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  • 30
    Jan
    2012
    6:46pm, EST

    Ocean motion could produce 9 percent of U.S. electricity

    Georgia Institute of Technology / DOE

    A map generated by Georgia Tech's tidal energy resource database shows mean current speed of tidal streams.

    By John Roach, Contributing Writer, NBC News

    Next-generation technologies that harvest electricity from ocean waves and tides sloshing along the U.S. coasts could provide about 9 percent of the nation's demand by 2030, according to a pair of recent studies.

    The findings, which include maps of these ocean energy resources, should help guide companies looking to develop them.

    "We have believed for a long time that the resource was significant and these assessments add a tremendous level of confidence to what that potential is," Mike Reed, water power team lead with the U.S. Department of Energy's Wind and Water Program told me Monday. 

    Today, about 6 percent of the nation's electricity comes from traditional hydropower projects, such as the Grand Coulee Dam, that direct the flow of the river through turbines to generate power.

    Since such dams plug up rivers and make it difficult for migrating fish species such as salmon to reach their spawning grounds, they have lost favor in recent years. 

    Looking forward, energy developers see promise in technologies that capture the energy in waves and tides off the coasts. 

    Designs to do this range from buoys that harness the up-and-down motion of passing waves to turbines on the ocean floor that are spun by the ebb and flow of the tides.

    The studies released earlier this month from the U.S. Department of Energy could help nudge along the development and deployment of these technologies by showing the resource is there to be captured.

    Motion of the ocean
    The U.S. uses about 4,000 terawatt hours of electricity per year. The maximum theoretical electric generation that could be produced from waves and tides is approximately 1,420 terawatt hours per year, the assessments found.

    "We are never suggesting that all of that would be captured," Hoyt Battey, team lead for water power market acceleration and deployment with the DOE Wind and Water Program, told me. 

    But based on the resource assessments and current understanding of what it will take to scale up and deploy the technology, wave and tidal power could be upwards of 9 percent by 2030.

    The DOE has set a goal that water power, including traditional hydroelectricity, total 15 percent of the nation's supply by 2030.

    To measure the wave resource, the DOE worked with the Electric Power Research Institute and Virginia Tech to develop a model that accurately predicted past wave regimes and used it to predict future wave climate.

    Those predictions are converted into wave power densities. As surfers know, waves from one day to the next are not the same, but they know what beaches tend to have the best waves when conditions are right, Reed noted.

    Like surfers trying to figure out where and when to vacation, utility owners and operators can use the new resource data to figure out where the best reliable waves are to put their converters.

    This knowledge, combined with reliable forecasts out several days on wave heights, will allow utilities to balance their loads with other sources such as a natural gas fired power plant.

    "Wave energy is predictable and forecastable," he said. "If you are a utility operator or utility owner, that predictability adds value."

    Tides are even more predictable, noted Battey. "You know down to the second years ahead of time what the tidal regime will be," he said.

    The tidal resource maps were created by researchers at Georgia Tech and are available online.

    Realizing the potential
    Resource assessments such as these, as well as others mapping potential geothermal, solar and wind resources, can nudge development of green energy technologies.

    But a key word in such assessments is "potential." As long as generating electricity from coal, oil, and natural gas remains cheap and politically salable, wave and tidal resources will struggle to compete.

    Reed takes the long view. Although wave and tidal energy projects today are expensive, he said, their costs should fall as the technology is improved and scaled up over the next few decades.

    "A good comparison would be to go back 15 to 20 years in the wind and solar industry and see how their costs have dramatically come down," he said.

    While wind and solar still struggle to compete with traditional sources today, the falling prices of the technologies and abundance of the resources are beginning to make them attractive.

    Given the size of the wave and tidal resource identified, Reed said there's plenty of room for wave and tidal energy developers to get their feet wet and begin to drive down costs.

    More on wave and tidal energy:

    • $28 billion in wave energy projects proposed
    • IBM sees energy, money in motion of the ocean
    • Here's an idea: Floating webs that capture sun, wave power
    • Oregon coast could be wave energy hub
    • Maine offers testbed for power from tides

    John Roach is a contributing writer for msnbc.com. To learn more about him, check out his website. For more of our Future of Technology series, watch the featured video below.

     

     

    Next-gen nuclear plants could provide carbon-free energy, but the painfully slow process of approving better, safer reactors — not to mention real anxiety over meltdowns and waste — threaten to derail projects before they can be built.

     

    13 comments

    So what? Solar can produce 1000% of our needs. Geothermal 10,000% of our needs. Lets put the money where it will do the most good. The energy below Yellowstone park itself can provide all our energy needs for millions of years--at least until the hot spot moves up north into Canada!!!

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    Explore related topics: energy, power, green, science, wave, electricity, tide, innovation, featured
  • 30
    Dec
    2011
    1:55pm, EST

    New Year's Resolution: Get fit, make electricity

    SportsArt Fitness

    A new system of fitness machines turns the watts you generate while working out into electrticity to power the gym.

    By John Roach, Contributing Writer, NBC News

    A new generation of workout machines that generate electricity as you work up a sweat are poised to invade fitness centers and help you keep your New Year's resolution to trim down your waistline.

    The electricity generated by the machines is fed back into the grid, helping the gym save on its utility bills.


    The so-called Green System from Woodinville, Wash.,-based SportsArt Fitness, represents a novel way to harness "human power," Ken Carpenter, director of sales for the company, told me.

    It joins a growing list of similar concepts, including PaveGen's pavers that generate electricity as people walk (and boogie) on them and devices such as shoes and a backpack that charge batteries as you go for a jog or hike in the woods.

    Sweaty watts
    The Green System consists of recumbent and upright bikes as well as elliptical trainers, each with a box that captures 75 percent of the watts you generate during a workout. 

    Boxes in several machines are hooked together and routed through an inverter that can handle up to 2,000 watts. Assuming an average of 133 watts per person, a pod might have 15 machines on it, Carpenter said.

    "Most facilities are going to be drawing so many watts and amperage, you'd have to have a lot of inverters to really reverse that meter, because of light bulbs, air conditioning, and all the other things being powered," he said.

    Nevertheless, 2,000 watt hours are enough to power a clothes washer for 6 hours, a microwave oven for 2.5 hours, or a 27-inch flat screen TV for 17 hours, according to SportsArt Fitness.

    This is enough electricity that the system will pay for itself in about three years, according to Carpenter. The company has an online calculator where you can figure out your potential savings.

    The system includes an inverter and the exercise machines. The inverter runs about $3,000, while the the machines could cost about $3,500 to $7,000.

    Generating award points
    The system is also hooked up with Victoria, Canada,-based EcoFit, which produces digital technology to calculate the number of watts an individual generates during a workout, put it on a graphical display and keep track of watts over time on a card.

    In the future, the companies hope to turn these "eco-points" generated at the gym into currency accepted at coffee shops and other retail outlets. 

    Back at the gym, the display technology also allows individuals to compete. For example, if you see your buddy is generating 115 watts, you might ramp it up so you can generate 130 watts.

    Right now, most people measure their performance at the gym in terms of workout time, or distance biked, or calories burned, but Carpenter said he thinks this paradigm will shift to watts "the more eco-conscious people get."

    So, eat, drink, and be merry this weekend. But come the New Year, hit the gym and generate some watts.

    More on harnessing human power:

    • Shoes redefine 'power walking'
    • Backpack generates its own electricity
    • Pavers generate electricity from steps
    • Device produces electricity from a swinging knee

     


    John Roach is a contributing writer for msnbc.com. To learn more about him, check out his website. For more of our Future of Technology series, watch the featured video below.

     

    Next-gen nuclear plants could provide carbon-free energy, but the painfully slow process of approving better, safer reactors — not to mention real anxiety over meltdowns and waste — threaten to derail projects before they can be built.

    6 comments

    Hmmmm, if this actually resulted in a $10 drop in the electrical monthly bill, I'd be very, very motivated to exercise. Been trying to get the power bill under $100 for the entire time we've lived in this 75 year old uninsulated house, but, constantly defeated. Oh well, having success keeping all th …

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John Roach, Contributing Writer, NBC News

John Roach is a contributing writer for NBC News. From climate change and mass extinctions to human evolution and deep space, his writing explores life on Earth and its place in the universe. He was a staff writer at the Environmental News Network for several years and has contributed to National Geographic News for more than a decade.

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