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Selasa, 20 Desember 2011

Hydropower As An Energy Platform

Much like solar and wind power, hydropower has been a constant energy source for man. Following is an overview of hydropower.

Hydropower As An Energy Platform

Hydropower can be defined simply as using the energy of flowing water to generate power. With early man, this power was experienced in the form of propulsion as in moving wheels to grind food materials. With modern man, hydropower is used to turn turbines that produce electricity. In cases such as the Three Gorges Dam in China, this platform can be the basis of providing huge amounts of energy to countries in need.

Let’s take a look at an overview of developments in hydropower:

Over 2,000 years ago, hydropower was used by the Greeks to turn grinding wheels to turn wheat into flour.

In the 1770s, French engineer Bernard Forest de Bélidor wrote Architecture Hydraulique, a four-volume series detailing mechanisms that could be used to convert flowing water into power.

1880 - Michigan's Grand Rapids Electric Light and Power Company showcased the first commercial application for electricity generated from hydropower. The company used a turbine to provide power to a whopping 16 lamps at the Wolverine Chair Factory.

1881 - Niagara Falls votes to convert all lamps on streets to electricity provided by hydropower, which made sense considering their location.

1882 – The first power plant devoted entirely to hydropower electricity production goes online in Wisconsin. The power is produced from water in the Fox River.

1886 – Hydropower plants are so popular that over 40 are functioning in Canada and the U.S.

1889 – Only three years later, the number of hydropower plants in the two countries grows to 200.

1907 – Hydro plants produce 15 percent of the electrical power needs of the United States.

1920 – Hydro plants produce 25 percent of the electrical power needs of the United States. 

1933 – Hydropower comes to the forefront with the establishment of the Tennessee Valley Authority.

1940 – Hydro plants provide a whopping forty percent of all electricity produced in the United States. 

2003 – At the turn of the century, hydropower has lost much of its allure. Population growth results in power needs so high that hydropower is not viewed as a solution. Environmental issues also cause a slow down. Only ten percent of the electricity in the U.S. is produced by hydropower.

Today, roughly twenty percent of all the electricity in the world is produced through hydroelectric power plants. The largest producer of electricity through hydropower is Canada followed by the United States, Russia, Brazil and China. Egypt is highly dependent on hydropower via the Nasser Dam. Norway produces nearly all of its electricity needs through hydropower. In many other countries, hydropower is being looked to as the solution for growing energy needs.

Hydropower has definite downsides. It can be unreliable in countries that suffer droughts, as many African nations have learned. The environmental impact of large dams, as seen with the three gorges dam in China, is also a concern. Notwithstanding these concerns, hydropower is a proven renewable energy platform that certainly is better than fossil fuel alternatives.

Selasa, 01 Maret 2011

Power Cells As Alternative To Oil

As oil and gasoline prices rise, much hay is being made regarding the possibilities of power cells as a solution to our oil addictions. Here’s a basic primer on power cells.

Power Cells As Alternative To Oil

More than a few politicians have argued that power cells have the potential to cure all our energy problems. They argue power cells offer clean, efficient alternatives to the gasoline and oil burning combustion engine we all use in our vehicles. They also argue that switching to power cells will go a long way to dealing with global warming issues since this form of power does not produce the greenhouse gases seen with oil products. Instead, they produce water and heat. For once, the politicians may just be right for once.

Power cells use hydrogen or hydrogen derived sources to create electricity. Much like a single solar cell is not particularly good at producing power, a single power cell produces a fraction of the energy required to power most things of consequence. Like solar, the cell must be combined with others to get the necessary production. Temperature and the pressure of the hydrogen are also factors. To really make things work, such as a car, most power cells are actually a combination of hundreds or thousands of sub-cells. This, of course, results in problems of storage and stability. The more cells there are, the more space they take up. The more cells there are sitting next to each other, the hotter they get.

The current problems with these hydrogen power cells are numerous. They do not produce power on a cost-effective basis. They have not proven to be particularly durable, which means the need to replace them fairly frequently runs up the cost of owning them. A practical, but significant, problem is how to store and provide the hydrogen to users on a daily basis. Hydrogen can be unstable, which makes for big, pretty and expensive bangs. Most of these problems, however, will be overcome as technology progresses.

Once technology advances, the applications power cells can be used for are nearly endless. They can be used to run your laptop or your car. They can be used to provide electricity and heat in your home as well as your business. In our technology crazed society, they will even power your cell phones. If it can be run on electricity, power cells should be able to make it work.

Power cells aren’t the current answer to our oil problem, but that may change in the relatively short future.

Senin, 24 Januari 2011

Hydropower As A Major Player In The Energy Game

Hydropower has been a slumbering giant in the energy game. Since the 1960s, its use has actually gone down compared to other energy sources. This is beginning to change.

Hydropower As A Major Player In The Energy Game

Hydropower is the massive production of electricity through the conversion of kinetic energy in water into electricity. This is typically undertaken in the form of a dam on a river. Water is held back by the dam and then fed in a controlled manner through it. On its way, the water spins turbines that crank generators and produce electricity. Famous projects include Hoover Dam in the United States, Nasser Dam in Egypt and the new Three Gorges Dam in China.

The primary question with hydropower is why we do not use it more. In some countries, such as Norway, it is the primary source of energy production. It is popular because it is a clean energy platform that produces no emissions, pollution, heat or fuel consumption. As long as the river runs, the hydropower plant should function. In places like Africa, this has not always been a sure thing.

Compared to other energy platforms, hydropower is very efficient. Energy conversion rates are in the 80 to 90 percent range. The plants also have a long life as you can see with any dam, and maintenance costs are relatively low. Cost of energy production, thus, is lower or on par with other energy platforms including oil.

While hydropower seems like a slam dunk option as an energy platform, there are a few definite negatives. The initial cost of building a hydropower dam can be very large. Hundreds of millions of dollars can be required. Larger projects such as the Three Gorges dam run into the billions. These figures are staggering for smaller countries and even give pause to most first world ones. With the rising costs of fossil fuels, however, this is becoming less of an issue each and every day.

The other area that causes concern with hydropower dams is the environmental and human impact. Damming a river is no easy task and the impact is massive. To effectively work, a hydropower dam will reduce the flow of water to such an extent that tens if not hundreds of miles of land behind it will be submerged. In the case of the Three Gorges Dam, this led to the removal of entire cities, monasteries and massive changes to the landscape. There is no disputing this negative issue, but localized changes seem minor compared to the global impact of fossil fuel use.

There is not much glamour to hydropower, but it does represent one of the cleanest and efficient energy platforms available to us.

Senin, 28 Juni 2010

Do Highway Lights Turn Off Around You Too

You’re driving down the highway at night and out of the corner of your eye you notice the highway lamp pole turn off its light. Weird you think to yourself. But over the course of time you start to notice it more and more. What exactly is going on?

What you may or may not be experiencing is something researchers have termed “street light interference” or SLI for short. Some paranormal researchers have deemed that our bodies have the capabilities to interact with different light sources and affect their ability to turn on and off.

Personally, this has happened to me since high school. I can clearly remember one time when I was driving back from my girlfriend’s house after a fight and coming onto the highway at night. Upon approaching the onramp, in the foul mood that I was in, I noticed that a whole row of lights went out. I thought nothing of it at the time. I couldn’t associate it with anything. Plus, I was ripped at my girlfriend for ticking me off. Now, individual lights turn off around me while driving (and while I’m driving different cars too..so much for the “misaligned headlights” theory). Not only do they turn off on the highway but they also turn off on backroads. It hasn’t happened yet inside a house or other structure..only when I’m driving.

I really have no explanation for it. I can theorize it’s this or that, but who really knows. I’m spiritually in touch with myself enough to think that it’s loved ones who have moved on who are just giving me a quick hello, or, we’re still here with you. I like that thought better than anything else.

I’ve talked to some people who have experienced this (as my father has as well), and some people cannot wear battery operated watches. Again, this points to something logically towards how our bodies act as conductors or capacitors of energy. You ever rub your fingers on the carpet, or dragged your feet on the carpet and then touched something metal? Yep, static electricity. Our bodies were designed to hold certain amounts of electricity, thus acting in some ways as a capacitor.

The next time you’re driving at night, pay some attention to the street lights around you. If you see them turn off (consistently during the week, or inconsistently), feel free to come over to http://www.realghostpictures.net and leave me a message to discuss what happened to you. I’d love to talk about it.