flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Full Steam Ahead for Sustainable Power Plant

Full Steam Ahead for Sustainable Power Plant

An innovative restoration turns a historic but inoperable coal-burning steam plant into a modern, energy-efficient marvel at Duke University.


By By Jay W. Schneider, Editor | October 12, 2010

As recently as 2008, Duke University’s East Campus steam plant was an overgrown ruin. The former coal-burning plant had been shuttered for more than 30 years, it was covered in vines, and its roof had turned into a forest. Plant roots tore away at the 80-year-old brick façade, in some cases boring right through the 30-inch-thick walls, cracking them and shifting them out of plane and causing massive damage.

Despite these problems, the university saw value in repurposing the historic facility, and in June 2008, an $18.9 million sustainable renovation began that transformed the 6,341-sf building into a modern, efficient natural gas-burning steam facility. Duke engaged the Building Team of SmithGroup (architect), RMF Engineering (MEP),  and Balfour Beatty (GC) to tackle the project, which is seeking LEED Gold.

The plant’s defunct coal-burning equipment was replaced by 15 energy-efficient Miura boilers, specifically chosen because their modular nature allowed them to be squeezed into the existing space better than traditional fire-tube and water-tube boilers. Even so, the Building Team had to construct a mezzanine to allow the new boilers to be stacked vertically. The Miura boilers produce steam much faster than traditional boilers, with a cold-to-steaming rate of less than five minutes, which reduces energy loss associated with startup, purge, and warm-up cycles. The boilers also have a factory-installed feedwater economizer that minimizes waste heat through the flue gas, increasing boiler efficiency by about 5%.

To further increase efficiency, the Building Team incorporated a blowdown heat recovery system that aids water savings by eliminating use of cooling water to temper the blowdown before it enters the sewer system. The coal-to-gas conversion helped Duke reduce its coal consumption by 70%. The facility itself operates 33% more efficiently than a baseline building.

As for the crumbling plant itself, the Building Team took on the restoration of the 1928 facility, which was designed by Horace Trumbauer, the architect behind numerous buildings on the Duke University campus.

Damage caused by years of neglect was remedied by rebuilding areas where masonry couldn’t be repaired, then cleaning and repointing brick that could be saved. A new cast-in-place roof deck was installed, along with a high-albedo, single-ply roof membrane. The building’s existing steel windows could not be salvaged, so they were replaced with new steel units that matched the profile of the originals. Low-e glazing was used on windows in the plant’s conditioned spaces; these same spaces were also insulated for greater efficiency. An old railroad trestle, which at one time brought coal cars up to the roof of the steam plant, was restored and the existing rooftop steel coal shed was rebuilt with corrugated fiberglass panels; now the coal shed glows at night.

In total, the Building Team was able to reuse 90% of the existing facility and diverted 85% of construction waste from landfills, a strong indication of the Building Team’s concerted effort to reuse or repurpose as much existing material as possible. For example, the original coal chutes were reused as part of the plant’s ventilation system; an old deaerator tank was put to use as a rainwater storage tank (rainwater is used within the plant to flush toilets); and old valves and wood floor decking were used to build benches for the terrace. Items that weren’t reused were donated to campus and community arts groups.

The project’s imaginative reuse of old elements and the careful addition of new ones caught the attention of our Reconstruction Awards judges. “It’s so carefully thought out,” said Walker Johnson, principal of Chicago-based Johnson Lasky Architects and honorary chair of the awards panel. “It’s absolutely one of the most unique projects,” said Darlene Ebel, Director of Facility Information Management at the University of Illinois at Chicago.

Summing up the judges’ reaction, George Tuhowski, Director of Sustainability for Leopardo Construction, Hoffman Estates, Ill., said: “They maintained a university icon. It’s functional, but it’s also a showpiece.” BD+C

PROJECT SUMMARY

Building Team

Submitting firm: SmithGroup (architect)

Owner: Duke University

CM: Balfour Beatty

MEP: RMF Engineering

General Information

Size: 6,341 gsf

Construction cost: $18.91 million

Construction time: June 2008 to July 2010

Delivery method: CM at risk

Related Stories

| Apr 5, 2011

Top 10 Buildings: Women in Architecture

Making selections of top buildings this week led to a surprising discovery about the representation of women in architecture, writes Tom Mallory, COO and co-founder, OpenBuildings.com. He discovered that finding female-created architecture, when excluding husband/wife teams, is extremely difficult and often the only work he came across was akin to interior design.

| Apr 5, 2011

What do Chengdu, Lagos, and Chicago have in common?

They’re all “world middleweight cities” that are likely to become regional megacities (10 million people) by 2025—along with Dongguan, Guangzhou, Hangzhou, Shenzhen, Tianjin, and Wuhan (China); Kinshasa (Democratic Republic of the Congo); Jakarta (Indonesia); Lahore (Pakistan); and Chennai (India), according to a new report from McKinsey Global Institute: “Urban World: Mapping the economic power of cities”.

| Mar 30, 2011

China's low-carbon future city

In 2005, the Chinese government announced its target to reduce energy consumption per GDP unit by 20% by the year 2010. After a multi-billion investment, that target has been reached. The Chinese Climate Protection Program’s goal to increase energy efficiency, develop renewable energies, and promote energy savings while reducing pollutant emissions and strengthening environmental protection is reflected in the “Future City” by SBA Design.

| Mar 30, 2011

Is the AEC industry at risk of losing its next generation leaders without better mentoring?

After two or three horrifying years for the AEC industry, we are finally seeing the makings of a turnaround. However, data developed by Kermit Baker as part of the AIA Work-on-the-Boards survey program indicates that between 17% and 22% of design firms are eliminating positions for interns and staff with less than six years of experience. This data suggests the industry is at risk of losing a large segment of its next generation of leaders if something isn't done to improve mentoring across the profession.

| Mar 29, 2011

City's design, transit system can ease gas costs

Some cities in the U.S. are better positioned to deal with rising gas prices than others because of their design and transit systems, according to CEOs for Cities, a Chicago-based nonprofit that works to build stronger cities. The key factor: whether residents have to drive everywhere, or have other options.

| Mar 29, 2011

Chicago’s Willis Tower to become a vertical solar farm

Chicago’s iconic Willis Tower (formerly the Sears Tower) is set to become a massive solar electric plant with the installation of a pilot solar electric glass project.

| Mar 29, 2011

Read up on Amazon.com's new green HQ

Phase IV of Amazon’s new headquarters in Seattle is nearly complete. The company has built 10 of the 11 buildings planned for its new campus in the South Lake Union neighborhood, and is on-track for a 2013 grand opening.

| Mar 29, 2011

Portuguese architect Eduardo Souto de Moura wins Pritzker Architecture Prize

Portugese architect Eduardo Souto de Moura, whose precisely-honed buildings reflect the influence of the late Chicago modernist Mies van der Rohe, is the 2011 winner of the Pritzker Architecture Prize, the field's highest honor.

boombox1
boombox2
native1

More In Category


Urban Planning

Bridging the gap: How early architect involvement can revolutionize a city’s capital improvement plans

Capital Improvement Plans (CIPs) typically span three to five years and outline future city projects and their costs. While they set the stage, the design and construction of these projects often extend beyond the CIP window, leading to a disconnect between the initial budget and evolving project scope. This can result in financial shortfalls, forcing cities to cut back on critical project features.



Libraries

Reasons to reinvent the Midcentury academic library

DLR Group's Interior Design Leader Gretchen Holy, Assoc. IIDA, shares the idea that a designer's responsibility to embrace a library’s history, respect its past, and create an environment that will serve student populations for the next 100 years.

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