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New Checkerboard Optimization Scheme Could Reduce Wake Effects In Wind Turbines

New Checkerboard Optimization Scheme Could Reduce Wake Effects In Wind Turbines
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Charles Meneveau , Dennicef Gayme , Richard Stevens , Johns Hopkins University , Sustainable Energy , Dennice Gayme At Johns Hopkins University , Dennice Gayme , Johns Hopkins , Large Eddy Simulation ,

New project will lay groundwork for open access to massive windfarm simulations

New project will lay groundwork for open access to massive windfarm simulations
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Charles Meneveau , Dennice Gayme , Louism Sardella , Johns Hopkins , Whiting School Of Engineering , Johns Hopkins Ralph Oconnor Sustainable Energy Institute , Institute For Data Intensive Engineering , Whiting School , Mechanical Engineering , Johns Hopkins Turbulence Database , Data Intensive Engineering ,

New model more accurately predicts the power of wind farms


Genevieve Starke
Graduate student, Department of Mechanical Engineering
Clean, renewable wind energy now accounts for more than 8% of the U.S. s electricity generation, up from about 4% in 2014, according to the U.S. Energy Information Administration. In March, President Joe Biden announced a plan to expand offshore wind energy projects, part of a larger initiative to vastly increase the country s renewable energy production and reduce greenhouse gas emissions by 2030. Last week, the administration officially approved the country s first major offshore wind farm near Massachusetts.
But large-scale wind farms present new engineering challenges. Classical engineering models formerly used to estimate power output for moderately sized wind farms don t always work reliably for today s larger wind farms, where complex turbine arrangements are more common, Gayme says. ....

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