If you have ever lived near the ocean, you know about tides. Like clockwork, the tide rolls in and out moving massive amounts of water from here to there and back again. This massive movement of water also happens to contain a huge amount of energy. If the power of the tides could be converted to usable energy, many think tidal energy would be the answer to many of the energy problems in the world.
There are two basic theories on how to convert tides into power. The first involves converting the power of the horizontal movement of the water into electricity. The second involves producing energy from the rise and drop of water levels. With our vast knowledge of hydroelectricity production with dams, converting moving water is currently the favored technology.
With hydropower, energy is produced by passing moving water through turbines which spin and create electricity. While this may seem an obvious way to go after tidal power, there are some inherent problems. First, tidal water moves much slower. Second, the energy in tides are spread across great areas, to wit, the energy in the amount of water that would pass through even a large pipe is relatively small. This technological quagmire has never been solved, but a new approach is gaining adherents.
One new approach incorporates the dam principals in hydroelectric production. The idea is to let water come in when the tide is rising and then prevent it from leaving when the tide goes out. Doors are used to cut off the water. The water is then diverted into pipes with turbines and you essentially have hydroelectric power.
There are a few problems with this approach. First, the tidal area is devastated because the natural cycle is interrupted. Second, the volume of moving water is reduced because the dam can't be built with a large enough opening to allow all water to enter. Third, the inherent corrosive nature of salt water leads too much higher maintenance costs or at least is forecast to do so.
The advantage of tidal energy is it is extremely reliable and predictable. Orbital issues involving the moon cause tides. Although the moon is slowly moving away from the Earth, the sun is expected to burn out before it gets very far away. Regardless, this means tides are highly predictable from both size and time aspects. In fact, you can go to any surf store and pick up a tide table.
The tidal energy platform has a lot of potential if technological issues can be overcome. To date, Japan and a few European countries are the only ones researching solutions.
Disadvantages Of Tidal Energy
The earth is undergoing a terrible bout of global warming with the carbon that is emitted by the burning of fossil fuels to generate electricity and when used in vehicles for transportation purposes. Moreover the sources of this fossil fuel are fast diminishing with the increased need of energy with the modernization of countries.
This is the reason scientist and researchers all over the world are thinking and looking for alternative sources of energy which are also renewable and available naturally. And such a source of energy is the energy found in areas having large tidal ranges.
France has been harnessing energy found in tides of bays and estuaries since 1966. Canada and Russia have followed suit and have also managed to generate electricity from tidal waves. Basically, it is possible to harness and generate electricity from places where there is a large tidal range.
This energy of tidal waves is harnessed by trapping the water so that it is used to turn turbines. The energy so produced is released through tidal barrages found in either direction. However, generally implementation of tidal power technology worldwide proves to have little potential because of its environmental constraints.
Another reason that is considered to be attributed to the low potential of tidal wave energy is that it would produce electricity more efficiently if it generates electricity in bursts at gaps of perhaps six hours. However this is not feasible as it is the limits of tidal energy applications that hinder the use of tidal energy.
This is why a new form of technology has been devised, to harness this tidal energy. This new technology is found in the form of tidal stream generators which tend to draw energy found in underwater currents. It could be said that the principle used here in these tidal steam generators is similar to the technology found in wind generators, which are powered by wind.
In such cases of generation of electricity by tidal power, the higher is the density of the water; the better is the potential for a single generator generating significant levels of power. However today, tidal stream technology is in its budding stages where there is much more research to be done before it can be said that tidal stream technology is an important part and contributor to the generation of energy.
There are a few prototypes that have been devised to harness tidal stream power, and show great promise in this direction. One such prototype is the 300 kW Seaflow marine current propeller type turbine that was tested off the coast of Devon of UK, in the year 2003. Another prototype is a 150 kW oscillating hydroplane device, called the Stingray that was tested off the Scottish Coast.
The Hydro Venturi is another British prototype that is slotted to be tested in San Francisco Bay pretty soon. In addition to all this, the Canadian company, Blue Energy has ideas of installing large arrays of tidal current devices on their tidal fence in various locations around the world. These devices are planned to be based following a vertical axis turbine design with which more tidal energy is produced efficiently in the world.
Both Rick Chappo & James Nash are contributors for EditorialToday. The above articles have been edited for relevancy and timeliness. All write-ups, reviews, tips and guides published by EditorialToday.com and its partners or affiliates are for informational purposes only. They should not be used for any legal or any other type of advice. We do not endorse any author, contributor, writer or article posted by our team.
James Nash has sinced written about articles on various topics from Environment, Painting and Environment. James Nash is a climate scientist with Greatest Planet (). Greatest Planet is a non-profit environmental organization specialising in carb. James Nash's top article generates over 368000 views. to your Favourites.
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