural daylight and visible interconnection between the various uses present.

Serving as the project’s code consultant, Code Red Consultants was responsible for developing and presenting the building’s code compliance approach to the Authorities Having Jurisdiction.  Working with architect Payette, our services included building, fire, accessibility, hazardous chemical code consulting, and performance-based design analysis of the atrium smoke control system using a computational fluid dynamics computer model.

Location

University Park, PA

Size

5 stories
280,000 SF

Completion

2023

Rending Credit

Payette

Pennsylvania State University Engineering Collaborative Research & Education Building

The new Engineering Collaborative Research & Education Building (ECoRE) on the West Campus of The Pennsylvania State University (PSU) is a 5-story, 280,000 SF facility housing a comprehensive research and teaching program. The ECoRE Building features specialized research laboratories, active-learning classrooms, faculty offices, departmental headhouses, and administrative support space.  An atrium provides vertical connectivity between levels with natural daylight and visible interconnection between the various uses present.

Serving as the project’s code consultant, Code Red Consultants was responsible for developing and presenting the building’s code compliance approach to the Authorities Having Jurisdiction.  Working with architect Payette, our services included building, fire, accessibility, hazardous chemical code consulting, and performance-based design analysis of the atrium smoke control system using a computational fluid dynamics computer model.