• Software developed by MIT students generated this map showing energy use intensity across campus. Last spring, MITEI awarded funds for this work and for six other student projects aimed at cutting campus energy use and encouraging adoption of sustainable energy practices. MITEI is now seeking proposals for new student projects relating to campus sustainability. Applications are due Oct. 1.

    Software developed by MIT students generated this map showing energy use intensity across campus. Last spring, MITEI awarded funds for this work and for six other student projects aimed at cutting campus energy use and encouraging adoption of sustainable energy practices. MITEI is now seeking proposals for new student projects relating to campus sustainability. Applications are due Oct. 1.

    Graphic courtesy / Stephen Peters, Tarek Rached and Elsa Olivetti

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Students help MITEI 'walk the talk' on energy

Software developed by MIT students generated this map showing energy use intensity across campus. Last spring, MITEI awarded funds for this work and for six other student projects aimed at cutting campus energy use and encouraging adoption of sustainable energy practices. MITEI is now seeking proposals for new student projects relating to campus sustainability. Applications are due Oct. 1.


Dan Wesolowski looked out from the second floor of MIT's Building E25, watching in dismay as students and faculty alike ignored signs to use the revolving door below him and save energy. Person after person coming from the nearby Kendall Square subway walked through the swing door to the side of the revolving door.

"A single person walking through a revolving door in February saves enough energy to light a 60-watt light bulb for 23 minutes," said Wesolowski, a fourth-year Ph.D. candidate in materials science and engineering. If everyone used the revolving doors, MIT would save about $7,500 in natural gas a year in E25 alone, which has two of the 29 revolving doors on campus.

The MIT Energy Initiative (MITEI) is now supporting a student plan to encourage that behavior.

Wesolowski and three classmates started their Revolving Door Campaign a couple years ago as part of a project for a class in sustainability and planning in the Department of Urban Studies and Planning. In tests around campus, their 11- x 17-inch signs saying "Help Conserve Energy, Please Use the Revolving Door" improved revolving door use to 65 percent from 23 percent. Based on those results, MITEI is providing funds for printing and installing pedestal-mounted signs at five revolving doors across campus.

"I didn't set out to be a revolving-door activist," Wesolowski admitted. "But once I crunched the numbers I saw an opportunity to save energy. Every time you feel a breeze, that's energy blowing out the door." The energy savings have to do with heat transfer: revolving doors prevent the free exchange of conditioned indoor air with outdoor air.

The project was one of seven selected earlier this year by MITEI's new Student Campus Energy Project Fund. The fund makes money available twice yearly to students to undertake projects in line with the Energy Initiative's Campus Energy Task Force. The task force recently issued another request for proposals, with a submission deadline of Oct. 1. The fund was seeded by MITEI with $10,000, plus a supplemental donation of $5,000 from Shell Oil Company.

Other projects funded in the first round include:

* The Wind Turbine Design Competition will be run for the first time during Independent Activities Period 2008. Students will have an opportunity to design and build a wind turbine capable of harvesting electrical energy from the wind.

* MIT Generator is a coalition of student groups aiming to catalyze and support student projects with a focus on energy, environment and sustainability issues on MIT's campus. The goal for 2007-08 is to expand the community of students involved in campus energy projects through more extensive outreach. The next Generator event will be held Sept. 27 from 6:30 to 9:00 p.m. in the Stata Center's Kirsch Auditorium (32-123).

* Publicity and Recruitment Booklets for the MIT Sustainability Community is an Undergraduate Association Campus Sustainability Committee project. It published a booklet for freshman orientation to recruit incoming students for sustainability activities on campus. The booklet contains information about many of MIT's student groups, clubs and initiatives involved with energy, the environment and sustainability.

* The Campus Climate Project (Focus the Nation) aims to widen awareness and conversation about climate change on campus and to motivate and empower students to take action on these issues. The project will be part of the national events of Jan. 31, 2008, known as "Focus the Nation: Global Warming Solutions for America." It will include seminars during the second week of spring semester in February 2008.

* Plug Load Meters for Appliance Use Case Studies will measure energy consumption in more detail than at the general building level to include items such as appliances. The goal is to influence user behavior by providing information about how much and for what purpose energy is consumed within each building.

* The Energy Map Project (see graphic) has developed a prototype map that displays energy use intensity in various MIT buildings with a color scale.

"This first round of projects is just the tip of the iceberg," said Steven Lanou, deputy director of MIT's sustainability program and a member of the grant review committee. "With another round of funding available this semester, I expect to see the ingenuity and creativity of student projects continue to grow and inspire us to do more to reduce our energy footprint and lead with innovative approaches."

While the projects place a demand on students' time, they can be a welcome diversion from daily studies, said Tarek Rached, a second-year student going for a master's degree in technology and policy. "This is relaxing," he said. Rached and fellow student Steven Peters are involved in the Energy Map Project, which is designed to reduce energy use in MIT's buildings (see graphic).

Energy consumption in buildings accounts for the vast majority of campus energy use and produces more than 90 percent of MIT's greenhouse gas emissions, but most buildings are used without any feedback to the occupants and operators. The project aims to develop tools to measure and analyze MIT's campus energy use, such as the energy map.

The students are now getting monthly data from MIT's Department of Facilities on energy use in MIT buildings dating back five years. "The next phase is to launch an automated display system to get real-time data on the web so people can see what is going on in their building," Rached said. "We want to get people involved to change behavior."

That includes getting incoming freshmen involved in campus energy activities from the get-go. Austin Oehlerking, a senior, became interested in sustainable energy after taking a course during Independent Activities Period last year. He changed from studying economics and finance to mechanical engineering. Oehlerking was instrumental in developing the orientation booklet for 2007 to get freshmen interested in sustainability communities throughout MIT. "There are at least 12 different student groups," he said. "There are so many different projects going on that it is hard for people to grasp. The booklet is a great opportunity for them to find their niche among sustainability efforts on campus."

Oehlerking said he's seen a marked increase in interest in energy since he was a freshman at MIT. "A lot of people didn't know about energy initiatives, including me," he said. "I've seen a major shift in interest in the past couple years because of events like the $100K competition, which is seeing a lot more energy business plans and creating huge excitement among undergraduates. I've also seen a huge change since MIT President Susan Hockfield came in and focused on energy."

A version of this article appeared in MIT Tech Talk on September 26, 2007 (download PDF).


Topics: Energy, Environment, Students

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