Chiller Plant Optimization Saves Energy

chiller plant

The Institute for Bioscience and Biotechnology Research on the University of Maryland campus cut energy use an average of 30 percent by optimizing its chiller plant.

When the University of Maryland committed to reducing its energy consumption 20 percent by 2020, James Johnson, director of facilities and lab services, had to find a way to make the 110,000-square-foot Institute for Bioscience and Biotechnology Research (IBBR) more efficient.

The biggest target was the facility’s environmental stabilization plant, “as big an energy pig as there was out there,” says Johnson. The plant was only five years old and had few operational issues, but a consultation with Optimum Energy engineers revealed that optimizing each piece of HVAC equipment individually, as part of the whole system, could increase efficiency considerably.

Johnson also wanted to improve reliability and redundancy. IBBR connects top scientists in interrelated fields to perform world-class bioscience and biotechnology research that leads to real-world advances, and anything that stabilizes lab environments furthers the mission. Plus, Johnson had to ensure the facility’s two 450-ton, variable-speed electric centrifugal water chillers — which provide 3,800 hours of cooling annually — would work at optimal levels regardless of outside conditions, from icy winters to steamy summers.

To accomplish these goals, IBBR converted to an all-variable flow plant, with Optimum Energy’s OptiCx™ Platform as the optimization and control layer. OptimumLOOP ™ software calculates the most efficient operation of the chilled water system and optimizes plant performance in real time, dynamically adapting to changes in load, weather and occupancy to yield the lowest possible kW/ton while maintaining the optimal temperature.

In the first year, output almost doubled — yet IBBR cut energy use by an average of 30 percent.

“Prior to optimizing, in 2014, the plant baseline was about 0.9 kW/ton. By the end of 2015, it was 0.57–0.65 kW/ton,” Johnson says. “I’ve got a plant that is running at absolute maximum efficiency.”

optimumenergyco.com

This article originally appeared in the issue of .

Featured

  • Kimball International Launches Season 5 of Alternative Design Podcast

    Commercial furnishings manufacturer Kimball International recently premiered the fifth season of its Alternative Design podcast, according to a news release. The first episode was released on March 17, and new episodes will launch monthly. The podcast discusses forces that shape built environments, from work to housing to healthcare to human wellness.

  • Florida Elementary School to Undergo $47M Reconstruction

    The School District of Osceola County in Kissimmee, Fla., recently announced a partnership with construction firm Skanska to reconstruct Reedy Creek Elementary School, according to a news release. The $47-million project will involve the new construction of a 96,000-square-foot academic center, renovating the remaining facilities, a full-site redevelopment, and demolishing portions of the existing school.

  • Rice University to Build New Student Life Complex

    Rice University in Houston, Texas, recently announced that a groundbreaking ceremony for the upcoming Moody Center Complex for Student Life (MCCSL) will take place on May 8, 2025, according to a university news release. The 75,000-square-foot facility was designed by architecture firm Olson Kundig with Page serving as executive architect, and it has an estimated completion date of fall 2027.

  • New Kent State Academic Building Earns LEED Silver Certification

    Kent State University in Kent, Ohio, recently announced that its newest academic building, Crawford Hall, has earned a LEED Silver certification from the U.S. Green Building Council, according to a news release. The facility was recognized for its innovative design, water conservation technologies, energy-efficient systems, and sustainable construction materials, among other features.

Digital Edition