Title of article :
Shape optimization for drag reduction in linked bodies using evolution strategies
Author/Authors :
Mattia Gazzola، نويسنده , , Giuliano De Stefano and Oleg V. Vasilyev ، نويسنده , , Jens H. Walther and Petros Koumoutsakos، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
8
From page :
1224
To page :
1231
Abstract :
We present results from the shape optimization of linked bodies for drag reduction in simulations of incompressible flow at moderate Reynolds numbers. The optimization relies on the covariance matrix adaptation evolution strategy (CMA-ES) and the flow simulations use vortex methods with the Brinkman penalization to enforce boundary conditions in complex bodies. We exploit the inherent parallelism of CMA-ES, by implementing a multi-host framework which allows for the distribution of the expensive cost function evaluations across parallel architectures, without being limited to one computing facility. This study repeats in silico for the first time Ingo Rechenberg’s pioneering wind tunnel experiments for drag reduction that led to the inception of evolution strategies. The simulations confirm that the results of these experimental studies indicate a flat plate is not the optimal solution for drag reduction in linked bodies. We present the vorticity field of the flow and identify the governing mechanisms for this drag reduction by the slightly corrugated linked plate configuration.
Keywords :
Flow optimization , Covariance matrix adaptation–evolutionary strategy , Remeshed vortex particle method , Shape optimization , Brinkman penalization
Journal title :
Computers and Structures
Serial Year :
2011
Journal title :
Computers and Structures
Record number :
1210786
Link To Document :
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