Showing posts with label Wind potential. Show all posts
Showing posts with label Wind potential. Show all posts

Wednesday, March 26, 2014

Wind farms can provide a surplus of reliable clean energy to society, Stanford study finds

Today's wind industry, even with the necessary batteries and other grid-scale storage, is energetically sustainable, Stanford scientists say.
Dennis Schroeder/NRELWindmill
A big challenge for utilities is finding new ways to store surplus wind energy and deliver it on demand. It takes lots of energy to build wind turbines and batteries for the electric grid. But Stanford scientists have found that the global wind industry produces enough electricity to easily afford the energetic cost of building grid-scale storage.
The worldwide demand for solar and wind power continues to skyrocket. Since 2009, global solar photovoltaic installations have increased about 40 percent a year on average, and the installed capacity of wind turbines has doubled.
The dramatic growth of the wind and solar industries has led utilities to begin testing large-scale technologies capable of storing surplus clean electricity and delivering it on demand when sunlight and wind are in short supply.
Now a team of Stanford researchers has looked at the "energetic cost" of manufacturing batteries and other storage technologies for the electrical grid. At issue is whether renewable energy supplies, such as wind power and solar photovoltaics, produce enough energy to fuel both their own growth and the growth of the necessary energy storage industry.
"Whenever you build a new technology, you have to invest a large amount of energy up front," saidMichael Dale, a research associate at Stanford. "Studies show that wind turbines and solar photovoltaic installations now produce more energy than they consume. The question is, how much additional grid-scale storage can the wind and solar industries afford and still remain net energy providers to the electrical grid?"
Writing in the March 19 online edition of the journal Energy & Environmental Science, Dale and his Stanford colleagues found that, from an energetic perspective, the wind industry can easily afford lots of storage, enough to provide more than three days of uninterrupted power. However, the study also revealed that the solar industry can afford only about 24 hours of energy storage. That’s because it takes more energy to manufacture solar panels than wind turbines.
"We looked at the additional burden that would be placed on the solar and wind industries by concurrently building out batteries and other storage technologies," said Dale, the lead author of the study. "Our analysis shows that today’s wind industry, even with a large amount of grid-scale storage, is energetically sustainable. We found that the solar industry can also achieve sustainable storage capacity by reducing the amount of energy that goes into making solar photovoltaics."
Reducing energy inputs to battery manufacturing is also needed, he said.

Favorable winds

Over the years, consumers have learned to expect electricity on demand from power plants that run on coal, natural gas or oil. But these fossil fuels, which provide reliable, around-the-clock energy, also emit megatons of greenhouse gas that contribute to global warming.
Wind and solar farms provide emissions-free energy, but only generate electricity when the wind blows or the sun shines. Surplus energy can be stored for later use, but today’s electrical grid has little storage capacity, so other measures are used to balance electricity supply and demand.
In the study, the Stanford team considered a variety of storage technologies for the grid, including batteries and geologic systems, such as pumped hydroelectric storage. For the wind industry, the findings were very favorable.
"Wind technologies generate far more energy than they consume," Dale said. "Our study showed that wind actually produces enough surplus electricity to support up to 72 hours of either battery or geologic storage. This suggests that the industry could deploy enough storage to cope with three-day lulls in wind, common to many weather systems, and still provide net electricity to society."
The results were especially good for onshore wind turbines. "We found that onshore wind backed by three days of geologic storage can support annual growth rates of 100 percent – in other words, double in size each year – and still maintain an energy surplus," he said.
"These results are very encouraging," said study co-author Sally Benson, a professor of energy resources engineering and director of the Global Climate and Energy Project (GCEP) at Stanford. "They show that you could create a sustainable energy system that grows and maintains itself by combining wind and storage together. This depends on the growth rate of the industry, because the faster you grow, the more energy you need to build new turbines and batteries."

Solar industry

For the solar industry, the Stanford team found that more work is needed to make grid-scale storage energetically sustainable. The study revealed that some solar technologies, such as single-crystal silicon cells, are growing so fast that they are net energy sinks – that is, they consume more power than they give back to the electrical grid. From an energetic standpoint, these industries "cannot support any level of storage," the study concluded.
"Our analysis showed that, from an energetic perspective, most photovoltaic technologies can only afford up to 24 hours of storage with an equal mix of battery and pumped hydropower," Dale said. "This suggests that solar photovoltaic systems could be deployed with enough storage to supply electricity at night, and the industry could still operate at a net energy surplus."
One advantage of wind over solar power is that it has an enormous energy return on investment, Benson explained. "Within a few months, a wind turbine generates enough electricity to pay back all of the energy it took to build it," she said. "But some photovoltaics have an energy payback time of almost two years. To sustainably support grid-scale storage will require continued reductions in the amount of fossil fuel used to manufacture photovoltaic cells."

Other costs

The Stanford team’s primary focus was on the energetic cost of deploying storage on wind and solar farms. The researchers did not calculate how much energy would be required to build and replace grid-scale batteries every few years, nor did they consider the financial cost of building and installing large storage systems on the grid.

Monday, January 27, 2014

Spain becomes first country to rely on wind as top energy source

by   January 16, 2014 9:30PM ET
In 2013, Spain produced over 20 percent of its energy with wind turbines; questions remain over its economic stability
Topics:
 
Spain
 
Energy
 
Environment


spain


Spain's largest wind turbine, Arinaga, a five megawatt, 505-foot tall, is pictured at the end of a dike on Gran Canaria in the Spanish archipelago of the Canary Islands on Oct. 20, 2013.
Desiree Martin/AFP/Getty Images
Spain is the first country in the world to draw a plurality of its power from wind energy for an entire year, according to new reports by the country’s energy regulator and wind energy advocacy group Spanish Wind Energy Association (AEE).
Wind accounted for 20.9 percent of the country’s energy last year — more than any other enough to power about 15.5 million households, with nuclear coming in a very close second at 20.8 percent. Wind energy usage was up over 13 percent from the year before, according to the report.
The news is being hailed by environmental advocates as a sign that Spain, and perhaps the rest of the world, is ready for a future based on renewables. But the record comes at the end of a very rocky year for Spain’s renewable energy sector, which was destabilized by subsidy cutbacks and arguments over how much the government should regulate renewable energy companies.
Despite the flaws in Spain’s system, the numbers are promising for green energy fans. The renewable push brought down Spain’s greenhouse gas emissions by 23 percent, according to another industry report from Red Electric Espana (REE).
Spain also has one of the largest solar industries in the world, with solar power accounting for almost 2,000 megawatts in 2012. That’s more than many countries but still just a fraction of the energy produced by wind in Spain. In 2013, solar power accounted for 3.1 percent of Spain's energy, according to the AEE report.

Thursday, December 6, 2012


 

Monday, November 26, 2012


Russian wind powering europe? IFC explores the possibility

by Nicholas Brown

There’s reportedly a plan to construct large wind farms in an arctic region in northwestern Russia. The plan was inspired by the Desertec initiative. The plan, which is called RUSTEC, involves building dozens of wind farms, which would then export the wind energy to Europe through Norway and Finland.
This may help European countries to meet their renewable energy goals. They need the cheapest renewable energy they can get, and RUSTEC might be able to provide that.
The project was called the “brainchild” of the International Finance Organization (IFC).
Due to the fact that the region in the plan is unusually windy, it is expected to generate electricity more cheaply than offshore European plants (offshore wind power is still considerably more expensive than onshore wind). As wind speeds increase, the ratio of electricity generated to the cost of wind turbines increases, decreasing the cost of wind power.
The cost of wind power is calculated using that ratio, but O&M (operation and maintenance) costs for wind are also factored in, and affect the cost, although very marginally compared to wind speed.

Thursday, October 11, 2012


Wind Power: Norway Could Become Europe’s Battery

MAY 27, 2008 


World’s number 5 oil exporter, Norway has big energy resources and by 2025 it could become “Europe’s battery”.
Island of Utsira, Norway - wind mills
The island of Utsira, Norway – image by tualatin
A recent study talked about developing sea-based wind parks that would allow access up to 8,000 megawatts of renewable energy, equivalent to about eight nuclear power plants. Exporting green energy would actually help the European Union to attain their goal to get 20-percent of the total energy from renewable sources such as solar, wind, waves or hydro power.
The investment for the wind parks would cost up to $44 billion but if we consider they pump out 2.2 million barrels of oil per day, it will probably take only 6 months to cover it.

Wind Power Set to be the Energy of the Future

OCTOBER 10, 2012 
With the cost of electricity rising like never before, people are pushing for more avenues in the renewable energy space. The traditional forms of electricity have significant health and environmental effects, while renewable energy like wind and solar are widely accepted as an increasingly cost-effective energy solutions.  And, among them wind energy can be considered as the cheapest energy sources.
Apart from the cost of electricity, energy sources like coal, oil, and gas  pollute and have adverse effects on people. As per a study conducted by the German researchers headed by Deutsche Welle, wind energy is the cheapest energy solution in the world. It costs an average of 0.07 euro (about $0.09) to produce one kilowatt hour of electricity using wind power stations.
The accurate production costs and the environmental damage done in the name of mining silicon make solar comparatively expensive. In central and southern Europe, the cost to produce electricity from the solar plants is about 0.14 euro per kWh. When it comes to Germany, the cost is about 0.18 euro. In the case of coal, the expense in the US is more than 0.09 euros per kWh.

Wednesday, August 1, 2012


Mega-scale “Energy Bridge” to transform Irish midlands into Europe’s Renewable Energy Hub

 
Irish midlands set to supply UK with up to 5,000MW of wind energy from 2017
 
At the official opening of its new office in Edenderry, Co Offaly Eddie O’Connor’s global wind and solar company Mainstream Renewable Power has unveiled its plans for the 5,000MW “Energy Bridge” wind park in the midlands which will export power to plug the UK’s energy gap starting in 2017. The Company has already invested over €500,000 to secure a grid connection to the UK and has identified 900 eligible landowners in the midlands to site the wind turbines.
 
Last week Ireland’s Energy Minister Pat Rabitte met with the  UK’s Energy and Climate Change Minister Charles Hendry to discuss the opportunity and have agreed to have a Memorandum of Understanding in place by October of this year.
 
The wind farms and the cables will be completely separate to Ireland’s existing electricity system and will not be paid for by the Irish consumer. All of the cables will be entirely underground so will not be visible at any point. Once fully operational “Energy Bridge” will bring the following benefits: 

Thursday, April 26, 2012

Asia Report: India's Wind Potential 30 Times Greater Than Believed? | Renewable Energy News Article


Friday, April 20, 2012

Ethiopian Wind Energy Potential: one million MW of wind power


Ethiopian Wind Energy Potential: one million MW of wind power

april 20, 2012

The first draft of the master plan study carried out by Hydro China Corporation assessed the nation’s potential wind turbines and solar power. Adama wind farm being developed at a cost of 117 million US dollars.
Ethiopian Wind Energy Potential: one million MW of wind power
Ethiopia has wind power potential that could potentially generate more than one million MW of electricity according to a study.

The first draft of the master plan study carried out by Hydro China Corporation assessed the nation’s potential wind turbines and solar energy said Xu Lushi representing the company. Wind and solar energy has great potential to meet the growing energy demand and to reduce global warming he noted.

Thursday, April 19, 2012

A REGIONAL RENEWABLE POWERHOUSE


Taming the Winds of Mongolia

A REGIONAL RENEWABLE POWERHOUSE

Published In: EnergyBiz Magazine March/April 2012

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THE VAST MONGOLIAN STEPPE sits atop an elevated plateau in Central Asia in the heart of the north-Asian wind channel, resulting in world-class wind and renewable energy potential. Mix this potential with the lowest population density in the world - half of Mongolia's 2.7 million people live in the capital city of Ulaanbaatar - and a huge landmass nearly the area of Alaska and you have the perfect recipe for large-scale renewable energy generation.
Mongolia is estimated by the National Renewable Energy Laboratory to have good-to-excellent wind resources of over 2,550 terawatt-hours per year. When including moderate-level wind resources - or those suitable for rural power applications - this estimate increases to over 8,123 terawatt-hours per year.

Monday, April 16, 2012


Sahara desert project aims to power half the world by 2050

December 2, 2010 by Lin Edwards report

The Sahara Solar Breeder Project aims to begin by building a silicon manufacturing plant in the desert to transform silica in the sand into silicon of sufficiently high quality for use in solar panels. Solar power plants will be constructed using the solar panels, and some of the electricity generated will supply the energy needed to build more silicon plants to produce more , to produce more electricity...
Leader of the Japanese team, Hideomi Koinuma from the University of Tokyo, said while no one has tried to use desert sand as a source of high-quality silicon before, it is the obvious choice and will be of high enough quality.

World’s Largest Solar Project Planned for Saharan Desert

by Bridgette Meinhold, 06/22/09

If just 0.3% of the Saharan Desert was used for a concentrating solar plant, it would produce enough power to provide all of Europe with clean renewable energy. That is why 20 blue chip German companies are gathering together next month to discuss plans and investments to create such a massive project. Both the meeting and project are being promoted by the Desertec Foundation, which is proposing to erect 100 GW of concentrating solar power plants throughout Northern Africa.





Half a Trillion Dollars to Build Huge Desertec Plan?


Desertec has for years been just the pipe dream of an international network of scientists and engineers; an example of some seriously out-of-the-box thinking on climate change prevention. It is the ambitous plan to power Europe, the Middle East and Africa off renewable power strung along a giant new supergrid of High-Voltage Direct Current transmission lines connecting the two continents.