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Thursday, November 26, 2015
Home Energy Squad® now making house calls in Colorado
We’re now making energy-saving house calls in Colorado. Learn how our new Home Energy Squad® can make you a little cozier and help you save money with energy efficiency.
Home Energy Squad® now making house calls in Colorado
Home Energy Squad® now making house calls in Colorado
Tuesday, November 24, 2015
GE Expands Wind Portfolio with Introduction of New Renewable Energy Business
From GE:
GE Expands Wind Portfolio with Introduction of New Renewable Energy Business
November 17, 2015
- Acquisition of Alstom’s renewable energy unit expands GE’s global wind footprint to more than 30,000 turbines worldwide and grows European presence by 50 percent
- Company welcomes new offshore wind business and Haliade* technology into portfolio
- Deal expected to help customers by extending GE’s wind services, increasing digital & analytics capabilities across the combined fleet
PARIS—November 17, 2015—GE (NYSE: GE) today introduced its new Renewable Energy business at the European Wind Energy Association’s 2015 Annual Event in Paris. The new unit significantly expands GE’s wind portfolio in the wake of its recent acquisition of Alstom’s power and grid businesses.
“Today is an exciting day for the future of the wind industry,” said Jérôme Pécresse, President & CEO of GE Renewable Energy. “With the creation of our new business, GE now has one of the world’s largest renewable energy footprints, and our goal is to help drive the wind industry forward by drawing on the shared expertise of two innovative companies.”
The new business expands GE’s global wind footprint to more than 30,000 turbines worldwide and significantly increases its presence in regions like Europe and Latin America. In Europe alone, GE’s installed base will grow by approximately 50 percent as a result of the deal.
“Over the past few years, we have really focused on making our wind business more global,” explained Anne McEntee, President & CEO of GE’s onshore wind unit. “The Alstom deal helps us gain local experience in key growth regions, and we will be extending our services capabilities to a broader group of customers across the newly combined fleet.”
In addition, GE Renewable Energy is welcoming a new offshore wind unit into the portfolio. Featuring new Haliade turbine technology, the offshore business has built a significant backlog of orders with EDF in France and has been selected for the Merkur offshore project in Germany. The Haliade technology will also be featured in the historic Block Island project, which is set to become the first offshore wind farm in the United States. Construction is underway, and the project will begin operation next year.
“Offshore wind is a challenging industry, but we believe the market has real potential,” said Anders Soe-Jensen, President & CEO of GE’s offshore wind unit. “Our goal is to work closely with customers to continue validating our technology as we begin to scale and grow the business.”
Customers can also expect to see service-related benefits resulting from the acquisition. GE Renewable Energy plans to extend its services capabilities across both existing fleets, with an emphasis on using cutting-edge digital and analytics capabilities to help customers improve productivity and increase power output. Earlier this year, GE launched its Digital Wind Farm, which aims to create a digital infrastructure for the wind industry. The Digital Wind Farm harnesses the analytics power of the GE Store and is powered by Predix, the secure software platform for the Industrial Internet.
*a trademark of General Electric Company
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About GE
GE (NYSE: GE) is the world’s Digital Industrial Company, transforming industry with software-defined machines and solutions that are connected, responsive and predictive. GE is organized around a global exchange of knowledge, the "GE Store," through which each business shares and accesses the same technology, markets, structure and intellect. Each invention further fuels innovation and application across our industrial sectors. With people, services, technology and scale, GE delivers better outcomes for customers by speaking the language of industry. www.ge.com
GE Renewable Energy Unveils New 3 MW Wind Turbine Platform at EWEA
From GE:
GE Renewable Energy Unveils New 3 MW Wind Turbine Platform at EWEA
November 16, 2015
· New 3.4-130 and 3.4-137 models join recently announced 3.2-130 to form GE’s most powerful family of onshore wind turbines to date
· Extends modular capabilities of GE’s Digital Wind Farm to 3 MW machines, with options including two rotor diameters, three generator ratings and five tower heights to fit pad-specific conditions
· Configurations available for IEC class II and III conditions, with GE’s most powerful 3.4-137 model providing up to 24 percent higher output1 over existing technology
PARIS—November 17, 2015—GE Renewable Energy (NYSE: GE) today unveiled its new family of 3 MW wind turbines at the European Wind Energy Association’s 2015 Annual Event in Paris. Joining GE’s recently launched 3.2-130, today’s announcement introduced two new models in the 3.4-130 and 3.4-137, making the platform GE’s most powerful family of onshore wind turbines offered to date.
“Our new 3 MW machines are built to address the complexities of European wind conditions,” said Anne McEntee, President & CEO of GE’s onshore wind business. “Working closely with our customers, this new family of smart, modular turbines will allow us to configure the right technology for a wide variety of site-specific wind conditions.”
The new platform is built on the proven performance of GE’s 2.5 and 2.75 MW machines, and in addition to larger rotor diameters, the new models offer improved load management systems, enhanced control features and more efficient drive-train technology. Plus, they represent GE’s most powerful onshore machines offered to date, with the 3.4-137 model capable of providing up to 24 percent higher output1than existing technology.
In addition, the new 3 MW platform features the modular hardware and software analytics capabilities ofGE’s Digital Wind Farm. The hardware platform uses the same machine head throughout all configurations, but offers flexible rotor diameters of 130 or 137 meters, multiple generator ratings of 3.2-3.4 MW and five possible tower height combinations ranging from 85-155 meters. The Digital Wind Farm also uses a virtual modeling system that aims to optimize individual turbine configuration and site layout to get the maximum energy production from each site’s unique wind conditions. It is powered by Predix*, the secure software platform for the Industrial Internet.
GE’s modular 3 MW turbine platform is configurable to meet IEC class 3A, 2B and 3B wind conditions.
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1Compared to GE’s 2.75-120 model
*Trademark of General Electric Company
About GE
GE (NYSE: GE) is the world’s Digital Industrial Company, transforming industry with software-defined machines and solutions that are connected, responsive and predictive. GE is organized around a global exchange of knowledge, the "GE Store," through which each business shares and accesses the same technology, markets, structure and intellect. Each invention further fuels innovation and application across our industrial sectors. With people, services, technology and scale, GE delivers better outcomes for customers by speaking the language of industry. www.ge.com
Monday, November 23, 2015
New DuPont Biorefinery
From the U.S. Department of Energy Office of Energy Efficiency and Renewable Energy:
This new DuPont biorefinery in #Iowa is the largest in the world, equipped to produce 30 million gallons of#ethanol each year from leftover corn stalks and leaves (corn stover) and is the fourth cellulosic ethanol biorefinery in the United States. It recently opened and is using technology resulting from years of Energy Department research. The ethanol that it will produce can be blended with gasoline for use as motor fuel and can help #America reduce #energy imports and reduce greenhouse gas emissions. Jonathan Male, who heads up our Bioenergy Technologies Office, details the importance of this new biorefinery in an EERE Blog:http://go.usa.gov/cTHSk.
This new DuPont biorefinery in #Iowa is the largest in the world, equipped to produce 30 million gallons of#ethanol each year from leftover corn stalks and leaves (corn stover) and is the fourth cellulosic ethanol biorefinery in the United States. It recently opened and is using technology resulting from years of Energy Department research. The ethanol that it will produce can be blended with gasoline for use as motor fuel and can help #America reduce #energy imports and reduce greenhouse gas emissions. Jonathan Male, who heads up our Bioenergy Technologies Office, details the importance of this new biorefinery in an EERE Blog:http://go.usa.gov/cTHSk.
Saturday, November 21, 2015
Layer of Nanocrystals
From the U.S. Department of Energy Office of Energy Efficiency and Renewable Energy:
This looks like a work of #art to many. But in reality, it’s a thin layer of nanocrystals evaporated on a silicon surface that has the potential to generate #solar#energy. It’s an example of nanotechnology research conducted at Argonne National Laboratory in #Illinoisthat could revolutionize renewable energy generation. This Energy Department laboratory recently announced two new collaborative centers. One will advance nanotechnology, while the other is expected to play a major role in improving battery storage so renewable energy such as solar and wind can contribute to the power grid when the sun is not shining and the wind is not blowing. Learn more: http://go.usa.gov/cT9JR.
This looks like a work of #art to many. But in reality, it’s a thin layer of nanocrystals evaporated on a silicon surface that has the potential to generate #solar#energy. It’s an example of nanotechnology research conducted at Argonne National Laboratory in #Illinoisthat could revolutionize renewable energy generation. This Energy Department laboratory recently announced two new collaborative centers. One will advance nanotechnology, while the other is expected to play a major role in improving battery storage so renewable energy such as solar and wind can contribute to the power grid when the sun is not shining and the wind is not blowing. Learn more: http://go.usa.gov/cT9JR.
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