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QM Power and University of Kentucky demonstrate 50 kW/liter electric motor; DOE 2025 power density goal

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QM Power and the SPARK Lab at University of Kentucky shared the combined results of a large-scale, multi-objective design optimization study, and lab testing of a prototype motor designed to meet the 2025 power density goals set by the US Department of Energy (DOE). Ionel, FIEEE, who serves as the inaugural L. Essakiappan S., and Manjrekar M.

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Successful demonstration of FlexMethanol conversion of wind power to methanol

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In Germany, BSE Engineering and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences (IRES) have demonstrated the conversion of wind power into renewable methanol. Operation of this technology under dynamic conditions will be confirmed during a year-long test.

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MOL joins “Wind Hunter Project” for combination of sails and fuel cells on ships

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MOL) has joined a wide-ranging corporate-academic partnership in a zero-emission initiative called the “Wind Hunter Project,” seeking new applications for hydrogen fuel and wind power. Graduate School of Frontier Sciences of The University of Tokyo; West Japan Fluid Engineering Laboratory Co., Mitsui O.S.K. Lines, Ltd.

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EDP, TechnipFMC and partners to develop a concept study for green hydrogen production from offshore wind: BEHYOND

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BEHYOND brings together global players in energy, EDP and TechnipFMC, with the CEiiA research center - Center for Engineering and Development; WavEC Offshore Renewables; and the University of South-Eastern Norway (USN). EDP, through the participation of EDP NEW and EDP Inovação, is the project.

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Enviva and MOL to develop sail-powered bulk carrier to cut GHG emissions in biomass supply chain; Wind Challenger hard sail

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This will include the “Wind Challenger”, a cargo ship design with a hard sail, which would reduce emissions by harnessing wind energy. MOL has been jointly studying the wind technology with cross-industrial partners. The first Wind Challenger is scheduled to be released in 2022.

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Argonne and University of Illinois to form Midwest Hydrogen and Fuel Cell Coalition

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The states account for 35% of US-installed wind capacity and while the region only produces about 4% of the nation’s solar energy, a number of pending large solar farms and community solar projects will greatly increase the region’s solar generating capacity.

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New modeling study suggests wind farm power generation capacity has been significantly overestimated

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Research in mesoscale atmospheric modeling by the University of North Carolina (UNC) Charlotte’s Amanda S. Adams and Harvard University’s David W. Keith suggests that the power capacity of large-scale wind farms may have been significantly overestimated. Large-scale wind farms can comprise hundreds of tower-mounted turbines.

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