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Tuesday, April 10, 2012

German Village Becomes Model for Renewable Energy

By Renuka Rayasam

Werner Frohwitter drives his white Prius into Feldheim, parking halfway down the village's one street in front of what looks like a shipping container. Behind the street is a field where 43 giant wind turbines loom over the village's 37 houses. Frohwitter works for Energiequelle Gmbh, which owns the wind park. He greets a Russian camera crew and ushers them into the chilly container, which has become Feldheim's impromptu visitor's center. It's the only sign of life in this otherwise quiet village. Inside, he uses posters on the wall to explain the town's energy transformation for the Russian crew's renewable energy documentary.
This town of 150 inhabitants, tucked away in the Brandenburg countryside some 60 kilometers (37.2 miles) southwest of Berlin seems like an unlikely tourist hotspot. It has no bars, museums or restaurants. But since the Fukushima nuclear disaster one year ago, Feldheim has become a beacon for cities across the world that want to shift their energy mix toward renewables.
Feldheim is the only town in Germany that started its own energy grid and gets all of its electricity and heating through local renewable sources, primarily wind and biogas. This mix of energy self-sufficiency and reliance on renewables attracted 3,000 visitors in 2011. Visitors came from North and South Korea, South America, Canada, Iran, Iraq and Australia. About half of the visitors are from Japan.
Eri Otsu served as a translator for a group of Japanese energy analysts and politicians who came to Germany to see Feldheim. "Feldheim is not a charming Bavarian village; it is gray and they have little," says Otsu, an organic farmer in southern Japan. Still, the group found Feldheim the most impressive of the three German villages they visited because it is energy independent and uses renewables. "They were amazed and said they had never seen anything like that," Otsu says. 

read more
Wind Tower, by mendhak

more about energy consumption:

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Modeling Energy Consumption and CO2 Emissions at the Urban Scale: Methodological Challenges and Insights from the United States

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Integrated Systems Planning for Energy Efficiency and Conservation

A Spatial Analysis of Future Macro-Urban Form, Greenhouse Gas Emissions and Transport Energy Outcomes for Melbourne

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