Learn more about types of heating systems.

Video: Types of Heating Systems

A heating system can help you and your home keep warm during winter. This slide discusses different types of heating systems for home and commercial ...

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  • New U of M dynamism plant reuses energy to bolster efficiency


    Steam shoots toe fat pipes — sometimes as much as 550,000 to 600,000 pounds per hour, Malmquist said. Most of the steam makes its way back to the ingrain as hot water, where it's used again to make more steam. The plant can run on either natural gas

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New U of M vigour plant reuses energy to bolster efficiency - Minnesota Public Announce News

The cube facade is a century old, but the burning, spinning and capturing of heat inside the University of Minnesota's new Pipe Energy Plant is the wave of the future.

The plant, located on the banks of the Mississippi River near Dinkytown, came online persist month and will save the university about $2 million a year in utility costs.

This operative facility is a combined heat and power plant, meaning the heat that's generated from making power — up to 22 megawatts — is captured and acquainted with to make steam, which heats a hospital, lecture halls and sports arenas throughout campus.

"All that hot air coming off the jet mechanism then goes into this large gray box," said Jerome Malmquist, the university's energy directorate director during a tour this week. "This large gray box is like a great big tea kettle. We're not making tea, we're making hot splash or steam."

It's hard to visualize because all the burning, spinning and moving steam about is happening inside giant enclosures and pipes throughout the plant.

The steam travels owing to miles of pipes inside tunnels that are 90 feet underground. Steam shoots auspices of fat pipes — sometimes as much as 550,000 to 600,000 pounds per hour, Malmquist said.

Most of the steam makes its way back to the insinuate as hot water, where it's used again to make more steam.

"We're very proud of that," Malmquist said, noting that most standalone power plants are less than half as proficient, meaning there's a lot of heat that goes to waste.

"It's a little-known fact that in generating power in the Of like mind States, two-thirds of the energy is thrown away. Kind of like buying a six-wind up of beer and pouring four of them out," said Mark Spurr, an energy specialist with FVB Energy.

FVB studied combined heat and power in Minnesota a few years ago and recommended doubling the technology's aptitude in the state by 2030.

Minnesota has more than 50 combined heat and power facilities of all novel types, according to the Department of Energy, but most of them are small. Spurr said the technology can go into new plants or be portion of retrofits in existing plants.

"It's not an unknown technology. It's just that there's so much more potential," he said.

But there are several barriers. There's no one-scope-fits-all solution for a given site because everybody has different needs for power and hotness. Financing is also a challenge, and historically utilities have not wanted universities, cities and others to originate their own power.

Malmquist said the University of Minnesota worked with Xcel Force on a plan that would address both parties' needs. The university wanted the plant because it could both scrimp money on utilities and make the campus more resilient to power outages.

The undercover doesn't produce enough electricity to keep everything running during the case of an outage, but superiority power uses such as hospitals and sensitive research would receive uninterrupted use.

Capturing the heat means the technology also reduces carbon emissions — the university expects its carbon footprint to go down by 10 to 13 percent. But diverse combined heat and power systems still rely on burning fossil fuels, so some query their ability to make a big enough dent in emissions causing climate change. For archetype, student and faculty protests halted a similar project at Duke University earlier this year.

In Minnesota, inoffensive energy advocates have been supportive of combined heat and power.

"Minnesota should put in in least-cost renewables and maximize that in our state," said Will Nissen, maestro of energy performance at Fresh Energy. "Where projects are feasible and the sites write sense, combined heat and power projects should move forward."

There's a big combined fever and power plant going in next year at Flint Hills Resources — the oil refinery in Rosemount, Minn. But even with that totting up, the capacity of combined heat and power plants in Minnesota will be less than half what the allege's largest coal-fired power plant — Sherco in Sherburne County — can mould.

Source: www.mprnews.org
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  • Fundamentals of Heating Systems

    1998. ISBN: 1931862311,9781931862318. 400 pages.

    Covers the various types of heating systems available for commercial and residential buildings and three basic components of every heating system: the fuel source, the energy conversion plant, and the energy distribution system. Topics include: basic selection criteria for any heating system; factors that must be considered when designing a commercial heating system; various types of commercial heating systems that may be used; basic types and design criteria of industrial and residential...

  • Home Heating

    1975. 24 pages.
  • Natural Home Heating

    Chelsea Green Publishing. 2003. ISBN: 9781603581561,1603581561.
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  • Audel HVAC Fundamentals

    John Wiley & Sons. 2004. ISBN: 9780764542060,0764542060. 720 pages.

    A reference you'll warm up to From the background and basics of heating systems to the newest chip-based technology, this first volume of Audel's HVAC Library gives you comprehensive information you need on the job. Whether you're installing, servicing, repairing, or troubleshooting an old or new heating system, you'll find what you're looking for, from wood and coal furnace maintenance to new calculations and the latest environmental technologies and regulations. * Review the basics of...

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