This blog is all about Solar energy, solar panels, solar cells, solar energy and crises different nations faces in the energy sectors.....!
Saturday, September 3, 2011
Advantages of Solar Power
Solar energy makes use of a renewable natural resource that is readily available in many parts of the world.
-The process used to generate solar energy is emission free.
-Technological advances have reduced costs to a point that it can compete with fossil fuel alternatives in specific circumstances.
-The technology is scalable in that it can be used for domestic heating purposes or on a larger scale for commercial electricity generation, as solar water heaters are an established technology, widely available and simple to install and maintain.
Disadvantages.
The biggest barriers to increasing solar power generation are the cost, the amount of land required for large scale electricity production, and the intermittent nature of the energy source.
Outlook
Although wind power is more economical and has been more widely adopted than solar energy, solar power is the most flexible in scale and application. It also is widely available and an environmentally benign source of renewable energy.
It is currently a $7 billion per year business that is growing at 40 percent per annul, but we believe it has even greater potential for growth in the future.
Venture capital companies have increased funding in this area over the past few years, and there is a positive investment environment in both Europe and Japan for these types of companies. [Excerpts from Wells Fargo, Special Report Identifying the Opportunities in Alternative Energy.
Identifying the Opportunities in Alternative Energy
Solar energy is, perhaps, the first energy source that comes to mind when most people think of renewable sources of energy, but solar power is still a long way from being mainstream. It accounts for less than 1 percent of the world?s energy today.
There are two main ways to harness the power of the sun to generateelectricity: photovoltaic (PV), where sunlight is directly converted into electricity via solar cells, and solar thermal power. PV is a proven technology that is most appropriate for small?scale applications to provide heat and power to individual houses and businesses. Sunlight falls on a layer of semiconductors, which jostles electrons. This, in turn, creates an electrical current that can be used as a source for heat. Solar PV cells are already cost effective for powering houses and businesses in some regions.
Technological developments have reduced costs considerably over the last few years. However, largescale electricity production using solar energy costs about 22 cents per kilowatt?hour, significantly more expensive than its fossil fuel competitors and nuclear energy. This makes it more appropriate for specific applications rather than large scale power generation at this stage of development. Hopes to reduce these costs lie with newer technologies.
As is the case with wind energy, solar power has most traction in countries such as Germany, Spain, Cyprus and Japan, all of which offer incentives to improve the uptake of renewable energy sources as part of their implementation of a diversified energy policy. In Cyprus, more than 50 percent of hotels and 90 percent of homes have solar water heating.
Pure Energy Production without affecting food chain
Positioned to capitialise on newest technology
Structured to deliver multi-faceted alternative energy solutions
Steadily increasing revenues for our business
Drastically decreased energy costs for our clients
A unique target client experience in this market
Steadily improving solar technology efficiency for our clients
Steadily increasing market share for our business
Strong client retention levels for our business
Investment in Solar Energy
Solar energy is emerging as an investment opportunity:
As current technology improves, costs predicted to drop
Solar power does not affect the food chain, like bio fuels
Solar power is expected to play a larger role than wind in providing future electricity supply of the nation
Solar power market is expected to grow 40% a year through 2011 ....
Nevada Solar One
Nevada Solar One has a 64-MW generating capacity and is located in Boulder City, Nevada. It was built by the U.S. Department of Energy, National Renewable Energy Laboratory, and Acciona Solar.
Nevada Solar One uses parabolic troughs as thermal solar concentrators, heating tubes of liquid which act as solar receivers. These solar receivers are specially coated tubes made of glass and steel, and about 19,300 of these four meter long tubes are used in the newly built power plant. Nevada Solar One also uses a technology that collects extra heat by putting it into phase-changing molten salts. This energy can then be drawn at night.
Solar thermal power plants designed for solar-only generation are well matched to summer noon peak loads in prosperous areas with significant cooling demands, such as the south-western United States. Using thermal energy storage systems, solar thermal operating periods can even be extended to meet baseload needs.
The cost of Nevada Solar One is in the range of $220–250 million. The power produced is slightly more expensive than wind power, but less than photovoltaic (PV) power.
Mojave Desert's Solar Plant
There are several solar power plants in the Mojave Desert which supply power to the electricity grid. Solar Energy Generating Systems (SEGS) is the name given to nine solar power plants in the Mojave Desert which were built in the 1980s. These plants have a combined capacity of 354 megawatts (MW) making them the largest solar power installation in the world.Nevada Solar One is a solar thermal plant with a 64 MW generating capacity, located near Boulder City, Nevada.The Copper Mountain Solar Facility is a 48 MW photovoltaic power plant in Boulder City, Nevada.
The Blythe Solar Power Project is a 968 MW solar thermal power station under construction in Riverside County, California. The Ivanpah Solar Power Facility is a 370 MW facility under construction which will consist of three separate solar thermal power plants. There are also plans to build other large solar plants in the Mojave Desert.[4]
Insolation (solar radiation) in the Mojave Desert is among the best available in the United States, and some significant population centers are located in the area. These plants can generally be built in a few years because solar plants are built almost entirely with modular, readily available materials, although financing has been difficult and the projects typically receive government-backed financing.
Tuesday, June 14, 2011
Make Solar Light For Your Bike
As everyone knows that solar lights have great use in the industry. People use them in a variety of applications to fulfill their needs in a cost effective way. Lets talk about bike lights. They are definitely used for the safety of riders and provide additional lights at night. As you know that some older bike lights use a small generator to power them. In this system, the intensity of light depends on the current speed of the bike which is a problem. Therefore, to resolve this problem, solar lights are used. Lets make solar bike light for your bike.
First of all, to the back side of the bike, safe the battery with the help of a bike cargo carrier. Then join these units to the back of the bike exact the place of bike light (normally over the back tire). Remember that the battery should be closed to the bike as much as possible. After that, take a 12 volt bike light and join it to the front of the bike according to the manufacturer's instructions. Perform the functions of bike light wires and tie wraps to hold the wires in accurate position. Then connect a 12 volt switch to the handle bars.
Attach the positive wire directly to the positive terminal of the battery. Same as join the negative wire of the bike light to first light switch. Then connect the second light switch terminal directly to the negative terminal of the battery with the help of black electrical wire. Fix the solar panel on the back of the battery, so that the main side of solar panel is towards the sun. The size of solar panel should be at most 12×12 inches. Broaden the red solar panel wire to the battery and join it to the positive terminal. Now expand the black negative solar panel wire over the negative terminal of the battery and secure it.
First of all, to the back side of the bike, safe the battery with the help of a bike cargo carrier. Then join these units to the back of the bike exact the place of bike light (normally over the back tire). Remember that the battery should be closed to the bike as much as possible. After that, take a 12 volt bike light and join it to the front of the bike according to the manufacturer's instructions. Perform the functions of bike light wires and tie wraps to hold the wires in accurate position. Then connect a 12 volt switch to the handle bars.
Attach the positive wire directly to the positive terminal of the battery. Same as join the negative wire of the bike light to first light switch. Then connect the second light switch terminal directly to the negative terminal of the battery with the help of black electrical wire. Fix the solar panel on the back of the battery, so that the main side of solar panel is towards the sun. The size of solar panel should be at most 12×12 inches. Broaden the red solar panel wire to the battery and join it to the positive terminal. Now expand the black negative solar panel wire over the negative terminal of the battery and secure it.
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