flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Historic church gains energy efficiency, retains aesthetics with architecturally rated windows

Historic church gains energy efficiency, retains aesthetics with architecturally rated windows

New windows would need to not only stand the test of time, but also accommodate the aesthetics of an architecturally historic church.


By Posted by Tim Gregorski, Senior Editor | June 11, 2012
The newly installed windows offered an unexpected benefit for those who work in
The newly installed windows offered an unexpected benefit for those who work in the church offices. The church is located at the

After nearly half a century of use, Southminster Presbyterian Church’s steel window frames and single glass pane windows were in deplorable condition.

“About all they did was keep the rain and snow out but they let in all the heat and all the cold all of the time,” said the Rev. Dr. Daniel B. Merry, senior pastor, Southminster Presbyterian Church in Mt. Lebanon, a Pittsburgh suburb.

New windows would need to not only stand the test of time, but also accommodate the aesthetics of an architecturally historic church. The Norman Gothic style church was originally designed by renowned architect Thomas Pringle and built in 1928. An additional wing for educational programs and offices was added in the early 1950s. The educational wing includes the approximately 350 steel frame windows that needed to be replaced.

After receiving several bids from different companies, the Rev. Merry and Southminster Presbyterian Church chose GThurm windows from Graham Architectural Products.

“We thought GThurm windows were the best insulating window, and far superior to aluminum windows and their insulation value,” said the Rev. Merry. “We believe it is cutting-edge technology. We’d rather be on the front of the curve than the back of the curve.”

Graham Architectural Products’ GThurm high-efficiency windows are the first American-made, architecturally rated windows (AW) to feature thermal transmission measures as low as U 0.15 (R 7) using readily available insulating glass. The window lineals, which were created using the G2RP glass-reinforced polyurethane pultrusion process, offer improved dimensional stability, durability, thermal insulation and environmental friendliness over traditional windows. The polyurethane used to produce G2RP reinforced glass fibers is a unique polyurethane resin supplied by Bayer MaterialScience LLC that contains no volatile organic compounds (VOCs). Graham Architectural Products is a member of Bayer’s EcoCommercial Building (ECB) Network that strives to make net-zero energy buildings possible by bringing together leading companies that provide state-of-the-art product and service technologies.

“One of the primary benefits of the GThurm material technology is the lack of heat conduction,” said Jim Eisenbeis, director of marketing, Graham Architectural Products. “Aluminum is 700 times more heat conductive than our material, which is bad if you want to keep heat in or out of the building.”

Harry George, manager, new markets, Bayer MaterialScience LLC, said: “In this project, replacing the window frames alone provides significantly better thermal conductivity than the old steel frames. The GThurm product provides a more energy efficient window than a thermally broken aluminum window, or a steel frame window.”

Gibsonia, Pa.-based Windows Systems Inc. removed the old windows and installed the new models. The steel casement windows, originally installed with a fin that goes between the exterior stone and interior block wall, required an elaborate removal process, said Drake Core, vice president, Window Systems Inc.

One of the most important challenges was retaining the sight lines of the building even as the church requested a reduction of operable windows with fixed windows.

“This created a sight line issue,” Core said. “If one window opens and another one doesn’t, that affects the look from the outside due to the differing thickness. We downsized the fixed window and added to it so that it replicates an operable window and maintains a uniform appearance.”

Additionally, the presence of an on-site daycare facility required the installers to meet federal “renovate, repair, paint” regulations for lead paint. Core and his team went a step further and hired an outside consulting firm to monitor air quality and surfaces during and after the installation.

With those challenges solved, the installation of the new windows was cut and dried, he said. “It’s pretty much the same installation process as traditional aluminum windows,” Core said.

The newly installed windows offered an unexpected benefit for those who work in the church offices. The church is located at the corner of a busy main street and a cobblestone road. Two elementary schools and an emergency services department with a loud siren are also nearby. As such, the ambient neighborhood noise was often evident to people inside the church.

“After the project was completed, the first thing I noticed was the sound,” said the Rev. Merry. “The GThurm windows are so tight and well insulated that the quiet in the office and educational areas was immediately noticeable.

“And when the heat index soared to higher than 100 degrees for several days during a July 2011 heat wave, the offices with air conditioning units absolutely stayed cooler with the new windows than they had with the previous steel casement windows.”

Additionally, the windows provide not only improved insulation value but also superior strength. This is achieved through a pultrusion process in which 80 percent continuous stranded glass content is combined with 20 percent resin to produce window lineals, Eisenbeis explained.

Polyurethane chemistry offers many benefits over the chemistries traditionally used in the pultrusion process. Not only can polyurethane chemistries be customized on a project-by-project basis to provide greater strength, as well as better working and performance characteristics than polyesters, vinyl esters and epoxies; polyurethane resins are also free of the hazardous styrene emissions common to polyesters and vinyl esters.

Unlike traditional fiberglass window lineals, the GThurm window lineals pultruded with the G2RP require no additional reinforcement for structural integrity. The unique process allows for lightweight framing with superior structural performance and a thermal performance nearly triple that of ordinary architecturally-rated window products. The production of GThurm lineals is expected to use less energy per pound of raw materials than comparable aluminum designs, supporting a sustainable design.

“As government regulations ratchet up requirements for window insulation values, it will be increasingly difficult to install aluminum windows and meet requirements,” said Core. “The Southminster Presbyterian Church project demonstrates the viability of this new window technology.” +

Related Stories

MFPRO+ New Projects | Jun 27, 2024

Chicago’s long-vacant Spire site will be home to a two-tower residential development

In downtown Chicago, the site of the planned Chicago Spire, at the confluence of Lake Michigan and the Chicago River, has sat vacant since construction ceased in the wake of the Great Recession. In the next few years, the site will be home to a new two-tower residential development, 400 Lake Shore.

Codes and Standards | Jun 27, 2024

Berkeley, Calif., voters will decide whether to tax large buildings with gas hookups

After a court struck down a first-in-the-nation ban on gas hookups in new buildings last year, voters in Berkeley, Calif., will have their say in November on a measure to tax large buildings that use natural gas.

Mass Timber | Jun 26, 2024

Oregon State University builds a first-of-its-kind mass timber research lab

In Corvallis, Oreg., the Jen-Hsun Huang and Lori Mills Huang Collaborative Innovation Complex at Oregon State University aims to achieve a distinction among the world’s experimental research labs: It will be the first all-mass-timber lab meeting rigorous vibration criteria (2000 micro-inches per second, or MIPS).

Sustainability | Jun 26, 2024

5 ways ESG can influence design and create opportunities

Gensler sustainability leaders Stacey Olson, Anthony Brower, and Audrey Handelman share five ways they're rethinking designing for ESG, using a science-based approach that can impact the ESG value chain.

Student Housing | Jun 25, 2024

P3 student housing project with 176 units slated for Purdue University Fort Wayne

A public/private partnership will fund a four-story, 213,000 sf apartment complex on Purdue University Fort Wayne’s (PFW’s) North Campus in Fort Wayne, Indiana. The P3 entity was formed exclusively for this property.

Sustainability | Jun 24, 2024

CBRE to use Climate X platform to help clients calculate climate-related risks

CBRE will use risk analysis platform Climate X to provide climate risk data to commercial renters and property owners. The agreement will help clients calculate climate-related risks and return on investments for retrofits or acquisitions that can boost resiliency.

MFPRO+ News | Jun 24, 2024

‘Yes in God’s Backyard’ movement could create more affordable housing

The so-called “Yes in God’s Backyard” (YIGBY) movement, where houses of worship convert their properties to housing, could help alleviate the serious housing crisis affecting many communities around the country.

Student Housing | Jun 20, 2024

How student housing developments are evolving to meet new expectations

The days of uninspired dorm rooms with little more than a bed and a communal bathroom down the hall are long gone. Students increasingly seek inclusive design, communities to enhance learning and living, and a focus on wellness that encompasses everything from meditation spaces to mental health resources.

Museums | Jun 20, 2024

Connecticut’s Bruce Museum more than doubles its size with a 42,000-sf, three-floor addition

In Greenwich, Conn., the Bruce Museum, a multidisciplinary institution highlighting art, science, and history, has undergone a campus revitalization and expansion that more than doubles the museum’s size. Designed by EskewDumezRipple and built by Turner Construction, the project includes a 42,000-sf, three-floor addition as well as a comprehensive renovation of the 32,500-sf museum, which was originally built as a private home in the mid-19th century and expanded in the early 1990s. 

Building Technology | Jun 18, 2024

Could ‘smart’ building facades heat and cool buildings?

A promising research project looks at the possibilities for thermoelectric systems to thermally condition buildings, writes Mahsa Farid Mohajer, Sustainable Building Analyst with Stantec.

boombox1
boombox2
native1

More In Category




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