flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

PVs play new roles as a teaching tool

PVs play new roles as a teaching tool

Solar installations are helping K-12 schools around the country save money and teach students the intricacies of renewable energy sources.


By By Susan Bady, Contributing Editor | September 12, 2011
Solar thermal collectors, oriented vertically on the wall, heat water for the Walking Mountains Science Center in Avon, Colo.
This article first appeared in the September 2011 issue of BD+C.

Federal and state incentives have sparked renewed interest in solar photovoltaic systems as a way for K-12 schools to lower their utility bills and, at the same time, educate students about the benefits of solar and other alternative energy sources.

Solar PV providers in California, Colorado, Massachusetts, New Jersey, and Utah are partnering with school districts to install solar equipment and develop a teaching curriculum. Funding can come from a variety of government and private sources, with the bulk coming from the American Reinvestment and Recovery Act of 2009.

Some organizations are sponsoring their own solar-school initiatives in conjunction with the National Energy Education Development Project (NEED). The Walmart Foundation is partnering with NEED and the Foundation for Environmental Education to implement solar schools in five cities: Chicago, Los Angeles, Minneapolis, Seattle, and Washington, D.C.

UTAH PUTS THE SUN TO WORK

Utah’s Solar for Schools program was launched in 2010, after the state received ARRA funding to install and promote renewable energy. The Salt Lake City office of Johnson Controls, Inc. won a $3 million bid to install solar in 73 Utah schools. Thus far, 55 installations had been completed.

Oscar Rangel, JCI’s manager of public-sector solutions, based in Denver, says the company’s system will save $7.75 per watt, for a potential annual savings of $800-1,200. Rangel stresses that there’s more to the program than putting panels on the roof: “There’s also an educational component that involves the teachers, the kids, and the administration.” 

In an intensive one-day workshop developed by Johnson Controls and the National Energy Foundation, teachers from around the Beehive State were exposed to curriculum materials that are correlated to state and national standards. NEF educators provide on-site teacher training geared to children from elementary school through high school.

“The labs are very hands-on, with activities that engage the students in learning not just about solar, but all different kinds of alternative energy,” says one participant, Laura Wheeler, who teaches middle school and high school in Morgan, Utah.

In one lab, students learn how to configure solar panels to generate the most power. (Another lab challenges them to see who can build the best wind generator.) There’s also a program where students patrol the building to monitor and report on energy usage. Johnson Controls is supplying software that links all the solar schools in Utah, allowing students to compare their school’s performance with that of others.

A typical installation consists of a 5.3-kW solar PV module, which can provide enough electricity to power the computer lab and a few classrooms or a library, Rangel says. That may not sound like much, but don’t tell that to teacher Laura Wheeler. “Even if we’re just lighting a library with solar, that’s a big deal to our school,” she says. “We’re in a very small, rural school district, so every penny we save goes a long way.”

CALIFORNIA RAMPS UP SOLAR IN SCHOOLS

With the California Solar Initiative, a statewide solar rebate program, California’s public sector is forecasted to save $2.5 billion from solar installations over the 30-year life of the systems. Educational institutions are expected to save approximately $1.5 billion of the total, according to SunPower Corp., a solar provider based in San Jose, Calif. The California School Boards Association recently announced Solar Schools, a program that supports school districts in developing efficient solar projects. Districts borrow ARRA funds and the federal government subsidizes the interest rate, meaning that loans are repaid at an average rate of 1.5%.

Interest in solar for schools has been accelerating due to a growing emphasis on energy conservation. “Currently, we have installations planned or under way in more than 90 schools,” says Bill Kelly, SunPower’s managing director. “It’s keeping us busy along with local electricians, steel fabricators, and erectors, so we’re also stimulating the local economy.”

The SunPower systems range from 100 kW to 1,000 kW. “The larger systems are for high schools,” Kelly says. “On average, in the schools we’re working with, 75-80% of the electric bill is offset or reduced by solar.”

Most solar panels are designed for parking lots rather than rooftops, he says. The panels form a canopy over the cars, with the secondary benefit of providing shade during hot weather.

As in Utah, California’s school districts want to not only invest in solar but also bring information about the technology into the classroom.

“Many of the school districts have engineering academies, and we’re working with them to develop a renewable energy curriculum,” says Kelly.

Recently, 16 high school students from the San Ramon Valley Unified School District completed a two-week course sponsored by SunPower.

“They learned everything about solar that you could cram into two weeks,” says SunPower’s Madeleine Maguire. “The idea is to create solar ambassadors so that they can teach their peers about this technology.”  

CHECKING SOLAR’S AFFORDABILITY

With solar, first cost is still the issue for property owners and their Building Teams. The price of PV panels has fallen in the last two years due to greater efficiencies in manufacturing and technology, as well as increased competition among a growing number of suppliers.

According to the market intelligence firm IHS iSuppli, in 2009 the cost per watt for a PV solar panel was nearly $2.50. By 2015, that cost is expected to drop to as low as $1, or roughly $200 per panel. Installation prices, too, are expected to decrease about 10% a year—from $5 per watt to around $3 per watt by 2015, according to IHS. The worldwide PV market is poised to double by 2015, with the U.S. market growing steadily.

SunPower’s Kelly agrees that first cost is a constraint: “Even though solar has great economics for the long term, building owners need to watch their budgets.” Still, he urges Building Teams not to miss out on rebates by waiting for prices to go down. “In California, at least, the sooner you install it the bigger the incentive you get,” he says. 

SIDEBAR: Science School Raises the Green Bar

The Walking Mountains Science Center in Avon, Colo., is on target to be certified LEED Platinum, but that wasn’t the Building Team’s primary goal. “We didn’t want to just talk the talk,” says Barry Monroe, LEED AP, project manager for local builder R.A. Nelson and Associates. “We wanted to do everything we could to make the building as green and as energy efficient as possible.” The facility will act as an experiential learning center for adults and children, as well as a model of sustainability.

Designed by Avon-based architects Zehren & Associates, the building produces 42% of its own electricity on site. PV solar panels on two south-facing roofs create energy, and a heat capture system harvests excess heat from the electrical equipment room and transfers it to domestic hot water. The sun also generates heat for the radiant in-floor system.

“Sun shades are part of the solar component and work in conjunction with daylighting to reduce heat gain inside the building,” Monroe says. The building is not air conditioned.

Students will monitor the building’s energy and water usage via a computerized dashboard. The solar system is expected to save about $6,000 a year in energy costs. 

Related Stories

Laboratories | Jun 23, 2023

A New Jersey development represents the state’s largest-ever investment in life sciences and medical education

In New Brunswick, N.J., a life sciences development that’s now underway aims to bring together academics and researchers to work, learn, and experiment under one roof. HELIX Health + Life Science Exchange is an innovation district under development on a four-acre downtown site. At $731 million, HELIX, which will be built in three phases, represents New Jersey’s largest-ever investment in life sciences and medical education, according to a press statement.

Sports and Recreational Facilities | Jun 22, 2023

NFL's Jacksonville Jaguars release conceptual designs for ‘stadium of the future’  

Designed by HOK, the Stadium of the Future intends to meet the evolving needs of all stadium stakeholders—which include the Jaguars, the annual Florida-Georgia college football game, the TaxSlayer.com Gator Bowl, international sporting events, music festivals and tours, and the thousands of fans and guests who attend each event.

Architects | Jun 22, 2023

Keith Hempel named President of LPA Design Studios

LPA Design Studios today announced the promotion of Chief Design Officer Keith Hempel, FAIA, to president of the 58-year-old integrated design firm. Hempel, who joined LPA in 1995, has been an integral part of the firm’s growth, helping to develop an integrated design process that has produced industry-leading results. 

Industrial Facilities | Jun 20, 2023

A new study presses for measuring embodied carbon in industrial buildings

The embodied carbon (EC) intensity in core and shell industrial buildings in the U.S. averages 23.0 kilograms per sf, according to a recent analysis of 26 whole building life-cycle assessments. That means a 300,000-sf warehouse would emit 6,890 megatons of carbon over its lifespan, or the equivalent of the carbon emitted by 1,530 gas-powered cars driven for one year. Those sobering estimates come from a new benchmark study, “Embodied Carbon U.S. Industrial Real Estate.”

Virtual Reality | Jun 16, 2023

Can a VR-enabled AEC Firm transform building projects?

With the aid of virtual reality and 3D visualization technologies, designers, consultants, and their clients can envision a place as though the project were in a later stage.

Mechanical Systems | Jun 16, 2023

Cogeneration: An efficient, reliable, sustainable alternative to traditional power generation

Cogeneration is more efficient than traditional power generation, reduces carbon emissions, has high returns on the initial investment, improves reliability, and offers a platform for additional renewable resources and energy storage for a facility. But what is cogeneration? And is it suitable for all facilities?

Office Buildings | Jun 15, 2023

An office building near DFW Airport is now home to two Alphabet companies

A five-minute drive from the Dallas-Fort Worth International Airport, the recently built 2999 Olympus is now home to two Alphabet companies: Verily, a life sciences business, and Wing, a drone delivery company. Verily and Wing occupy the top floor (32,000 sf and 4,000 sf, respectively) of the 10-story building, located in the lakeside, work-life-play development of Cypress Waters.

Transit Facilities | Jun 15, 2023

Arlington, Va., transit station will support zero emissions bus fleet

Arlington (Va.) Transit’s new operations and maintenance facility will support a transition of their current bus fleet to Zero Emissions Buses (ZEBs). The facility will reflect a modern industrial design with operational layouts to embrace a functional aesthetic. Intuitive entry points and wayfinding will include biophilic accents.

Urban Planning | Jun 15, 2023

Arizona limits housing projects in Phoenix area over groundwater supply concerns

Arizona will no longer grant certifications for new residential developments in Phoenix, it’s largest city, due to concerns over groundwater supply. The announcement indicates that the Phoenix area, currently the nation’s fastest-growing region in terms of population growth, will not be able to sustain its rapid growth because of limited freshwater resources. 

Multifamily Housing | Jun 15, 2023

Alliance of Pittsburgh building owners slashes carbon emissions by 45%

The Pittsburgh 2030 District, an alliance of property owners in the Pittsburgh area, says that it has reduced carbon emissions by 44.8% below baseline. Begun in 2012 under the guidance of the Green Building Alliance (GBA), the Pittsburgh 2030 District encompasses more than 86 million sf of space within 556 buildings. 

boombox1
boombox2
native1

More In Category


Urban Planning

The magic of L.A.’s Melrose Mile

Great streets are generally not initially curated or willed into being. Rather, they emerge organically from unintentional synergies of commercial, business, cultural and economic drivers. L.A.’s Melrose Avenue is a prime example. 


Curtain Wall

7 steps to investigating curtain wall leaks

It is common for significant curtain wall leakage to involve multiple variables. Therefore, a comprehensive multi-faceted investigation is required to determine the origin of leakage, according to building enclosure consultants Richard Aeck and John A. Rudisill with Rimkus. 


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